Clock drying plate device

文档序号:1781770 发布日期:2019-12-06 浏览:18次 中文

阅读说明:本技术 一种钟表烘板装置 (Clock drying plate device ) 是由 王伟 于 2019-10-10 设计创作,主要内容包括:本发明涉及钟表保养设备,具体是涉及一种钟表烘板装置,包括环形输送带,所述环形输送带设有若干个钟表安放治具,沿环形输送带的输送方向依次设有钟表上料机构、钟表吹风机构、钟表烘干机构和钟表下料机构,钟表安放治具包括输送底块、U型块、钟表放置组件、钟表定位组件和两个钟表限位组件,所述U型块固定连接在输送底块上,所述钟表放置组件转动安装在U型块上,两个钟表限位组件对称设置在钟表放置组件上,所述U型块上开设有与外部连通的出水槽,所述出水槽的槽底设有斜面,所述环形输送带的外壁上设有接水盘。本发明能够对钟表进行自动烘干作业,提高了烘干效率,提高了烘干质量,并且适用于对数量较多的钟表进行连续性烘干。(The invention relates to clock maintenance equipment, in particular to a clock drying plate device which comprises an annular conveying belt, wherein the annular conveying belt is provided with a plurality of clock placing jigs, a clock feeding mechanism, a clock blowing mechanism, a clock drying mechanism and a clock discharging mechanism are sequentially arranged along the conveying direction of the annular conveying belt, each clock placing jig comprises a conveying bottom block, a U-shaped block, a clock placing component, a clock positioning component and two clock limiting components, the U-shaped blocks are fixedly connected to the conveying bottom blocks, the clock placing components are rotatably arranged on the U-shaped blocks, the two clock limiting components are symmetrically arranged on the clock placing components, water outlet grooves communicated with the outside are formed in the U-shaped blocks, inclined planes are arranged at the bottoms of the water outlet grooves, and water receiving discs are arranged on the outer wall of the annular conveying belt. The invention can automatically dry the clocks and watches, improves the drying efficiency and the drying quality, and is suitable for continuously drying clocks and watches with more quantity.)

1. A timepiece baking plate device, characterized in that: the clock and watch placing jig comprises an annular conveying belt (1), wherein the annular conveying belt (1) is provided with a plurality of clock and watch placing jigs (2), a clock and watch feeding mechanism (3), a clock and watch blowing mechanism (4), a clock and watch drying mechanism (5) and a clock and watch blanking mechanism (6) are sequentially arranged along the conveying direction of the annular conveying belt (1), the clock and watch placing jigs (2) comprise a conveying bottom block (21), a U-shaped block (22), a clock and watch placing component (23), a clock and watch positioning component (24) and two clock and watch limiting components (25), the clock and watch placing component (23) is positioned, the U-shaped block (22) is fixedly connected onto the conveying bottom block (21), the clock and watch placing component (23) is rotatably installed on the U-shaped block (22), the two clock and watch positioning components (25) are symmetrically arranged on the clock and watch placing component (23), and a water outlet groove (221) communicated with the outside, the bottom of the water outlet groove (221) is provided with an inclined plane (2211), and the outer wall of the annular conveying belt (1) is provided with a water receiving disc (11).

2. a timepiece plate device according to claim 1, wherein: the clock placing assembly (23) comprises a clock placing plate (231), a placing groove (2312) is formed in the top of the clock placing plate (231), a plurality of ventilation grooves (223) communicated with the placing groove (2312) are formed in the bottom of the clock placing plate (231), a first rotating shaft (232) and a second rotating shaft (233) are respectively arranged at two ends of the clock placing plate (231), and a first rotating hole in rotating fit with the first rotating shaft (232) and a second rotating hole in rotating fit with the second rotating shaft (233) are respectively formed in the U-shaped block (22).

3. a timepiece plate device according to claim 2, wherein: clock and watch locating component (24) are including location electric putter (241), reference column (242) and first mounting bracket (243), first mounting bracket (243) are installed on the lateral wall of U type piece (22) to first mounting bracket (243) are located first pivot (232) under, location electric putter (241) are vertical installation on first mounting bracket (243), the bottom of reference column (242) is equipped with and fixes a position electric putter (241) output end fixed connection's installation cover (2421), set up on first pivot (232) with reference column (242) complex locating hole (2321).

4. A timepiece plate device according to claim 3, wherein: the clock limiting assembly (25) comprises a limiting motor (251), a first gear (252), a second gear (253), a rotating rod (254) and a limiting piece (255), wherein two symmetrically arranged mounting grooves (2311) are formed in the side wall of the clock placing plate (231), the rotating rod (254) is horizontally and rotatably mounted in the mounting grooves (2311), the limiting piece (255) is fixed on the rotating rod (254), a plurality of pressing pieces (2551) are arranged on the limiting piece (255) at equal intervals, the first gear (252) is mounted on the rotating rod (254), the limiting motor (251) is mounted on the side wall of the clock placing plate (231), the second gear (253) is mounted on the output end of the limiting motor (251), and the second gear (253) is meshed with the first gear (252).

5. A timepiece plate device according to claim 1, wherein: clock and watch feed mechanism (3) and clock and watch unloading mechanism (6) structure are the same and all include clock and watch conveyer belt (31), electric jar (32), lifting cylinder (33), sucking disc (34) and support (35) that are the L type, electric jar (32) are horizontal installation on the lateral wall of first half of support (35), clock and watch conveyer belt (31) are located electric jar (32) under, install the second mounting bracket on the slip table of electric jar (32), lifting cylinder (33) are vertical installation on the second mounting bracket, sucking disc (34) are horizontal installation on the output of lifting cylinder (33).

6. A timepiece plate device according to claim 1, wherein: the clock blowing mechanism (4) comprises a first portal frame (41), a first lifting cylinder (42), a first connecting plate (43) and a sealing cover (44), wherein the first lifting cylinder (42) is vertically installed on the first portal frame (41), the first connecting plate (43) is horizontally installed at the output end of the first lifting cylinder (42), four first guide rods (431) which are distributed in a rectangular manner are arranged at the top of the first connecting plate (43), four first guide seats (411) which are in one-to-one guide fit with the four first guide rods (431) are arranged on the first portal frame (41), four connecting columns (432) which are distributed in a rectangular manner are arranged at the bottom of the first connecting plate (43), the sealing cover (44) is installed on the four connecting columns (432), a blowing cover (45) is arranged in the sealing cover (44), and a plurality of air outlets (451) are arranged on the blowing cover (45), the top of the air blowing cover (45) is provided with a first connecting pipe (452) communicated with the air blowing cover.

7. A timepiece plate device according to claim 2, wherein: the clock drying mechanism (5) comprises a second portal frame (51), a second lifting cylinder (52), a second connecting plate (53), a turnover assembly (54) for driving the clock placing plate (231) to turn and two mounting plates (56), wherein the second lifting cylinder (52) is vertically mounted on the second portal frame (51), four second guide rods (531) are arranged at the top of the second connecting plate (53) in a rectangular distribution, four second guide seats (511) which are in one-to-one guide fit with the four second guide rods (531) are arranged on the second portal frame (51), the two mounting plates (56) are symmetrically arranged at the bottom of the second connecting plate (53) and are vertically arranged, a drying cover (57) is mounted on the inner wall of each mounting plate (56), and a second connecting pipe (571) communicated with each drying cover (57) is arranged at the back of each drying cover (57), the overturning assembly (54) is arranged on the inner wall of the second portal frame (51).

8. A timepiece plate device according to claim 7, wherein: the turnover assembly (54) comprises a pushing cylinder (541), a turnover motor (542), a bearing plate (543), a third gear (544), a fourth gear (545), a rotating seat (546), a rotating shaft (547), a linkage sleeve (548) and a third mounting frame (55), wherein a rectangular linkage block (2331) is arranged on the second rotating shaft (233), a first fixing plate (512) which is horizontally arranged is arranged on the inner wall of the second portal frame (51), two symmetrically arranged sliding blocks (5432) are arranged at the bottom of the bearing plate (543), two sliding grooves (513) which are in one-to-one sliding fit with the two sliding blocks (5432) are formed in the first fixing plate (512), the third mounting frame (55) is fixed on the first fixing plate (512), the pushing cylinder (541) is horizontally mounted on the third mounting frame (55), and the output end of the pushing cylinder (541) is fixedly connected with the bearing plate (543), the utility model discloses a turnover motor, including rotation seat (546), rotation axis (547) and rectangular linkage piece (2331), linkage cover (548) are installed in the one end of rotation axis (547), and linkage cover (548) and rectangular linkage piece (2331) joint cooperation, third gear (544) are installed at the other end of rotation axis (547), be equipped with on bearing board (543) and be vertical second fixed plate (5431), upset motor (542) are the level and fix on second fixed plate (5431), fourth gear (545) are installed on the output of upset motor (542) to fourth gear (545) and third gear (544) meshing.

Technical Field

The invention relates to clock maintenance equipment, in particular to a clock baking plate device.

Background

A timepiece is a device for timing and also a precision instrument for measuring and indicating time. Timepieces are generally distinguished by the size of the internal machine. According to international convention, a watch with a movement diameter of more than 80 mm and a thickness of more than 30 mm is a bell, a pocket watch with a diameter of 37-50 mm and a thickness of 4-6 mm is a watch, a watch with a diameter of less than 37 mm is a female watch with a diameter of less than 20 mm or a movement area of less than 314 mm. The watch is one of the smallest, most robust, and most delicate machines invented by humans.

In order to prolong the service life of the timepiece, the timepiece needs to be cleaned regularly. After the clock is cleaned, the clock needs to be dried in time, and the surface of the clock is prevented from being polluted due to residual water stain. The traditional drying mode is that the handheld drying apparatus of workman carries out the single face stoving to the clock, dries the another side again after accomplishing to dry, and such drying mode is inefficient, and the quality of drying is not good, and artifical stoving also is not applicable to the clock stoving that the number is more.

Disclosure of Invention

The invention aims to provide a clock baking plate device.

In order to solve the technical problems, the invention provides the following technical scheme: the utility model provides a clock and watch drying plate device, includes endless conveyor belt, endless conveyor belt is equipped with a plurality of clock and watch and lays the tool, is equipped with clock and watch feed mechanism, clock and watch blast mechanism, clock and watch stoving mechanism and clock and watch unloading mechanism in proper order along endless conveyor belt's direction of delivery, the clock and watch is laid the tool and is placed the subassembly, be used for placing the clock and watch locating component and two clock and watch spacing subassemblies that the subassembly advances line location to the clock and watch including carrying bottom block, U type piece fixed connection on carrying the bottom block, the clock and watch is placed the subassembly and rotates and install on U type piece, and two clock and watch spacing subassembly symmetries set up on the clock and watch is placed the subassembly, set up the play basin with outside intercommunication on the U type piece, the tank bottom of going out the basin is equipped with.

Furthermore, the clock placing assembly comprises a clock placing plate, a placing groove is formed in the top of the clock placing plate, a plurality of vent grooves communicated with the placing groove are formed in the bottom of the clock placing plate, a first rotating shaft and a second rotating shaft are respectively arranged at two ends of the clock placing plate, and a first rotating hole in rotating fit with the first rotating shaft and a second rotating hole in rotating fit with the second rotating shaft are respectively formed in the U-shaped block.

Further, clock and watch locating component is including location electric putter, reference column and first mounting bracket, first mounting bracket is installed on the lateral wall of U type piece to first mounting bracket is located first pivot under, location electric putter is vertical installation on first mounting bracket, the bottom of reference column is equipped with and fixes a position electric putter output fixed connection's installation cover, seted up in the first pivot with reference column complex locating hole.

Further, the spacing subassembly of clock and watch includes spacing motor, first gear, second gear, dwang and locating part, clock and watch places the mounting groove that sets up two symmetries on the lateral wall of board, the dwang is horizontal rotation and installs in the mounting groove, the locating part is fixed on the dwang to be equipped with the support piece that a plurality of equidistant setting set up on the locating part, first gear is installed on the dwang, spacing motor is installed on the lateral wall that the board was placed to clock and watch, the second gear is installed on the output of spacing motor to second gear and first gear engagement.

further, clock and watch feed mechanism is the same with clock and watch unloading mechanism structure and all includes clock and watch conveyer belt, electric jar, lifting cylinder, sucking disc and the support that is the L type, the electric jar is horizontal installation on the lateral wall of first half of support, the clock and watch conveyer belt is located the electric jar under, install the second mounting bracket on the slip table of electric jar, the lifting cylinder is vertical the installation on the second mounting bracket, the sucking disc is horizontal installation on the output of lifting cylinder.

Further, clock and watch air-blowing mechanism includes first portal frame, first lift cylinder, first connecting plate and closing cap, first lift cylinder is vertical the installation on first portal frame, first connecting plate is horizontal installation on the output of first lift cylinder, the top of first connecting plate is equipped with four and is the first guide bar of rectangle distribution, be equipped with four and four first guide bar one-to-one direction complex first guide holder on the first portal frame, the bottom of first connecting plate is equipped with four spliced poles that are the rectangle distribution, the closing cap is installed on four spliced poles, be equipped with the blower housing in the closing cap, be equipped with a plurality of air outlet on the blower housing, the top of blower housing is equipped with rather than the first connecting pipe that communicates.

Further, clock and watch stoving mechanism includes second portal frame, second lift cylinder, second connecting plate, is used for driving clock and watch to place the upset subassembly and two mounting panels of board upset, the second lift cylinder is vertical installation on the second portal frame, the top of second connecting plate is equipped with four and is rectangle distribution second guide bars, be equipped with four and four second guide bar one-to-one direction complex second guide holder on the second portal frame, two mounting panel symmetries set up the bottom at the second connecting plate, and both all are vertical settings, all install the stoving cover on the inner wall of every mounting panel, the back of every stoving cover all is equipped with the second connecting pipe rather than the intercommunication, the upset subassembly is installed on the inner wall of second portal frame.

Further, the turnover assembly comprises a pushing cylinder, a turnover motor, a bearing plate, a third gear, a fourth gear, a rotating seat, a rotating shaft, a linkage sleeve and a third mounting frame, a rectangular linkage block is arranged on the second rotating shaft, a first fixing plate horizontally arranged is arranged on the inner wall of the second portal frame, two symmetrically arranged slide blocks are arranged at the bottom of the bearing plate, two slide grooves which are in one-to-one sliding fit with the two slide blocks are arranged on the first fixing plate, the third mounting frame is fixed on the first fixing plate, the pushing cylinder is horizontally arranged on the third mounting frame, the output end of the pushing cylinder is fixedly connected with the bearing plate, the rotating seat is arranged on the bearing plate, the rotating shaft is horizontally rotatably arranged on the rotating seat, the linkage sleeve is arranged at one end of the rotating shaft, and the linkage sleeve is in clamping fit with the rectangular linkage block, the third gear is installed at the other end of axis of rotation, be equipped with on the loading board and be vertical second fixed plate, the upset motor is the level and fixes on the second fixed plate, the fourth gear is installed on the output of upset motor to fourth gear and third gear meshing.

Compared with the prior art, the invention has the beneficial effects that:

The clock placing jig can be driven to move by the annular conveying belt, the clock can be automatically placed into the placing groove of the clock placing plate by the clock feeding mechanism in the moving process, residual water stains on the clock can be blown away by the clock blowing mechanism, the clock can be dried by the clock drying mechanism, the water stains on the clock can be cleaned more thoroughly, and the clock on the clock placing plate can be moved away by the clock discharging mechanism.

Secondly, when the clock placing jig is conveyed to the position under the second portal frame, two overturning motors work simultaneously to drive the corresponding second gears to rotate, the second gears drive the first gears and the rotating rod to rotate synchronously, the limiting part rotates 180 degrees along with the rotating rod, the pressing block on the limiting part can press the clocks in the placing groove to prevent the clocks from deviating, then the electric push rod is positioned to drive the positioning column to move downwards, the positioning column is gradually separated from the positioning hole of the first rotating shaft, the clock placing plate is in a free state at the moment, then the air cylinder is pushed to drive the bearing plate to move, the bearing plate drives the linkage sleeve to be in butt joint with the rectangular linkage block, then the overturning motors drive the fourth gears to rotate, the fourth gears drive the third gears and the rotating shafts to rotate around the axis of the rotating shafts, and the rotating shafts drive the linkage sleeve and the rectangular linkage block to rotate synchronously, the rectangle linkage piece drives the clock and watch and places the board and rotate 90 degrees, and later the clock and watch is placed the board and is in vertical state, then, second lift cylinder drive second connecting plate and two mounting panels move down, and two stoving covers are respectively facing to the uncovered and all air channels of standing groove, and the stoving hot-blast that two stoving covers blown off can be fast with the water stain stoving evaporation of clock and watch upper surface and lower surface, compares in traditional single face stoving method, has improved the efficiency of drying greatly.

Thirdly, the water stain that is blown down by clock and watch blast mechanism can flow into the play basin of U type piece through the air channel in, then flow into in the water receiving box dish through the inclined plane to realize automatic collection waste water, avoid waste water pollution other equipment.

Drawings

FIG. 1 is a schematic perspective view of the present invention;

FIG. 2 is a schematic perspective view I of a clock placing jig;

FIG. 3 is an enlarged view taken at A in FIG. 2;

FIG. 4 is a schematic perspective view of a timepiece mounting jig;

FIG. 5 is a schematic perspective view of a timepiece movement;

FIG. 6 is a schematic perspective view of the clock's blower mechanism;

FIG. 7 is a bottom view of the clock's blower mechanism;

Fig. 8 is a schematic perspective view of a watch drying mechanism.

the reference numbers in the figures are: the annular conveying belt 1, the water receiving tray 11, the clock placing jig 2, the conveying bottom block 21, the U-shaped block 22, the water outlet groove 221, the inclined surface 2211, the ventilation groove 223, the clock placing component 23, the clock placing plate 231, the mounting groove 2311, the placing groove 2312, the first rotating shaft 232, the positioning hole 2321, the second rotating shaft 233, the rectangular linkage block 2331, the clock positioning component 24, the positioning electric push rod 241, the positioning column 242, the mounting sleeve 2421, the first mounting frame 243, the clock limiting component 25, the limiting motor 251, the first gear 252, the second gear 253, the rotating rod 254, the limiting part 255, the pressing block 2551, the clock feeding mechanism 3, the clock conveying belt 31, the electric cylinder 32, the lifting cylinder 33, the suction cup 34, the bracket 35, the clock blowing mechanism 4, the first portal frame 41, the first guide seat 411, the first lifting cylinder 42, the first connecting plate 43, the first guide rod 431, the connecting column 432, the closed blowing cover 44 and the cover 45, the clock drying mechanism comprises an air outlet 451, a first connecting pipe 452, a clock drying mechanism 5, a second portal frame 51, a second guide seat 511, a first fixing plate 512, a sliding groove 513, a second lifting cylinder 52, a second connecting plate 53, a second guide rod 531, a turnover assembly 54, a pushing cylinder 541, a turnover motor 542, a bearing plate 543, a second fixing plate 5431, a sliding block 5432, a third gear 544, a fourth gear 545, a rotating seat 546, a rotating shaft 547, a linkage sleeve 548, a third mounting frame 55, a mounting plate 56, a drying cover 57, a second connecting pipe 571 and a clock blanking mechanism 6.

Detailed Description

In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.

in the description of the present invention, it is to be understood that the terms "longitudinal", "lateral", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on those shown in the drawings, are merely for convenience of description of the present invention, and do not indicate or imply that the referenced devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be construed as limiting the present invention.

Referring to fig. 1 to 8, the clock drying plate device comprises an annular conveying belt 1, wherein the annular conveying belt 1 is provided with a plurality of clock placing jigs 2, a clock feeding mechanism 3, a clock blowing mechanism 4, a clock drying mechanism 5 and a clock blanking mechanism 6 are sequentially arranged along the conveying direction of the annular conveying belt 1, each clock placing jig 2 comprises a conveying bottom block 21, a U-shaped block 22, a clock placing component 23, a clock positioning component 24 for positioning the clock placing component 23 and two clock limiting components 25, the U-shaped block 22 is fixedly connected to the conveying bottom block 21, the clock placing component 23 is rotatably installed on the U-shaped block 22, the two clock limiting components 25 are symmetrically arranged on the clock placing component 23, a water outlet groove 221 communicated with the outside is formed in the U-shaped block 22, and an inclined plane 2211 is formed in the bottom of the water outlet groove 221, a water receiving tray 11 is arranged on the outer wall of the annular conveying belt 1; the clock placing tools 2 can be driven to move on the annular conveying belt 1, in the moving process, the clock feeding mechanism 3 can automatically feed the clock into the clock placing component 23, the clock placing component 23 can keep the current state through the clock positioning component 24, the clock in the clock placing component 23 can be blown through the clock blowing mechanism 4, water stains on the clock flow to the air vent groove 223 by the blowing pressure and then flow into the water outlet groove 221 from the air vent groove 223, the inner waste water in the water outlet groove 221 can naturally flow into the water receiving tray 11 through the design of the inclined surface 2211, the clock in the clock placing component 23 can be dried through the clock drying mechanism 5, the water stains on the clock can be thoroughly cleaned, the clock can be limited in the clock placing component 23 through the two clock limiting components 25, and therefore the clock drying can be avoided, the timepiece falls off the timepiece movement assembly 23, and the timepiece in the timepiece movement assembly 23 can be automatically carried away by the timepiece unloading mechanism 6.

the clock placing assembly 23 comprises a clock placing plate 231, a placing groove 2312 is formed in the top of the clock placing plate 231, a plurality of vent grooves 223 communicated with the placing groove 2312 are formed in the bottom of the clock placing plate 231, a first rotating shaft 232 and a second rotating shaft 233 are respectively arranged at two ends of the clock placing plate 231, and a first rotating hole rotationally matched with the first rotating shaft 232 and a second rotating hole rotationally matched with the second rotating shaft 233 are respectively arranged on the U-shaped block 22; the clock can be placed to standing groove 2312, because of the setting of first pivot 232 and second pivot 233, the clock is placed board 231 and can be automized, and the design of air channel 223 can let the water stain trickle go out, can also let in hot-blast standing groove 2312.

The clock positioning assembly 24 comprises a positioning electric push rod 241, a positioning column 242 and a first mounting frame 243, the first mounting frame 243 is mounted on the side wall of the U-shaped block 22, the first mounting frame 243 is located right below the first rotating shaft 232, the positioning electric push rod 241 is vertically mounted on the first mounting frame 243, a mounting sleeve 2421 fixedly connected with the output end of the positioning electric push rod 241 is arranged at the bottom of the positioning column 242, and a positioning hole 2321 matched with the positioning column 242 is formed in the first rotating shaft 232; the positioning electric push rod 241 can drive the mounting sleeve 2421 and the positioning post 242 to move, and the positioning post 242 can be inserted into the positioning hole 2321, so that the clock placing plate 231 can be kept in a horizontal state.

The clock limiting component 25 comprises a limiting motor 251, a first gear 252, a second gear 253, a rotating rod 254 and a limiting piece 255, wherein two symmetrically arranged installation grooves 2311 are formed in the side wall of the clock placing plate 231, the rotating rod 254 is horizontally and rotatably installed in the installation grooves 2311, the limiting piece 255 is fixed on the rotating rod 254, a plurality of pressing blocks 2551 which are arranged at equal intervals are arranged on the limiting piece 255, the first gear 252 is installed on the rotating rod 254, the limiting motor 251 is installed on the side wall of the clock placing plate 231, the second gear 253 is installed on the output end of the limiting motor 251, and the second gear 253 is meshed with the first gear 252; when the clock placing jig 2 moves to the clock drying mechanism 5, the limiting motor 251 can drive the second gear 253 to rotate, the second gear 253 drives the first gear 252 and the rotating rod 254 to rotate around the axis of the rotating rod 254, the rotating rod 254 drives the limiting piece 255 to rotate 180 degrees, all the pressing pieces 2551 on the limiting piece 255 can position the clock in the placing groove 2312, and the clock is prevented from falling off when being dried.

the clock feeding mechanism 3 and the clock blanking mechanism 6 are identical in structure and respectively comprise a clock conveying belt 31, an electric cylinder 32, a lifting cylinder 33, a sucker 34 and a support 35 in an L shape, the electric cylinder 32 is horizontally mounted on the side wall of the upper half of the support 35, the clock conveying belt 31 is located under the electric cylinder 32, a second mounting frame is mounted on a sliding table of the electric cylinder 32, the lifting cylinder 33 is vertically mounted on the second mounting frame, and the sucker 34 is horizontally mounted on the output end of the lifting cylinder 33; the timepiece movement belt 31 can convey a timepiece, the electric cylinder 32 can drive the lifting cylinder 33 and the suction pad 34 to move horizontally, the lifting cylinder 33 can drive the suction pad 34 to move up and down, and the suction pad 34 can suck the timepiece and move the timepiece while keeping the timepiece horizontal.

The clock blowing mechanism 4 comprises a first portal frame 41, a first lifting cylinder 42, a first connecting plate 43 and a sealing cover 44, wherein the first lifting cylinder 42 is vertically installed on the first portal frame 41, the first connecting plate 43 is horizontally installed at the output end of the first lifting cylinder 42, four first guide rods 431 which are distributed in a rectangular shape are arranged at the top of the first connecting plate 43, four first guide seats 411 which are in one-to-one guide fit with the four first guide rods 431 are arranged on the first portal frame 41, four connecting columns 432 which are distributed in a rectangular shape are arranged at the bottom of the first connecting plate 43, the sealing cover 44 is installed on the four connecting columns 432, a blowing cover 45 is arranged in the sealing cover 44, a plurality of air outlets 451 are arranged on the blowing cover 45, and a first connecting pipe 452 which is communicated with the blowing cover 45 is arranged at the top of the blowing cover 45; when the clock placing jig 2 is conveyed to a position right below the first portal frame 41, the first lifting cylinder 42 can drive the first connecting plate 43 and the closed cover 44 to descend, the closed cover 44 can cover the clock placing plate 231 on the U-shaped block 22, then air discharged from the air outlet 451 on the air blowing cover 45 can blow air to the clock in the placing groove 2312, the air generated in the air blowing operation is provided by the pressure pump, and the pressure pump is connected to the first connecting pipe 452 through a hose, and belongs to the prior art, and the working principle of the pressure pump is not described in detail herein.

The clock drying mechanism 5 comprises a second portal frame 51, a second lifting cylinder 52, a second connecting plate 53, a turnover assembly 54 and two mounting plates 56, wherein the turnover assembly 54 is used for driving the clock placing plate 231 to turn over, the second lifting cylinder 52 is vertically mounted on the second portal frame 51, four second guide rods 531 are arranged at the top of the second connecting plate 53 and distributed in a rectangular shape, four second guide seats 511 which are matched with the four second guide rods 531 in a one-to-one guiding mode are arranged on the second portal frame 51, the two mounting plates 56 are symmetrically arranged at the bottom of the second connecting plate 53 and are vertically arranged, a drying cover 57 is mounted on the inner wall of each mounting plate 56, a second connecting pipe 571 communicated with each drying cover 57 is arranged at the back of each drying cover 57, and the turnover assembly 54 is mounted on the inner wall of the second portal frame 51.

The overturning assembly 54 comprises a pushing cylinder 541, an overturning motor 542, a bearing plate 543, a third gear 544, a fourth gear 545, a rotating seat 546, a rotating shaft 547, a linkage sleeve 548 and a third mounting frame 55, wherein a rectangular linkage block 2331 is arranged on the second rotating shaft 233, a first fixing plate 512 which is horizontally arranged is arranged on the inner wall of the second portal frame 51, two sliding blocks 5432 which are symmetrically arranged are arranged at the bottom of the bearing plate 543, two sliding grooves 513 which are in one-to-one sliding fit with the two sliding blocks 5432 are arranged on the first fixing plate 512, the third mounting frame 55 is fixed on the first fixing plate 512, the pushing cylinder 541 is horizontally arranged on the third mounting frame 55, the output end of the pushing cylinder 541 is fixedly connected with the bearing plate 543, the rotating seat 546 is arranged on the bearing plate 543, the rotating shaft 547 is horizontally rotatably arranged on the rotating seat 546, the linkage sleeve 548 is arranged at one end of the rotating shaft 547, the linkage sleeve 548 is in clamping fit with the rectangular linkage block 2331, the third gear 544 is mounted at the other end of the rotating shaft 547, a vertical second fixing plate 5431 is arranged on the bearing plate 543, the turnover motor 542 is horizontally fixed on the second fixing plate 5431, the fourth gear 545 is mounted at the output end of the turnover motor 542, and the fourth gear 545 is meshed with the third gear 544.

As described in the two paragraphs, when the timepiece placement jig 2 is conveyed to the position under the second portal frame 51, the two turnover motors 542 simultaneously operate to drive the corresponding second gear 253 to rotate, the second gear 253 drives the first gear 252 and the rotating rod 254 to synchronously rotate, the limiting member 255 rotates 180 degrees along with the rotating rod 254, the pressing block 2551 on the limiting member 255 can press the timepiece in the placement groove 2312 to prevent the timepiece from shifting, then the positioning electric push rod 241 drives the positioning post 242 to move down, the positioning post 242 gradually disengages from the positioning hole 2321 of the first rotating shaft 232, the timepiece placement plate 231 is in a free state at this time, then the air cylinder 541 is pushed to drive the bearing plate 543 to move, the bearing plate 543 drives the linkage sleeve 548 to butt with the rectangular linkage block 2331, then the turnover motor 542 drives the fourth gear 545 to rotate, the fourth gear 545 drives the third gear 544 and the rotating shaft 547 to rotate around the axis of the rotating shaft 547, the rotation shaft 547 drives the linkage sleeve 548 and the rectangular linkage block 2331 to rotate synchronously, the rectangular linkage block 2331 drives the clock placing plate 231 to rotate by 90 degrees, then the clock placing plate 231 is in a vertical state, then the second lifting cylinder 52 drives the second connecting plate 53 and the two mounting plates 56 to move downwards, the two drying covers 57 respectively face to the opening of the placing groove 2312 and all the vent grooves 223, drying hot air blown out by the two drying covers 57 can quickly dry and evaporate water stains on the upper surface and the lower surface of the clock, the drying hot air at the position is provided by a hot air blower, the hot air blower is connected with the second connecting pipe 571 through a pipeline, the hot air blower belongs to the prior art, and the working principle of the hot air blower is not described herein.

The working principle of the invention is as follows: when the clock placing jig 2 moves to the side of the feeding mechanism, the electric cylinder 32 drives the lifting cylinder 33 and the suction disc 34 to move horizontally, the lifting cylinder 33 drives the suction disc 34 to move downwards until the suction disc 34 can adsorb the clock on the clock conveying belt 31, and then the clock is conveyed into the placing groove 2312 on the clock placing plate 231 in a horizontal state; when the clock placing jig 2 moves to a position right below the first portal frame 41, the first lifting cylinder 42 drives the first connecting plate 43 and the closed cover 44 to descend, the closed cover 44 can cover the clock placing plate 231 on the U-shaped block 22, then air exhausted from the air outlet 451 on the air blowing cover 45 can blow the clock in the placing groove 2312, most of water stains on the upper surface of the clock are blown by wind power to flow to the air vent grooves 223, then the water stains flow out of all the air vent grooves 223 and fall into the water outlet groove 221, and the water stains form water drops in the water outlet groove 221 and flow into the water receiving tray 11 along the inclined plane 2211, so that the primary treatment of the water stains on the clock is realized; when the clock placing jig 2 moves to the position right below the second portal frame 51, the two turning motors 542 work simultaneously to drive the corresponding second gear 253 to rotate, the second gear 253 drives the first gear 252 and the rotating rod 254 to rotate synchronously, the limiting member 255 rotates 180 degrees along with the rotating rod 254, the pressing block 2551 on the limiting member 255 can press the clock in the placing groove 2312 to prevent the clock from deviating, then the positioning electric push rod 241 drives the positioning column 242 to move downwards, the positioning column 242 gradually separates from the positioning hole 2321 of the first rotating shaft 232, the clock placing plate 231 is in a free state at the moment, then the air cylinder 541 pushes the bearing plate 543 to drive the bearing plate 543 to move, the bearing plate 543 drives the linkage sleeve 548 to butt with the rectangular linkage block 2331, then the turning motor 542 drives the fourth gear 545 to rotate, the fourth gear 545 drives the third gear 544 and the rotating shaft 547 to rotate around the axis of the rotating shaft 547, the rotating shaft 547 drives the linkage sleeve 548 and the rectangular linkage block 2331 to synchronously rotate, the rectangular linkage block 2331 drives the clock placing plate 231 to rotate for 90 degrees, then the clock placing plate 231 is in a vertical state, then the second lifting cylinder 52 drives the second connecting plate 53 and the two mounting plates 56 to move downwards, the two drying covers 57 respectively face to an opening of the placing groove 2312 and all the vent grooves 223, and drying hot air blown out by the two drying covers 57 can rapidly dry and evaporate water stains on the upper surface and the lower surface of the clock, so that the water stains on the clock are thoroughly cleaned; and finally, the clock is carried down through the clock blanking mechanism 6, the working principle of the clock blanking mechanism 6 is the same as that of the clock feeding mechanism 3, and the two clock limiting assemblies 25 stop working during carrying.

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