Cloth squeezing device

文档序号:903854 发布日期:2021-02-26 浏览:27次 中文

阅读说明:本技术 布料轧水装置 (Cloth squeezing device ) 是由 俞林强 侍霞芸 于 2020-11-17 设计创作,主要内容包括:本发明涉及一种布料轧水装置,包括基架,基架向上凸起设有限位部,基架上设有用于将布料中的水分轧出的轧水机构,轧水机构包括支撑柱、双向螺杆、伸缩气缸、连接件、轧板以及驱动电机,轧板下表面设有多个均匀分部的荆条,传送带下游设有悬挂辊,悬挂辊高度高于基架的高度。本发明具有以下优点和效果:能够提升对布料的轧水效果。(The invention relates to a cloth water squeezing device which comprises a base frame, wherein a limiting part is arranged on the base frame in an upward protruding mode, a water squeezing mechanism used for squeezing out water in cloth is arranged on the base frame and comprises a supporting column, a bidirectional screw, a telescopic cylinder, a connecting piece, a rolling plate and a driving motor, a plurality of uniformly distributed twigs are arranged on the lower surface of the rolling plate, a hanging roller is arranged on the lower portion of a conveying belt, and the height of the hanging roller is higher than that of the base frame. The invention has the following advantages and effects: the squeezing effect on the cloth can be improved.)

1. The utility model provides a cloth squeezing device, includes the bed frame, its characterized in that: the base frame is provided with a limiting part in an upward protruding mode, the base frame is provided with a water squeezing mechanism used for squeezing out water in cloth, the water squeezing mechanism comprises support columns, two-way screw rods, telescopic cylinders, connecting pieces, a rolling plate and a driving motor, the support columns are symmetrically fixed on the front side and the rear side of the base frame and located above the limiting part, the two-way screw rods comprise screw thread sections located between connecting sections at two ends and connecting ends, the connecting sections at the two ends are respectively rotatably connected with the support columns, rotating shafts of the driving motor are fixedly connected with the connecting sections, the connecting pieces are respectively sleeved on two sides of the screw thread sections, threads are arranged in the connecting pieces and form thread fit with the screw thread sections, each telescopic cylinder comprises a fixed end and a telescopic end, the fixed ends are fixed on the lower surfaces of the connecting pieces, and the telescopic ends are fixed with, when the telescopic cylinder extends out, the rolling plate is abutted against the surface of the base frame, a plurality of uniformly distributed chasts are arranged on the lower surface of the rolling plate, a hanging roller is arranged on the lower portion of the conveying belt, and the height of the hanging roller is higher than that of the base frame.

2. A cloth squezzing apparatus as claimed in claim 1, characterized in that: the roller type recycling device is characterized in that through holes penetrating through the base frame are formed in the base frame and are distributed uniformly, a first recycling box body is arranged below the base frame and is longitudinally opposite to the through holes, a second recycling box body is arranged below the suspension roller and is longitudinally opposite to the suspension roller.

3. A cloth squezzing apparatus as claimed in claim 1, characterized in that: still including the control mechanism who is used for realizing automated control, control mechanism include controller, first photoelectric sensor, second photoelectric sensor, third photoelectric sensor and limit switch, the controller be used for receiving sensing signal and control driving motor and telescopic cylinder action respectively according to sensing signal, first photoelectric sensor fix and be used for detecting telescopic cylinder and stretch out and target in place and send sensing signal to the controller on being close to the stiff end lateral wall of bed frame, second photoelectric sensor fix and be used for detecting telescopic cylinder and reset and target in place and send sensing signal to the controller on keeping away from the stiff end lateral wall of bed frame and be located the opposite side of first photoelectric sensor, third photoelectric sensor fix and be used for judging whether driving motor carries out the reversal and sends sensing signal to the controller on two-way screw rod, limit switch fix and be used for detecting on the spacing portion lateral wall whether roll the board offsets and send sensing signal with spacing portion lateral wall and and sending out a sensing signal to the controller.

4. A cloth squezzing apparatus as claimed in claim 1, characterized in that: still including being used for the water exhaust drainage mechanism that rolls out with the mechanism that rolls, drainage mechanism include mount, brush and swash plate, the mount fix respectively on the lateral wall that rolls board and keep away from spacing portion one side, the brush fix on the mount, offset with the bed frame surface when telescopic cylinder stretches out, spacing portion on be equipped with the opening, the swash plate fix at the bed frame lateral wall and with opening lower extreme parallel and level, the swash plate set up towards ground slope.

5. The cloth squezzing apparatus according to claim 4, characterized in that: and a third recovery box body is arranged below the inclined plate and longitudinally opposite to the inclined plate.

Technical Field

The invention relates to the technical field of clothing processing, in particular to a cloth water squeezing device.

Background

The clothes are made of cloth through a series of processing steps, such as dyeing, cutting, wrinkle removing, wrinkling, sanding, edge sealing and the like, wherein after the cloth is dyed, a large amount of residual dye and dyeing assistant are remained on the cloth, and the cloth needs to be washed by a large amount of water, so that the subsequent processing steps can be carried out after the cloth is subjected to water squeezing treatment.

At present, a device for carrying out squeezing treatment on water after dyeing cloth is composed of a pair of squeezing rollers which are arranged up and down, the cloth passes through between the two rollers, and water in the cloth is squeezed out through the rotation of the squeezing rollers.

Disclosure of Invention

Aiming at the defects in the prior art, the invention aims to provide a cloth water squeezing device which can improve the water squeezing effect on cloth.

In order to achieve the purpose, the invention provides the following technical scheme: the utility model provides a cloth squeezing device, includes the bed frame, its characterized in that: the base frame is provided with a limiting part in an upward protruding mode, the base frame is provided with a water squeezing mechanism used for squeezing out water in cloth, the water squeezing mechanism comprises support columns, two-way screw rods, telescopic cylinders, connecting pieces, a rolling plate and a driving motor, the support columns are symmetrically fixed on the front side and the rear side of the base frame and located above the limiting part, the two-way screw rods comprise screw thread sections located between connecting sections at two ends and connecting ends, the connecting sections at the two ends are respectively rotatably connected with the support columns, rotating shafts of the driving motor are fixedly connected with the connecting sections, the connecting pieces are respectively sleeved on two sides of the screw thread sections, threads are arranged in the connecting pieces and form thread fit with the screw thread sections, each telescopic cylinder comprises a fixed end and a telescopic end, the fixed ends are fixed on the lower surfaces of the connecting pieces, and the telescopic ends are fixed with, when the telescopic cylinder extends out, the rolling plate is abutted against the surface of the base frame, a plurality of uniformly distributed chasts are arranged on the lower surface of the rolling plate, a hanging roller is arranged on the lower portion of the conveying belt, and the height of the hanging roller is higher than that of the base frame.

The invention is further configured to: the roller type recycling device is characterized in that through holes penetrating through the base frame are formed in the base frame and are distributed uniformly, a first recycling box body is arranged below the base frame and is longitudinally opposite to the through holes, a second recycling box body is arranged below the suspension roller and is longitudinally opposite to the suspension roller.

The invention is further configured to: still including the control mechanism who is used for realizing automated control, control mechanism include controller, first photoelectric sensor, second photoelectric sensor, third photoelectric sensor and limit switch, the controller be used for receiving sensing signal and control driving motor and telescopic cylinder action respectively according to sensing signal, first photoelectric sensor fix and be used for detecting telescopic cylinder and stretch out and target in place and send sensing signal to the controller on being close to the stiff end lateral wall of bed frame, second photoelectric sensor fix and be used for detecting telescopic cylinder and reset and target in place and send sensing signal to the controller on keeping away from the stiff end lateral wall of bed frame and be located the opposite side of first photoelectric sensor, third photoelectric sensor fix and be used for judging whether driving motor carries out the reversal and sends sensing signal to the controller on two-way screw rod, limit switch fix and be used for detecting on the spacing portion lateral wall whether roll the board offsets and send sensing signal with spacing portion lateral wall and and sending out a sensing signal to the controller.

The invention is further configured to: still including being used for the water exhaust drainage mechanism that rolls out with the mechanism that rolls, drainage mechanism include mount, brush and swash plate, the mount fix respectively on the lateral wall that rolls board and keep away from spacing portion one side, the brush fix on the mount, offset with the bed frame surface when telescopic cylinder stretches out, spacing portion on be equipped with the opening, the swash plate fix at the bed frame lateral wall and with opening lower extreme parallel and level, the swash plate set up towards ground slope.

The invention is further configured to: and a third recovery box body is arranged below the inclined plate and longitudinally opposite to the inclined plate.

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

because the water squeezing mechanism and the hanging roller are arranged, when the telescopic cylinder in the water squeezing mechanism extends out, the rolling plate adjacent to the connecting end of the telescopic cylinder can extrude the cloth placed on the base frame, compared with the rotary extrusion by the water squeezing roller, the extrusion is more compact and complete, and the bidirectional screw in the water rolling mechanism can drive the connecting piece sleeved on the threaded section of the bidirectional screw to reciprocate under the driving of the driving motor, so that the rolling plate can finally extrude the cloth placed on the base frame in a reciprocating manner, the water in the cloth can be completely extruded out, and the suspension roller positioned at the downstream of the water squeezing mechanism can suspend the cloth extruded by the water squeezing mechanism, the residual moisture is separated from the cloth under the action of gravity, so that the moisture in the cloth is further discharged, therefore, the problem that the existing water squeezing device is poor in water squeezing effect is effectively solved, and the moisture in the cloth can be effectively discharged to enable subsequent processing to be more convenient.

Drawings

FIG. 1 is a schematic structural view of the telescopic cylinder of the present invention in a front view when the telescopic cylinder is not extended;

FIG. 2 is a schematic view of the left side of the telescopic cylinder of the present invention when extended;

FIG. 3 is a schematic top view of the telescopic cylinder of the present invention when extended;

FIG. 4 is a partially enlarged view of the position A in the present invention.

Detailed Description

The technical solutions of the present invention will be described clearly and completely with reference to the accompanying drawings, and it should be understood that the described embodiments are some, but not all embodiments of the present invention. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.

As shown in fig. 1 to 4, the invention discloses a cloth water squeezing device, comprising a base frame 1, a limiting part 2 is provided on the base frame 1 in an upward protruding manner, a water squeezing mechanism for squeezing out water in cloth is provided on the base frame 1, the water squeezing mechanism comprises a support column 31, a two-way screw 32, a telescopic cylinder 33, a connecting member 34, a squeezing plate 35 and a driving motor 36, the support column 31 is symmetrically fixed on the front and back sides of the base frame 1 and is located above the limiting part 2, the two-way screw 32 comprises a connecting section 321 located on the two ends and a screw thread section 322 located between the connecting ends, the connecting sections 321 on the two ends are respectively rotatably connected with the support column 31, the rotating shaft of the driving motor 36 is fixedly connected with the connecting sections 321, the connecting members 34 are provided with a plurality of connecting members 34 and are respectively sleeved on the two sides of the screw thread section 322, the connecting members 34 are provided with screw threads and, the telescopic end 332 is fixed with the rolling plate 35, when the telescopic cylinder 33 extends out, the rolling plate 35 is abutted against the surface of the base frame 1, the lower surface of the rolling plate 35 is provided with a plurality of uniformly distributed chaste bars 351, the downstream of the conveyor belt is provided with the hanging roller 4, the height of the hanging roller 4 is higher than that of the base frame 1, when cloth is placed on the base frame 1, the convex limiting part 2 on the base frame 1 can limit the moving path of the cloth on the base frame 1, the fixed end 331 of the telescopic cylinder 33 enables the telescopic cylinder 33 to be fixed on the connecting piece 34 more stably and prevents the cloth from falling off, when the telescopic cylinder 33 in the water rolling mechanism extends out, the rolling plate 35 adjacent to the connecting end of the telescopic cylinder 33 can extrude the cloth placed on the base frame 1, so that the extrusion is more compact and complete, and the bidirectional screw 32 in the water rolling mechanism can drive the connecting piece 34 sleeved on the threaded section 322 of the bidirectional screw 32 to reciprocate, because the connecting piece 34 is a plurality of also for making the roll plate 35 be a plurality of, thereby make the roll plate 35 can carry out reciprocal extrusion and the extrusion more complete to the cloth of placing on bed frame 1, ensure that the moisture in the cloth can extrude completely, and be located the roller 4 that hangs of mangle mechanism low reaches, because the height that hangs roller 4 is higher than the height of bed frame 1, make can hang the cloth after the mangle mechanism extrudees, can break away from the moisture in the further assurance cloth with remaining moisture and cloth under the effect of gravity and discharge, thereby improved the squeezing effect of mangle device, ensure that the moisture in the cloth can be by effectual discharge make subsequent processing more convenient, and the strip of thorns 351 of roll plate 35 lower surface can increase the roll plate 35 when extrudeing the cloth, the frictional force between roll plate 35 and the cloth, thereby promote the extrusion effect of roll plate 35 to the cloth.

Through holes 5 penetrating through the base frame 1 are arranged on the base frame 1, the through holes 5 are uniformly distributed, a first recovery box body 6 is arranged below the base frame 1, the first recovery box body 6 is longitudinally opposite to the through holes 5, a second recovery box body 7 is arranged below the suspension roller 4, the second recovery box body 7 is longitudinally opposite to the suspension roller 4, when the fabric is extruded by the water squeezing mechanism, squeezed water can be discharged through the through holes 5, so that the squeezed water is prevented from being absorbed by the fabric again, the water squeezing effect of the water squeezing device is improved, the discharged water can be recovered through the first recovery box body 6 longitudinally opposite to the through holes 5, the labor intensity required for recovering the discharged water is reduced, the utilization rate of the discharged water is improved, when the fabric suspended by the suspension roller 4 discharges residual water under the action of gravity, the second recovery box body 7 longitudinally opposite to the suspension roller 4 can recover residual water discharged, thereby reducing the labor intensity required for recovering the residual discharged moisture and improving the utilization rate of the residual discharged moisture.

The automatic control device further comprises a control mechanism for realizing automatic control, the control mechanism comprises a controller (not marked in the figure), a first photoelectric sensor 81, a second photoelectric sensor 82, a third photoelectric sensor 83 and a limit switch 84, the controller (not marked in the figure) is used for receiving induction signals and respectively controlling the driving motor 36 and the telescopic cylinder 33 to act according to the induction signals, the first photoelectric sensor 81 is fixed on the side wall of the fixed end 331 close to the base frame 1 and used for detecting whether the telescopic cylinder 33 extends to the right position and sending out the induction signals to the controller (not marked in the figure), the second photoelectric sensor 82 is fixed on the side wall of the fixed end 331 far away from the base frame 1 and located on the other side of the first photoelectric sensor 81 and used for detecting whether the telescopic cylinder 33 resets to the right position and sending out the induction signals to the controller (not marked in the figure), and the third photoelectric sensor 83 is fixed on the bidirectional screw 32 and used for judging whether the driving motor 36 reverses and sending out the induction signals to the controller (not marked in the figure) A limit switch 84 fixed on the side wall of the limit part 2 for detecting whether the rolling plate 35 is abutted against the side wall of the limit part 2 and sending a sensing signal to a controller (not shown in the figure), when the rolling mechanism works, the control mechanism can automatically control the rolling mechanism to perform reciprocating extrusion on the cloth, thereby reducing the labor cost and the labor intensity of workers, wherein when the second photoelectric sensor 82 detects that the telescopic cylinder 33 is reset in place, the controller (not shown in the figure) controls the telescopic cylinder 33 to extend out, when the first photoelectric sensor 81 detects that the telescopic cylinder 33 extends out in place, the controller (not shown in the figure) controls the driving motor 36 to rotate forwards, so that the connecting pieces 34 at two ends of the thread section 322 of the bidirectional screw 32 can move oppositely, thereby driving the rolling plate 35 to perform opposite extrusion on the cloth, wherein when the telescopic cylinder 33 extends out in place, the rolling plate 35 can press the cloth on the base frame 1, and the first photoelectric sensor 81 and the second photoelectric sensor 82 are respectively fixed on different side walls of the fixed end 331, so as to prevent mutual influence between the first photoelectric sensor 81 and the second photoelectric sensor 82, and further improve the stability of the control mechanism, when the third photoelectric sensor 83 detects that the rolling plates 35 at two ends are about to contact each other in the process that the rolling plates 35 at two ends approach each other, the controller (not shown in the figure) controls the driving motor 36 to rotate reversely, so that the connecting pieces 34 at two ends of the threaded section 322 of the bidirectional screw 32 can move back to back, so as to drive the rolling plates 35 to extrude the cloth back to back, wherein the detection range of the third photoelectric sensor 83 needs to be reduced, so as to prevent that when the distance between the rolling plates 35 at two ends is large, the driving motor 36 rotates back to extrude the cloth incompletely, when the rolling plates 35 moving back to back abut against the limit switch 84, the controller (not shown) controls the motor to rotate forwards and reciprocate in sequence, so that the water in the cloth can be effectively rolled out by the reciprocating extrusion of the water squeezing mechanism on the cloth, the limit switch 84 can prevent the rolling plate 35 from being abutted against the limit part 2 to cause abrasion, and the service life of the water squeezing mechanism is prolonged.

The water draining device also comprises a water draining mechanism used for draining water squeezed by the water squeezing mechanism, the water draining mechanism comprises a fixing frame 91, a brush 92 and an inclined plate 93, the fixing frame 91 is respectively fixed on the side wall of the side of the squeezing plate 35 far away from the limiting part 2, the brush 92 is fixed on the fixing frame 91 and is abutted against the surface of the base frame 1 when the telescopic cylinder 33 extends out, the limiting part 2 is provided with an opening 21, the inclined plate 93 is fixed on the side wall of the base frame 1 and is flush with the lower end of the opening 21, the inclined plate 93 is obliquely arranged towards the ground, when the squeezing plate 35 in the water squeezing mechanism carries out back-to-back squeezing on cloth, squeezed water can be drained through the brush 92 abutted against the cloth through the opening 21, so that the squeezed water is prevented from being absorbed by the cloth again, the water squeezing effect of the water squeezing device is improved, the fixing frame 91 can stabilize the brush 92 and prevent the brush 92 from falling, thereby improving the stability of the drainage mechanism.

The third recovery box body 10 is arranged below the sloping plate 93, the third recovery box body 10 is vertically opposite to the sloping plate 93, and when rolled water is discharged by the discharging mechanism, the discharged water can be recovered by the third recovery box body 10 vertically opposite to the sloping plate 93, so that the labor intensity required for recovering the discharged water is reduced, and the utilization rate of the discharged water is improved.

The present embodiment is only for explaining the present invention, and it is not limited to the present invention, and those skilled in the art can make modifications of the present embodiment without inventive contribution as needed after reading the present specification, but all of them are protected by patent law within the scope of the claims of the present invention.

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