Powder detection device

文档序号:668019 发布日期:2021-04-30 浏览:24次 中文

阅读说明:本技术 一种粉末检测装置 (Powder detection device ) 是由 王懋 于 2020-12-15 设计创作,主要内容包括:本发明公开了一种粉末检测装置,涉及检测技术领域;该粉末检测装置,包括支撑架,支撑架上固定有检测箱,检测箱通过连接口与进料箱连通,进料箱内设有吸附组件;所述检测箱内固定有固定板,固定板上设有检测组件,检测箱内还设有搅拌组件。通过设置在进料箱内的吸附组件,能够检测进入的粉末中是否含有金属杂质,结构简单、检测效果好,同时方便进行安装和拆除;而通过设置在检测箱内的检测组件和搅拌组件,既能够检测粉末中是否含有所需粒径的粉末,又可检测内部是否含有金属,提高了检测的效果。(The invention discloses a powder detection device, and relates to the technical field of detection; the powder detection device comprises a support frame, wherein a detection box is fixed on the support frame and is communicated with a feeding box through a connector, and an adsorption component is arranged in the feeding box; the detection box is internally fixed with a fixed plate, the fixed plate is provided with a detection assembly, and the detection box is internally provided with a stirring assembly. The adsorption assembly arranged in the feeding box can detect whether the entering powder contains metal impurities, the structure is simple, the detection effect is good, and meanwhile, the installation and the removal are convenient; and through setting up detecting element and the stirring subassembly in the detection case, can enough detect whether contain the powder of required particle diameter in the powder, whether detectable inside contains the metal again, improved the effect that detects.)

1. The powder detection device comprises a support frame (01), and is characterized in that a detection box (03) is fixed on the support frame (01), the detection box (03) is communicated with a feeding box (02) through a connecting port (31), and an adsorption component is arranged in the feeding box (02); the detection box (03) is internally fixed with a fixing plate (30), the fixing plate (30) is provided with a detection component (04), and the detection box (03) is internally provided with a stirring component (05).

2. The powder detection device according to claim 1, wherein the adsorption assembly comprises a first protection frame (22) fixed in the feeding box (02), a first driving shaft (23) is rotatably arranged in the first protection frame (22), first fan blades (24) are fixed on the first driving shaft (23), one end of the first driving shaft (23) is fixedly connected with an output end of a first motor (25) fixed on the support frame (01), the number of the first driving shafts (23) is three, the three first driving shafts (23) are connected through a first synchronous belt (27), and a first air hole (210) and a stop block (211) are formed in the first protection frame (22).

3. The powder detecting apparatus according to claim 2, wherein the adsorption module further comprises a sealing plate (28) mounted on the feed box (02), the first magnet (29) being provided in the sealing plate (28).

4. The powder detection device according to claim 1, wherein a lining (33) is arranged in the detection box (03), a fixing plate (30) is fixed in the lining (33), and a screen (32) is arranged on the fixing plate (30).

5. The powder detection device according to claim 1, wherein the detection assembly (04) comprises a fixed cavity (41) arranged in the lining (33), a first rotating shaft (42) is rotatably arranged on the fixed cavity (41), the fixed cavity (41) is connected with a second driving shaft (44) through a first gear set (43), the second driving shaft (44) is connected with the output end of a second motor (46) through a second gear set (45), the first rotating shaft (42) is connected with a threaded sleeve (48) through a third gear set (47), a threaded column (49) is in threaded connection with the threaded sleeve (48), the threaded column (49) is fixedly connected with the moving plate (410), and a second magnet (411) is arranged on the moving plate (410).

6. The powder detection device according to claim 1, wherein the stirring assembly (05) comprises a third driving shaft (51) connected with the output end of the second motor (46), the third driving shaft (51) penetrates through the fixing plate (30) and is rotatably connected with the top of the detection box (03), two first stirring bodies (52) are arranged on the third driving shaft (51), the two first stirring bodies (52) are connected through a spring (54), the third driving shaft (51) is connected with a fourth driving shaft (56) rotatably arranged in the second protection frame (58) through a second synchronous belt (55), a second fan blade (57) is fixed on the fourth driving shaft (56), and a second air hole (59) is further formed in the second protection frame (58).

7. The powder detection device according to claim 6, wherein the first stirring body (52) comprises a first shaft sleeve (521) and a second shaft sleeve (522) which are rotatably arranged on the third driving shaft (51), the first shaft sleeve (521) and the second shaft sleeve (522) are respectively hinged with a hinge base (523), the hinge base (523) is hinged with one end of a connecting rod (524), and the connecting rods (524) are connected through hinges (525).

Technical Field

The invention relates to the technical field of detection, in particular to a powder detection device.

Background

Powder generally refers to an aggregate of discrete particles less than 1mm in size. The powder needs to be detected in daily life, the detected content comprises whether the powder contains substances with required particle sizes and whether the powder contains other metal powder impurities, most of the existing detection devices are directly carried out through a screening method, and whether the substances with the required particle sizes exist is checked through multiple screening.

The existing detection device is mostly directly screened through a plurality of screens in the detection process and is oscillated and mixed through an oscillating machine, the device only can detect the particle size of powder in the use process, other impurities cannot be known, and meanwhile, the device is poor in screening effect and low in functionality of the powder in the use process.

Disclosure of Invention

The present invention is directed to a powder detection apparatus to solve the above problems.

In order to achieve the purpose, the invention provides the following technical scheme:

a powder detection device comprises a support frame, wherein a detection box is fixed on the support frame and is communicated with a feeding box through a connector, and an adsorption component is arranged in the feeding box; the detection box is internally fixed with a fixed plate, the fixed plate is provided with a detection assembly, and the detection box is internally provided with a stirring assembly.

On the basis of the technical scheme, the invention also provides the following optional technical scheme:

in one alternative: the adsorption component comprises a first protection frame fixed in the feeding box, a first driving shaft is arranged in the first protection frame in a rotating mode, first fan blades are fixed on the first driving shaft, one end of the first driving shaft is fixedly connected with the output end of a first motor fixed on the supporting frame, the number of the first driving shaft is three, the three first driving shafts are connected through a first synchronous belt, and a first air hole and a stop block are arranged on the first protection frame.

In one alternative: the adsorption component further comprises a sealing plate arranged on the feeding box, and a first magnet is arranged in the sealing plate.

In one alternative: be equipped with the inside lining in the detection case, the inside lining internal fixation has the fixed plate, is equipped with the screen cloth on the fixed plate.

In one alternative: the detection assembly rotates on the fixed cavity and is equipped with first pivot including setting up the fixed chamber in the inside lining, and fixed chamber is connected with the second drive shaft through first gear train, and the second drive shaft passes through the output of second gear train with the second motor to be connected, and first pivot passes through third gear train and threaded sleeve is connected, and threaded sleeve goes up threaded connection has the screw thread post, and screw thread post and movable plate fixed connection are equipped with the second magnet on the movable plate.

In one alternative: the stirring assembly comprises a third driving shaft connected with the output end of the second motor, the third driving shaft penetrates through the fixing plate and is connected with the top of the detection box in a rotating mode, two first stirring bodies are arranged on the third driving shaft, the two first stirring bodies are connected through a spring, the third driving shaft is connected with a fourth driving shaft arranged in the second protection frame in a rotating mode through a second synchronous belt, a second fan blade is fixed on the fourth driving shaft, and a second air hole is formed in the second protection frame.

In one alternative: first stirring body is including rotating first axle sleeve and the second axle sleeve that sets up in the third drive epaxial, and first axle sleeve and second axle are sheathe in and all are articulated to have articulated seat, and articulated seat is articulated with the one end of connecting rod, passes through hinge connection between the connecting rod.

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

the adsorption assembly arranged in the feeding box can detect whether the entering powder contains metal impurities, the structure is simple, the detection effect is good, and meanwhile, the installation and the removal are convenient; and through setting up detecting element and the stirring subassembly in the detection case, can enough detect whether contain the powder of required particle diameter in the powder, whether detectable inside contains the metal again, improved the effect that detects.

Drawings

FIG. 1 is a schematic structural diagram of the present invention.

FIG. 2 is a schematic view of the stirring assembly of the present invention.

FIG. 3 is a schematic view of the structure of the feed box of the present invention.

Notations for reference numerals: 01-support frame, 02-feeding box, 03-detection box, 04-detection component, 05-stirring component, 21-feeding hole, 22-first protection frame, 23-first driving shaft, 24-first fan blade, 25-first motor, 27-first synchronous belt, 28-sealing plate, 29-first magnet, 210-first air hole, 211-stopper, 30-fixing plate, 31-connecting port, 32-screen, 33-lining, 41-fixing cavity, 42-first rotating shaft, 43-first gear set, 44-second driving shaft, 45-second gear set, 46-second motor, 47-third gear set, 48-threaded sleeve, 49-threaded column, 410-moving plate, 411-second magnet, 51-a third driving shaft, 52-a first stirring body, 54-a spring, 55-a second synchronous belt, 56-a fourth driving shaft, 57-a second fan blade, 58-a second protective frame, 59-a second air hole, 521-a first shaft sleeve, 522-a second shaft sleeve, 523-a hinge base, 524-a connecting rod and 525-a hinge.

Detailed Description

The present invention will be described in detail with reference to the following embodiments, wherein like or similar elements are designated by like reference numerals throughout the several views, and wherein the shape, thickness or height of the various elements may be expanded or reduced in practice. The examples are given solely for the purpose of illustration and are not intended to limit the scope of the invention. Any obvious modifications or variations can be made to the present invention without departing from the spirit or scope of the present invention.

Example 1

Referring to fig. 1 to 3, in the embodiment of the invention, a powder detection device comprises a support frame 01, a detection box 03 is fixed on the support frame 01, the detection box 03 is communicated with a feeding box 02 through a connector 31, and an adsorption component is arranged in the feeding box 02, so that the preliminary detection effect on powder is achieved, and the powder detection device is very simple; detection case 03 internal fixation has fixed plate 30, is equipped with determine module 04 on the fixed plate 30, and then plays and detect the powder, simultaneously, still be equipped with stirring subassembly 05 in the detection case 03, can play the stirring effect to the powder through stirring subassembly 05, and then conveniently adsorb, have very good practicality.

Furthermore, a feed inlet 21 is formed in the top of the feed box 02, and powder can conveniently enter through the feed inlet 21; the adsorption assembly comprises a first protection frame 22 fixed in the feeding box 02, a first driving shaft 23 is rotatably arranged in the first protection frame 22, a first fan blade 24 is fixed on the first driving shaft 23, the first fan blade 24 can be driven to rotate when the first driving shaft 23 rotates, one end of the first driving shaft 23 is fixedly connected with the output end of a first motor 25 fixed on the supporting frame 01, and the first driving shaft 23 can be driven to rotate when the first motor 25 works, so that the air blowing effect is achieved; the number of the first driving shafts 23 is three, and the three first driving shafts 23 are connected through a first synchronous belt 27, so that the three first fan blades 24 can be driven to rotate at the same time, and a better blowing effect is achieved; in addition, be equipped with first wind hole 210 and dog 211 on first protection frame 22, through the convenient wind of first wind hole 210 passing through, and then blow up the powder, and can improve the flow path of wind through dog 211, and then improved preliminary absorbent effect, have very good practicality.

Further, the adsorption assembly further comprises a sealing plate 28 installed on the feeding box 02, a first magnet 29 is arranged in the sealing plate 28, the sealing plate 28 can play a role in sealing, the sealing plate 28 is convenient to take out, the metal powder can be adsorbed through the first magnet 29, and whether metal is contained in the entering powder or not can be detected.

Furthermore, a lining 33 is arranged in the detection box 03, a fixing plate 30 is fixed in the lining 33, and a screen 32 is arranged on the fixing plate 30, so that a very good detection effect can be achieved, and whether powder with a required particle size is contained or not can be detected.

Further, the detection assembly 04 includes a fixed cavity 41 disposed in the lining 33, a first rotating shaft 42 is rotatably disposed on the fixed cavity 41, that is, the first rotating shaft 42 can rotate in the fixed cavity 41, the fixed cavity 41 is connected to a second driving shaft 44 through a first gear set 43, when the second driving shaft 44 rotates, the first rotating shaft 42 can be driven to rotate, the second driving shaft 44 is connected to an output end of a second motor 46 through a second gear set 45, when the second motor 46 works, the second driving shaft 44 can be driven to rotate, and further the first rotating shaft 42 is driven to rotate, which is very simple; meanwhile, the first rotating shaft 42 is connected with the threaded sleeve 48 through the third gear set 47, the threaded sleeve 48 is connected with the threaded column 49 in a threaded mode, the threaded column 49 is fixedly connected with the moving plate 410, the second magnet 411 is arranged on the moving plate 410, the threaded sleeve 48 can be driven to rotate when the first rotating shaft 42 rotates, the moving plate 410 can move in the horizontal direction through connection of the threaded sleeve 48 and the threaded column 49, powder on the fixing plate 30 can be screened when the moving plate 410 moves, metal in the powder can be adsorbed through the second magnet 411, and the double detection effect is achieved.

Further, the stirring assembly 05 comprises a third driving shaft 51 connected with the output end of the second motor 46, the third driving shaft 51 penetrates through the fixing plate 30 and is rotatably connected with the top of the detection box 03, two first stirring bodies 52 are arranged on the third driving shaft 51, the two first stirring bodies 52 are connected through a spring 54, and when the third driving shaft 51 rotates, the first stirring bodies 52 can be driven to rotate, so that the powder is stirred; in addition, the third driving shaft 51 is connected with a fourth driving shaft 56 which is rotatably arranged in a second protection frame 58 through a second synchronous belt 55, a second fan blade 57 is fixed on the fourth driving shaft 56, the second fan blade 57 can be driven to rotate when the third driving shaft 51 rotates, so that the function of blowing air again is achieved, and a second air hole 59 is further formed in the second protection frame 58, so that air can pass through the second air hole.

The adsorption assembly arranged in the feeding box 02 can detect whether the entering powder contains metal impurities, has a simple structure and a good detection effect, and is convenient to install and dismantle; and through setting up determine module 04 and the stirring subassembly 05 in detection case 03, can enough detect whether contain the powder of required particle diameter in the powder, whether detectable inside contains the metal again, improved the effect that detects.

Example 2

The first stirring body 52 comprises a first shaft sleeve 521 and a second shaft sleeve 522 which are rotatably arranged on the third driving shaft 51, wherein the second shaft sleeve 522 can slide on the third driving shaft 51, the first shaft sleeve 521 and the second shaft sleeve 522 are both hinged with a hinge base 523, the hinge base 523 is hinged with one end of a connecting rod 524, the connecting rods 524 are connected through hinges 525, and when the third driving shaft 51 rotates, the connecting rod 524 can be driven to rotate, so that a stirring effect is achieved.

The working principle of the invention is as follows: powder enters the feeding box 02 through the feeding hole 21, the first driving shaft 23 is driven to rotate by the first motor 25 to blow air, the powder is adsorbed by the first magnet 29 on the sealing plate 28, then enters the detection box 03 through the connecting port 31, the second driving shaft 44 is driven to rotate by the second motor 46, then the first rotating shaft 42 is driven to rotate, and finally the moving plate 410 is driven to move on the fixed plate 30 to play a role in screening and adsorption; when the second motor 46 is operated, the first stirring body 52 is driven to rotate, so as to stir the powder on the fixing plate 30.

The above description is only for the specific embodiments of the present disclosure, but the scope of the present disclosure is not limited thereto, and any person skilled in the art can easily conceive of the changes or substitutions within the technical scope of the present disclosure, and all the changes or substitutions should be covered within the scope of the present disclosure. Therefore, the protection scope of the present disclosure shall be subject to the protection scope of the claims.

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