CN215156292U - Material conveying device of particle counting machine - Google Patents
Material conveying device of particle counting machine Download PDFInfo
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- CN215156292U CN215156292U CN202121550096.0U CN202121550096U CN215156292U CN 215156292 U CN215156292 U CN 215156292U CN 202121550096 U CN202121550096 U CN 202121550096U CN 215156292 U CN215156292 U CN 215156292U
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Abstract
The utility model discloses a grain counting machine feeding device, include the pan feeding subassembly, the defeated material subassembly of vibration, the defeated material subassembly of belt that set gradually along material conveying path, and set up the defeated material subassembly of vibration with the edulcoration subassembly between the defeated material subassembly of belt. Impurity removal subassembly includes the otter board slide and sets up the suction subassembly that otter board slide was surveyed, impurity is in otter board slide section passes through suction subassembly suction. Impurity removal components arranged between the belt material conveying component and the vibration material conveying component remove impurities mixed in the material, and influence of the impurities on the counting result is avoided. The edulcoration subassembly carries out real-time edulcoration at the material transportation in-process, reaches the purpose of edulcoration under the prerequisite that does not influence conveying rate.
Description
Technical Field
The utility model relates to a tablet counting machine technical field, more specifically say, relate to a tablet counting machine feeding device.
Background
The counting machine is a machine which is suitable for the industries of pharmacy, hospitals, food and the like and is used for counting the medicines or food such as capsules, tablets, granules and the like. The machine has small volume, light weight, accurate counting, and simple operation. The contact surface of the counting article is made of stainless steel, and is ideal special equipment for counting bottled, bagged and canned products in various related industries.
When the conventional counting machine is used for conveying materials, the materials are moved to a counting area by a vibrating disc to be counted, but when the number of the counted materials is large and the error of the counted materials is small, the efficiency and the accuracy are hardly guaranteed simultaneously. The conventional modification is to increase the size of the device to increase the counting speed, but the accuracy aspect is difficult to guarantee. Meanwhile, when the materials are carried with tiny magazines or the materials are provided with easily-fallen skins (such as seed coating and the like), the counting accuracy is greatly influenced.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a tablet counting machine feeding device for solve the technical problem who exists among the above-mentioned background art.
The utility model provides a feeding device of a grain counting machine, which comprises a feeding component, a vibration feeding component, a belt feeding component and an impurity removing component, wherein the feeding component, the vibration feeding component and the belt feeding component are sequentially arranged along a material conveying path;
impurity removal subassembly includes the otter board slide and sets up the suction subassembly that otter board slide was surveyed, impurity is in otter board slide section passes through suction subassembly suction.
In a preferred embodiment, the suction assembly comprises a gathering cavity and a suction pipe communicated with the gathering cavity, the suction pipe is connected with a vacuum device, and the gathering cavity is arranged in an inclined wedge shape.
In a preferred embodiment, the mesh plate slideway is obliquely arranged between the vibration material conveying component and the belt material conveying component, the mesh plate slideway is fixedly connected with the oblique side of the gathering cavity, and a nozzle of the exhaust pipe corresponds to the mesh plate slideway.
In a preferred embodiment, the mesh plate slideway is uniformly provided with strip-shaped holes.
In a preferred embodiment, the vibration conveying assembly comprises a vibration disc and a vibrator arranged at the bottom of the vibration disc.
In a preferred embodiment, the belt material conveying assembly comprises a fixed frame, a driving roller fixed on the fixed frame, a material conveying belt sleeved on the driving roller, and a motor assembly for driving the driving roller to rotate.
In a preferred embodiment, a waist-shaped slotted hole is formed in the fixed frame on one side of the driving roller, a tensioning assembly is arranged at the waist-shaped slotted hole, and the tensioning assembly comprises a connecting block fixed with the end part of the driving roller and a bolt with one end fixed with the connecting block and the other end fixed with the fixed frame through threads.
The utility model discloses technical scheme's beneficial effect is:
1. impurity removal components arranged between the belt material conveying component and the vibration material conveying component remove impurities mixed in the material, and influence of the impurities on the counting result is avoided. The edulcoration subassembly carries out real-time edulcoration at the material transportation in-process, reaches the purpose of edulcoration under the prerequisite that does not influence conveying rate.
2. The advantage of utilizing defeated material belt to defeated material has: firstly, when the materials fall into a conveying belt from a slideway, the materials are tiled at high speed by using the conveying belt to prevent stacking; secondly, the posture and the speed of the material are kept stable when the material leaves the material conveying belt, and the counting accuracy is improved; thirdly, the conveying belt speed is fast, and the conveying efficiency of the conveying belt with the same size is more than 3 times of the vibration conveying efficiency.
Drawings
FIG. 1 is a diagram of the position relationship of the present invention on a digital camera,
FIG. 2 is a view of the present invention showing another perspective of the digital camera,
figure 3 is a schematic view of the overall structure of the utility model,
FIG. 4 is a schematic view of another structure of the present invention,
figure 5 is an enlarged view of the point a in figure 3 according to the present invention,
fig. 6 is an enlarged view of the point B in fig. 3 according to the present invention.
Description of reference numerals: the device comprises a material feeding component 1, a material feeding hopper 11, a vibration material conveying component 2, a vibration disc 21, a vibrator 22, a belt material conveying component 3, a fixed frame 31, a driving roller 32, a material conveying belt 33, a motor component 34, a waist-shaped groove 35, a tensioning component 36, a connecting block 361, a 362 bolt, an impurity removing component 4, a screen plate slideway 41, a strip-shaped hole 42, a gathering cavity 43 and an exhaust pipe 44.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention have been presented for purposes of illustration and description, and are not intended to be exhaustive or limited to the invention in the form disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiment was chosen and described in order to best explain the principles of the invention and the practical application, and to enable others of ordinary skill in the art to understand the invention for various embodiments with various modifications as are suited to the particular use contemplated.
Referring to fig. 1-6, the utility model provides a feeding device of a grain counting machine, including pan feeding subassembly 1, vibration material conveying subassembly 2, the defeated material subassembly 3 of belt that sets gradually along the material conveying route to and the edulcoration subassembly 4 of setting between vibration material conveying subassembly 2 and the defeated material subassembly 3 of belt.
The feeding assembly 1 comprises a feeding hopper 11 for storing materials, when the materials are conveyed, the materials enter the vibration conveying assembly 2 through the feeding hopper 11, the materials are conveyed to the belt conveying assembly 3 through the vibration conveying assembly 2, and then the belt conveying assembly 3 conveys the materials to a counting position. Impurity removal component 4 that sets up between defeated material subassembly 3 of belt and the defeated material subassembly 2 of vibration clears away the impurity that thoughtlessly has in the material, avoids impurity to cause the influence to the count result. Edulcoration subassembly 4 carries out real-time edulcoration at the material transportation in-process, reaches the purpose of edulcoration under the prerequisite that does not influence transport rate.
The impurity removing assembly 4 comprises a screen plate slideway 41 and a suction assembly arranged at one side of the screen plate slideway 41. The screen plate slideway 41 is obliquely arranged between the vibration material conveying component 2 and the belt material conveying component 3, materials are conveyed to the belt material conveying component through the screen plate slideway 41, and impurities are sucked and removed through the suction component at the screen plate slideway 41 section.
The suction assembly comprises a collecting cavity 43 and a suction pipe 44 arranged in communication with the collecting cavity 43, the suction pipe 44 is connected with a vacuum device (the vacuum device is realized by the prior art), and the collecting cavity 43 is arranged in an inclined wedge shape. The screen plate slideway 41 is fixedly connected with the inclined side of the gathering cavity 43, and the nozzle of the exhaust tube 44 corresponds to the screen plate slideway 41.
The vacuum device is started to pump out the gas in the gathering chamber 43 through the air pumping pipe 44, so that the negative pressure is formed on the surface of the screen plate slideway 41. Strip-shaped holes 42 are uniformly arranged on the screen plate slideway 41, and the height of the strip-shaped holes 42 only allows impurities to pass through but does not allow materials to pass through. Because the weight of the impurities is light, the impurities can pass through the strip-shaped holes 42 on the mesh plate slideway 41 to enter the gathering cavity 43 under the action of adsorption force and then are discharged out of the equipment by the exhaust tube 44, so that the separation of the materials and the impurities is realized.
The vibration feeding assembly 2 includes a vibration plate 21 and a vibrator 22 disposed at the bottom of the vibration plate 21. The material is conveyed to the belt feeding unit 3 by vibration through the vibration plate 21.
The belt material conveying assembly 3 comprises a fixed frame 31, a driving roller 32 fixed on the fixed frame 31, a material conveying belt 33 sleeved on the driving roller 32, and a motor assembly 34 for driving the driving roller 32 to rotate. The driving rollers 32 are provided in two, which are respectively provided on both sides of the feed belt 33, and one of them is connected to the motor unit 34.
A waist-shaped groove 35 hole is formed in the fixed frame 31 on one side of the transmission roller 32, a tensioning assembly 36 is arranged at the waist-shaped groove 35 hole, the tensioning assembly 36 comprises a connecting block 361 fixed to the end of the transmission roller 32 and a bolt 362, one end of the bolt is fixed to the connecting block 361, and the other end of the bolt is fixed to the fixed frame 31 through threads. The tightness of the feeding belt 33 is adjusted by changing the fixing position of the bolt 362 and the fixing frame 31.
The feeding speed of the feeding belt 33 can be adjusted according to the actual use condition. The advantage of utilizing defeated material belt 33 to defeated material has: firstly, when the materials fall into the material conveying belt 33 from the slide way, the materials are tiled to prevent stacking by utilizing the high speed of the material conveying belt 33; secondly, the posture and the speed of the material are kept stable when the material leaves the material conveying belt, and the counting accuracy is improved; thirdly, the speed of the material conveying belt is high, and the conveying efficiency of the material conveying belt 33 with the same size is more than 3 times of the vibration conveying efficiency.
It is obvious that the described embodiments are only some of the embodiments of the present invention, and not all of them. Based on the embodiments in the present disclosure, all other embodiments obtained by a person of ordinary skill in the art and related fields without creative efforts shall fall within the protection scope of the present disclosure. The structures, devices, and methods of operation of the present invention, not specifically described and illustrated, are generally practiced by those of ordinary skill in the art without specific recitation or limitation.
Claims (7)
1. The utility model provides a tablet counting machine feeding device which characterized in that: the device comprises a feeding assembly, a vibration material conveying assembly, a belt material conveying assembly and an impurity removing assembly, wherein the feeding assembly, the vibration material conveying assembly and the belt material conveying assembly are sequentially arranged along a material conveying path;
impurity removal subassembly includes the otter board slide and sets up the suction subassembly that otter board slide was surveyed, impurity is in otter board slide section passes through suction subassembly suction.
2. The feeding device of a counting machine according to claim 1, characterized in that: the suction assembly comprises a gathering cavity and an exhaust pipe communicated with the gathering cavity, the exhaust pipe is connected with a vacuum device, and the gathering cavity is in an inclined wedge shape.
3. The feeding device of a counting machine according to claim 2, characterized in that: the screen plate slide way is obliquely arranged between the vibration material conveying component and the belt material conveying component, the screen plate slide way is fixedly connected with the oblique side of the gathering cavity, and the opening of the exhaust pipe corresponds to the screen plate slide way.
4. The feeding device of a counting machine according to claim 2, characterized in that: and strip-shaped holes are uniformly formed in the screen plate slide ways.
5. The feeding device of a counting machine according to claim 1, characterized in that: the vibration material conveying assembly comprises a vibration disc and a vibrator arranged at the bottom of the vibration disc.
6. The feeding device of a counting machine according to claim 1, characterized in that: the belt conveying assembly comprises a fixed frame, a transmission roller fixed on the fixed frame, a conveying belt sleeved on the transmission roller and a motor assembly used for driving the transmission roller to rotate.
7. The feeding device of a counting machine according to claim 6, characterized in that: the fixed frame on one side of the driving roller is provided with a waist-shaped slotted hole, the waist-shaped slotted hole is provided with a tensioning assembly, the tensioning assembly comprises a connecting block fixed with the end part of the driving roller and a bolt with one end fixed with the connecting block and the other end fixed with the fixed frame through threads.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202121550096.0U CN215156292U (en) | 2021-07-08 | 2021-07-08 | Material conveying device of particle counting machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202121550096.0U CN215156292U (en) | 2021-07-08 | 2021-07-08 | Material conveying device of particle counting machine |
Publications (1)
Publication Number | Publication Date |
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CN215156292U true CN215156292U (en) | 2021-12-14 |
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CN202121550096.0U Active CN215156292U (en) | 2021-07-08 | 2021-07-08 | Material conveying device of particle counting machine |
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CN (1) | CN215156292U (en) |
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2021
- 2021-07-08 CN CN202121550096.0U patent/CN215156292U/en active Active
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