CN220077478U - Supply chain divides flow sorter - Google Patents

Supply chain divides flow sorter Download PDF

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Publication number
CN220077478U
CN220077478U CN202321591134.6U CN202321591134U CN220077478U CN 220077478 U CN220077478 U CN 220077478U CN 202321591134 U CN202321591134 U CN 202321591134U CN 220077478 U CN220077478 U CN 220077478U
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China
Prior art keywords
mounting
groove
plate
limit
supply chain
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CN202321591134.6U
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Chinese (zh)
Inventor
孙颖荪
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Guangzhou Jianjing Technology Co ltd
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Guangzhou Panyu Polytechnic
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Priority to CN202321591134.6U priority Critical patent/CN220077478U/en
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Abstract

The utility model discloses a supply chain split-flow sorting machine, which relates to the technical field of sorting equipment and comprises a base, wherein the top end of the base is provided with two mounting plates which are oppositely arranged, and a mounting area is formed between the two mounting plates; the top of mounting panel is equipped with slidable slide be equipped with a plurality of live rollers on the slide transversely be equipped with two connection crossbars that are relative setting in the installation region, connect the crossbar to be located on the both ends outer wall of mounting panel, and connect the both ends of crossbar all to be connected with the mounting panel is equipped with rotatable screw rod between these two connection crossbars the spiro union has the sliding block on the screw rod, the sliding block with the slide connection. The utility model can improve the sorting use efficiency of the sorting machine.

Description

Supply chain divides flow sorter
Technical Field
The utility model relates to the technical field of automatic batching equipment, in particular to a supply chain diversion sorting machine.
Background
The Supply chain (Supply chain) refers to the entire chain of products from the merchant to the consumer during production and distribution, involving the network of businesses upstream and downstream of the end user's activities to which the products or services are provided.
The utility model provides a 202122508837.5, discloses a supply chain reposition of redundant personnel letter sorting structure, including the base frame, the base frame is rectangular frame form, the outside winding of base frame has the drive belt that two intervals set up, the one corner of base frame is equipped with the actuating mechanism that drives two drive belts along the circumference of base frame and removes, two be connected with the push pedal that a plurality of intervals set up perpendicularly between the drive belt, push pedal perpendicular to base frame's surface, the top surface interval of base frame is equipped with a plurality of letter sorting mouths, and is a plurality of the size difference of letter sorting mouth, the below of letter sorting mouth is equipped with the reposition of redundant personnel structure, the reposition of redundant personnel structure is including the pair of symmetrical belt conveyor that sets up in the base frame both sides, one end of belt conveyor is located the below of letter sorting mouth, the below of letter sorting mouth is equipped with the letter sorting board that the slope set up, one side of the middle part of letter sorting board is connected with rotary cylinder, and the utility model can conveniently carry out the supply chain reposition of redundant personnel letter sorting, but above-mentioned scheme still has following defect:
1. in the process of using, because the sorting mechanism needs to be communicated with a discharge hole of the discharge mechanism in the using process, otherwise, the sorting mechanism is inconvenient to sort subsequent objects, the normal operation of the work is influenced, the using efficiency of the sorting machine is reduced, and meanwhile, the using efficiency of the sorting machine is also reduced.
2. In the process of using, because goods can produce the collision at the in-process of letter sorting, if can not carry out buffer operation to it, then in the in-process of using, can lead to the damage of article to influence the normal work of sorter, reduced the availability factor of this sorter.
Disclosure of Invention
The utility model aims to provide a supply chain split sorting machine, which can improve sorting use efficiency of the sorting machine.
In order to achieve the above purpose, the utility model provides a supply chain split sorting machine, which comprises the following specific embodiments:
the utility model provides a supply chain reposition of redundant personnel sorting machine, includes the base the top of base is equipped with two mounting panels, and these two mounting panels are relative setting, are formed with the installation region between these two mounting panels;
the top of mounting panel is equipped with slidable slide be equipped with a plurality of live rollers on the slide transversely be equipped with two connection crossbars that are relative setting in the installation region, connect the crossbar to be located on the both ends outer wall of mounting panel, and connect the both ends of crossbar all to be connected with the mounting panel is equipped with rotatable screw rod between these two connection crossbars the spiro union has the sliding block on the screw rod, the sliding block with the slide connection.
In some embodiments, the mounting plate is provided with a guide groove towards the side wall of the mounting area, the top end of the mounting plate is provided with a plug board which is conducted with the guide groove, the position of the bottom end of the sliding plate corresponding to the mounting plate is provided with a plug board which is matched with the plug groove in a plug way, the bottom end of the plug board extends into the plug groove, both sides of the sliding block are provided with connecting pieces, and the end parts of the connecting pieces extend into the guide groove to be connected with the plug board.
In some embodiments, the guiding groove is in an inverted T shape with the inserting groove, the guiding groove further comprises a limit baffle, the limit baffle comprises a first limit plate and a second limit plate, the first limit plate and the second limit plate are connected to form a T shape, the first limit plate is slidably accommodated in the guiding groove, the second limit plate is slidably accommodated in the inserting groove, the top end of the second limit plate extends to the upper side of the mounting plate, a limit groove is formed in the position of the guiding groove corresponding to the inserting groove, a limit bump is arranged on one side, opposite to the first limit plate, of the second limit plate, and the limit bump is in clamping fit with the limit groove.
In some embodiments, the sliding plate is provided with a containing groove, a guide plate is arranged on one side, adjacent to the connecting cross rod, of the containing groove, the guide plate is obliquely arranged from top to bottom from one side, which is away from the base, to one side, which is close to the base, of the guide plate, one side, opposite to the guide plate, of the sliding plate is arranged in an opening shape, and a plurality of rotating rollers which are uniformly arranged at intervals are erected in the containing groove.
In some embodiments, the two sides of the sliding plate adjacent to the mounting plate are provided with mounting grooves, the mounting grooves face one side of the accommodating groove, the two ends of the rotating roller are provided with connecting rods, the mounting grooves are internally provided with buffer mechanisms, the connecting rods penetrate through the lifting grooves to extend into the mounting grooves, the connecting rods are connected with the buffer mechanisms, and the rotating roller can move in the lifting grooves along the radial direction of the rotating roller.
In some embodiments, the buffer mechanism comprises a lifting block connected with the connecting rod, a buffer spring is arranged at the top end of the lifting block, the other end of the buffer spring is connected with the top end groove wall of the mounting groove, an elastic buffer sheet is arranged at the bottom end of the lifting block, the other end of the elastic buffer sheet is propped against the bottom end groove wall of the mounting groove, a guide rail is arranged on the inner wall of the mounting groove opposite to the lifting groove, a lifting rod is arranged at one end, deviating from the connecting rod, of the lifting block, the lifting rod is connected with the guide rail, or the end part of the connecting rod penetrates through the lifting block and is connected with the guide rail.
In some embodiments, either one end of the rotating screw rod extends out of the installation area through the connecting cross rod, the other end of the rotating screw rod is in threaded fit with the connecting cross rod, or both ends of the rotating screw rod extend out of the installation area through the connecting cross rod, a rotating disc is sleeved on the part of any rotating screw rod extending out of the installation area, and the rotating disc is in threaded fit with the rotating screw rod.
In some embodiments, the four feet at the bottom end of the base are respectively provided with a supporting rod, the bottom end of the supporting rod is provided with a supporting plate, and the supporting plate is provided with a through groove.
Based on the technical scheme, compared with the prior art, the utility model has the following beneficial effects:
1. through being the mounting panel that sets up relatively on the base, be formed with the installation region, be equipped with slidable slide on the top of mounting panel, transversely be equipped with two connection crossbars that are relative setting in the installation region, connect the both ends that the crossbar is located the mounting panel outer wall, and connect the both ends of crossbar all be connected with the mounting panel, be equipped with rotatable screw rod between these two connection crossbars, the sliding block is connected with the slide, it rotates to order about the screw rod through manual or automatic mode according to the user demand when using, make the sliding block move in the axial direction of screw rod, drive the slide along the axial direction displacement of screw rod, the realization sorter can be with its discharge gate intercommunication with discharge mechanism in the in-process of using, the convenience is to follow-up object sorting operation, the normal clear of work has improved the availability factor of this sorter, the availability factor of this sorter has also been improved simultaneously.
2. Through set up buffer gear in the mounting groove of seting up in the cell wall of the accommodation groove of slider, erect a plurality of live-rollers in the accommodation groove, the tip of every live-roller all is connected with buffer gear, when the article of discharge mechanism falls into the accommodation groove, the quality of article and the impact force that falls cause the oppression to the live-roller, the impact force that the live-roller received is exerted on the elastic buffer piece of the elevating block extrusion elevating block bottom of buffer gear, the pulling buffer spring is tensile, make the live-roller reset under the elastic reset force of buffer spring and elastic buffer piece in the light decline, realize the buffer operation of live-roller to the article in the in-process of using, thereby prevent follow-up article and/or live-roller collision damage in the in-process of using, the normal use of sorter has been improved, thereby the normal work of convenient sorter, the availability factor of this sorter has been improved.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a cross-sectional view of a mounting plate of the present utility model;
fig. 3 is a partial cross-sectional view of the slide plate and turning roller of the present utility model mated.
Reference numerals illustrate:
10. a base; 101. a support rod; 102. a support plate; 103. a through groove; 104. connecting the cross bars; 105. rotating the screw; 106. a rotating disc;
20. a mounting plate; 201. a mounting area; 202. a guide groove; 203. a plug-in groove; 204. a limit groove;
30. a limit baffle; 301. a first limiting plate; 302. a second limiting plate; 303. a limit bump;
40. a slide plate; 401. a receiving groove; 402. a mounting groove; 403. a deflector; 404. a lifting groove;
50. a buffer mechanism; 501. a lifting block; 502. a guide rail; 503. a buffer spring; 504. an elastic buffer sheet;
60. a rotating roller; 601. and (5) connecting a rod.
Detailed Description
A supply chain split sorter of the present utility model is described with reference to the accompanying drawings.
As shown in fig. 1-3, the supply chain split sorting machine provided in this embodiment includes a base 10, support rods 101 for supporting the base 10 are respectively disposed at four feet at the bottom end of the base 10, support plates 102 are disposed at the bottom ends of the support rods 101, and through slots 103 are formed in the support plates 102 for fixing the support plates 102 to the ground or a mounting surface by using structures such as bolts, screws or pins.
The base 10 is provided with two mounting plates 20 which are oppositely arranged, a mounting area 201 is formed between the two mounting plates 20, two connecting cross bars 104 which are oppositely arranged are transversely arranged in the mounting area 201, the connecting cross bars 104 are positioned on the outer walls of the two ends of the mounting plates 20, the two ends of each connecting cross bar 104 are connected with the mounting plates 20, a rotatable rotating screw 105 is arranged between the two connecting cross bars 104, a sliding block is screwed on the rotating screw 105, guide grooves 202 are formed in the side walls of the mounting plates 20 facing the mounting area 201, connecting pieces are arranged on the two sides of the sliding block, and the end parts of the connecting pieces extend into the guide grooves 202.
The top of the mounting plate 20 is provided with a plug-in groove 203 which conducts the guide groove 202, and the device further comprises a sliding plate 40, wherein a plug-in plate is arranged at the position, corresponding to the mounting plate 20, of the bottom end of the sliding plate 40, the plug-in plate is in plug-in fit with the plug-in groove 203, and the bottom end of the plug-in plate extends into the plug-in groove 203 to be connected with the connecting piece, so that the sliding plate 40 is connected with the sliding block.
Any one end of the rotating screw 105 passes through the connecting cross rod 104 to extend out of the installation area 201, the other end of the rotating screw 105 is in threaded fit with the connecting cross rod 104 and is arranged in the connecting cross rod 104, or both ends of the rotating screw 105 pass through the connecting cross rod 104 to extend out of the installation area 201, a rotating disc 106 is sleeved on the part of any rotating screw 105 extending out of the installation area 201, and the rotating disc 106 is in threaded fit with the rotating screw 105.
Through manual rotatory rolling disc 106 when using, drive the rotation screw 105 and rotate for the sliding block is at the axial direction activity of rotation screw 105, drives slide 40 along the axial direction displacement of rotation screw 105, has realized that the sorter can communicate its discharge gate with discharge mechanism in the in-process of using, conveniently to subsequent object letter sorting operation, the normal clear of the work of being convenient for has improved the availability factor of this sorter, has also improved the availability factor of this sorter simultaneously.
The sliding plate 40 is provided with a containing groove 401, a guide plate 403 is arranged on one side of the containing groove 401 adjacent to the connecting cross rod 104, the guide plate 403 is obliquely arranged from top to bottom from one side away from the base 10 to one side close to the base 10, one side of the sliding plate 40 opposite to the guide plate 403 is arranged in an opening shape, and a plurality of rotating rollers 60 which are uniformly arranged at intervals are erected in the containing groove 401.
The slide 40 with all be equipped with mounting groove 402 in the both sides that mounting panel 20 is adjacent mounting groove 402 orientation lifting groove 404 has been seted up to one side of holding groove 401 the both ends of live-action roller 60 are equipped with connecting rod 601 be equipped with buffer gear 50 in mounting groove 402, connecting rod 601 wears to establish lifting groove 404 stretches into in mounting groove 402, just connecting rod 601 with buffer gear 50 is connected, live-action roller 60 can follow its radial direction lifting groove 404 internal motion.
The buffer mechanism 50 comprises a lifting block 501 connected with a connecting rod 601, a buffer spring 503 is arranged at the top end of the lifting block 501, the other end of the buffer spring 503 is connected with the top end groove wall of the mounting groove 402, an elastic buffer sheet 504 is arranged at the bottom end of the lifting block 501, the other end of the elastic buffer sheet 504 is propped against the bottom end groove wall of the mounting groove 402, a guide rail 502 is arranged on the inner wall of the mounting groove 402 opposite to the lifting groove 404, a lifting rod is arranged at one end, deviating from the connecting rod 601, of the lifting block 501, the lifting rod is connected with the guide rail 502, or the end of the connecting rod 601 penetrates through the lifting block 501 and is connected with the guide rail 502.
In this embodiment, the connection between the guide rail 502 and the lifting block 501 is preferably that the end portion of the connecting rod 601 penetrates through the lifting block 501 and is connected with the guide rail 502, and the connection between the connecting rod 601 and the guide rail 502 may be implemented by adopting a structure that a guide hole is formed in the end portion of the connecting rod 601 to be matched with the guide rail 502, or a dovetail groove-like structure is arranged on the connecting rod 601 and the guide rail 502.
The guide slot 202 and the inserting slot 203 are matched to form an inverted T shape, the guide slot further comprises a limit baffle 30, the limit baffle 30 comprises a first limit plate 301 and a second limit plate 302, the first limit plate 301 and the second limit plate 302 are connected to form a T-shaped structure, the first limit plate 301 is slidably accommodated in the guide slot 202, the second limit plate 302 is slidably accommodated in the inserting slot 203, the top end of the second limit plate 302 extends to the upper portion of the mounting plate 20, a limit groove 204 is formed in the position, corresponding to the inserting slot 203, of the guide slot 202, a limit bump 303 is arranged on one side, opposite to the second limit plate 302, of the first limit plate 301, the limit bump 303 is in clamping fit with the limit groove 204, and the connection stability of the limit baffle 30 and the mounting block 20 is improved.
When the objects of the discharging mechanism fall into the accommodating groove 401, the mass of the objects and the falling impact force cause compression to the rotating roller 60, the compression force received by the rotating roller 60 acts on the lifting block 501 of the buffering mechanism 50 to squeeze the elastic buffering sheet 504 at the bottom end of the lifting block 501, and meanwhile the buffering spring 503 is pulled to stretch, so that the rotating roller 60 slightly descends under the action of the elastic restoring force of the buffering spring 503 and the elastic buffering sheet 504, the buffering operation of the rotating roller 60 on the objects in the using process is realized, the objects and/or the rotating roller 60 are prevented from being damaged due to collision in the using process, the normal use of the sorter is facilitated, the using efficiency of the sorter is improved, the normal work of the sorter is facilitated, and the using efficiency of the sorter is improved.
Variations and modifications to the above would be obvious to persons skilled in the art to which the utility model pertains from the foregoing description and teachings. Therefore, the utility model is not limited to the specific embodiments disclosed and described above, but some modifications and changes of the utility model should be also included in the scope of the claims of the utility model. In addition, although specific terms are used in the present specification, these terms are for convenience of description only and do not limit the present utility model in any way.

Claims (8)

1. The supply chain split-flow sorting machine is characterized by comprising a base, wherein the top end of the base is provided with two mounting plates which are oppositely arranged, and a mounting area is formed between the two mounting plates;
the top of mounting panel is equipped with slidable slide be equipped with a plurality of live rollers on the slide transversely be equipped with two connection crossbars that are relative setting in the installation region, connect the crossbar to be located on the both ends outer wall of mounting panel, and connect the both ends of crossbar all to be connected with the mounting panel is equipped with rotatable screw rod between these two connection crossbars the spiro union has the sliding block on the screw rod, the sliding block with the slide connection.
2. The supply chain split sorting machine according to claim 1, wherein a guide groove is formed in a side wall of the mounting plate facing the mounting area, a plug groove for conducting the guide groove is formed in the top end of the mounting plate, a plug plate is arranged at a position, corresponding to the mounting plate, of the bottom end of the sliding plate, the plug plate is in plug fit with the plug groove, the bottom end of the plug plate extends into the plug groove, connecting pieces are arranged on two sides of the sliding block, and the end portions of the connecting pieces extend into the guide groove to be connected with the plug plate.
3. The supply chain split sorting machine according to claim 2, wherein the guide slot is in an inverted 'T' shape in cooperation with the insertion slot, the guide chain split sorting machine further comprises a limit baffle, the limit baffle comprises a first limit plate and a second limit plate, the first limit plate and the second limit plate are connected to be in a 'T' shape, the first limit plate is slidably accommodated in the guide slot, the second limit plate is slidably accommodated in the insertion slot, the top end of the second limit plate extends to the upper portion of the mounting plate, a limit groove is formed in the position, corresponding to the insertion slot, of the guide slot, and a limit projection is arranged on one side, opposite to the second limit plate, of the first limit plate, and is in clamping fit with the limit groove.
4. A supply chain branching and sorting machine as claimed in any one of claims 1 to 3, wherein a receiving slot is provided in the slide plate, a deflector is provided on a side of the receiving slot adjacent to the connecting rail, the deflector being inclined from top to bottom from a side facing away from the base to a side adjacent to the base, the side of the slide plate opposite to the deflector being open, and a plurality of rotating rollers being arranged at regular intervals in the receiving slot.
5. The supply chain split sorting machine according to claim 4, wherein mounting grooves are formed in both sides of the sliding plate adjacent to the mounting plate, lifting grooves are formed in one side of the mounting grooves facing the accommodating grooves, connecting rods are arranged at both ends of the rotating roller, buffer mechanisms are arranged in the mounting grooves, the connecting rods penetrate through the lifting grooves and extend into the mounting grooves, the connecting rods are connected with the buffer mechanisms, and the rotating roller can move in the lifting grooves along the radial direction of the rotating roller.
6. The supply chain split sorting machine according to claim 5, wherein the buffer mechanism comprises a lifting block connected with the connecting rod, a buffer spring is arranged at the top end of the lifting block, the other end of the buffer spring is connected with the top end groove wall of the mounting groove, an elastic buffer sheet is arranged at the bottom end of the lifting block, the other end of the elastic buffer sheet is propped against the bottom end groove wall of the mounting groove, a guide rail is arranged on the inner wall of the mounting groove opposite to the lifting groove, a lifting rod is arranged at one end, facing away from the connecting rod, of the lifting block, the lifting rod is connected with the guide rail, or the lifting block is penetrated at the end of the connecting rod and connected with the guide rail.
7. A supply chain branching and sorting machine as claimed in any one of claims 1 to 3, wherein either end of the rotating screw extends through the connecting rail to the outside of the mounting area, the other end is provided in the connecting rail in threaded engagement with the connecting rail, or both ends of the rotating screw extend through the connecting rail to the outside of the mounting area, a rotating disc is provided over the portion of any one of the rotating screws extending to the outside of the mounting area, the rotating disc being in threaded engagement with the rotating screw.
8. A supply chain branching and sorting machine as claimed in any one of claims 1 to 3, characterised in that support bars are provided at the four feet of the base bottom end, support plates are provided at the bottom ends of the support bars, and through slots are provided in the support plates.
CN202321591134.6U 2023-06-20 2023-06-20 Supply chain divides flow sorter Active CN220077478U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321591134.6U CN220077478U (en) 2023-06-20 2023-06-20 Supply chain divides flow sorter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321591134.6U CN220077478U (en) 2023-06-20 2023-06-20 Supply chain divides flow sorter

Publications (1)

Publication Number Publication Date
CN220077478U true CN220077478U (en) 2023-11-24

Family

ID=88826305

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321591134.6U Active CN220077478U (en) 2023-06-20 2023-06-20 Supply chain divides flow sorter

Country Status (1)

Country Link
CN (1) CN220077478U (en)

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Effective date of registration: 20240703

Address after: Room 307, 3rd Floor, Yingfeng Center, No. 5 Guangshen Avenue West, Xintang Town, Zengcheng District, Guangzhou City, Guangdong Province, 510800

Patentee after: Guangzhou Jianjing Technology Co.,Ltd.

Country or region after: China

Address before: 511483 No. 1342 Shiliang Road, Shawan Town, Panyu District, Guangzhou City, Guangdong Province

Patentee before: GUANGZHOU PANYU POLYTECHNIC

Country or region before: China