Secondary distributing, positioning and feeding device

By designing a secondary material dividing, positioning and loading device, automatic feeding and precise positioning of the PP pad are achieved, solving the problem of low assembly efficiency of the energy storage battery cover and improving assembly efficiency and product precision.

CN223397005UActive Publication Date: 2025-09-30S Z JUHONG COMP TELECOMM TECH CO LTD
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Patent Information

Application Number
CN202422258929.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-09-30
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

The existing PP pad assembly efficiency of energy storage battery covers is low, and efficient automated positioning and assembly cannot be achieved.

Method used

A secondary material distribution and positioning feeding device is designed, which includes a PP pad feeding bracket, a PP pad collection box, a PP pad blocking component and a secondary material distribution and positioning mechanism. The cylinder and the optical fiber sensor are used to realize automatic feeding and precise positioning of the PP pad.

Benefits of technology

It realizes automatic feeding and precise positioning of PP pads, improves assembly efficiency, ensures product position accuracy, and is suitable for the assembly of energy storage battery covers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a secondary distributing, positioning and feeding device which comprises a PP pad feeding support, a PP pad collecting box erected at the upper end of the PP pad feeding support, PP pad blocking assemblies installed on the two sides of the PP pad feeding support and used for blocking PP pads at the bottom in the PP pad collecting box, and a secondary distributing and positioning mechanism located below the PP pad collecting box. The secondary material distributing and positioning mechanism comprises a feeding track plate, a positioning baffle, a first material pushing air cylinder, a material pushing plate, a second material pushing air cylinder, a secondary dislocation assembly, a brake pad assembly and correlation optical fibers. By means of the mode, the PP pad collecting box automatically falls and supplies materials, the PP pads are positioned in two times, and two products are positioned so as to be used for follow-up assembly.
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Description

Technical Field

[0001] The utility model relates to the technical field of feeding, in particular to a secondary material dividing and positioning feeding device. Background Art

[0002] With the rapid development of energy storage projects in recent years, higher requirements have been placed on the production capacity and quality of energy storage battery covers. This product is an important component of energy storage batteries and is a product with good sales in the domestic market. The battery cover contains a PP pad, which needs to be grabbed onto the cover and then riveted and buckled. Currently, individual products are assembled one by one, which is inefficient.

[0003] Based on the above defects and deficiencies, it is necessary to improve the existing technology and design a secondary material dividing, positioning and feeding device. Utility Model Content

[0004] The main technical problem solved by the utility model is to provide a secondary material dividing, positioning and feeding device. The PP pad collecting box automatically drops and feeds the material, and positions the PP pad twice, positioning two products for subsequent assembly.

[0005] In order to solve the above technical problems, a technical solution adopted by the present invention is: to provide a secondary material distribution positioning and feeding device, which includes a PP pad feeding bracket, a PP pad collection box mounted on the upper end of the PP pad feeding bracket, a PP pad blocking component installed on both sides of the PP pad feeding bracket for blocking the PP pad at the bottom of the PP pad collection box, and a secondary material distribution positioning mechanism located below the PP pad collection box, the secondary material distribution positioning mechanism includes a feeding track plate, a positioning baffle, a first pushing cylinder, a pushing plate, a second pushing cylinder, a secondary dislocation component, a brake pad component and a shooting optical fiber, and the feeding track plate is provided with a product profiling Sliding groove, a positioning baffle is installed at the end of the feeding track plate, the first pushing cylinder is installed on the PP pad loading bracket below the feeding track plate through a bracket, the first pushing cylinder drives the pushing plate to move horizontally toward the positioning baffle, and the pushing plate is extended upward and is provided with a protrusion that can push the PP pad in the feeding track plate, the second pushing cylinder is arranged below the other end of the feeding track plate through a bracket, the second pushing cylinder drives the secondary dislocation assembly to move horizontally, and two positioning stations are provided on the feeding track plate, and the feeding track plate at the side end of the positioning station is installed with a brake pad assembly and a corresponding optical fiber, and the first pushing cylinder and the second pushing cylinder push the PP pad to the two positioning stations in turn.

[0006] Preferably, the secondary dislocation assembly includes a dislocation frame, a dislocation cylinder, a dislocation wedge and a dislocation lifting block. Two dislocation cylinders are installed on the side ends of the dislocation frame. The dislocation cylinders drive the dislocation wedge to slide. Two wedge-shaped surfaces are provided on the dislocation wedge. A dislocation lifting block is provided above the wedge surface. The dislocation lifting block is vertically inserted into the dislocation frame. The dislocation lifting block is divided into group A and group B, which are driven by corresponding dislocation cylinders respectively. The piston rod of the dislocation cylinder is extended, and the dislocation lifting block rises with the cooperation of the dislocation wedge and the dislocation lifting block.

[0007] Preferably, the brake pad assembly includes a base, a brake pad and a spring. The base is fixed to the outer end of the feed track plate, and the brake pad is slidably inserted into the feed track plate. The setting direction of the brake pad is perpendicular to the feeding direction on the feed track plate. The brake pad and the base are elastically connected by a spring, and guide slopes are provided on both sides of the protruding end of the brake pad.

[0008] Preferably, the PP mat blocking assembly includes a blocking cylinder mounted to the PP mat feeding bracket through a bracket and a blocking plate driven by a side blocking cylinder and inserted into the bottom of the PP mat collecting box.

[0009] Compared with the prior art, the beneficial effects of the present invention are:

[0010] The PP pad collection box automatically drops and feeds the material, and the PP pad blocking component blocks the upper layer of product in time;

[0011] Position the PP pad twice to position the two products for subsequent assembly;

[0012] The brake pad assembly clamps the pushed product in time to ensure its position accuracy. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is a structural diagram of a secondary material dividing, positioning and loading device.

[0014] Figure 2 This is a schematic diagram of the secondary dislocation component structure of a secondary material dividing, positioning and loading device.

[0015] Figure 3 This is a schematic diagram of the brake pad assembly structure of a secondary material separation, positioning and loading device.

[0016] Among them, 1. PP pad feeding bracket; 2. PP pad collection box; 3. PP pad blocking assembly, 31. Blocking cylinder, 32. Blocking plate; 4. Secondary material distribution and positioning mechanism, 41. Feeding track plate, 42. Positioning baffle, 43. First pushing cylinder, 44. Pushing plate, 45. Second pushing cylinder, 46. Secondary dislocation assembly, 461. Dislocation rack, 462. Dislocation cylinder, 463. Dislocation wedge, 464. Dislocation lifting block, 47. Brake pad assembly, 471. Base, 472. Brake pad, 473. Spring, 48. Optical fiber. DETAILED DESCRIPTION

[0017] The preferred embodiments of the present invention are described in detail below in conjunction with the accompanying drawings so that the advantages and features of the present invention can be more easily understood by those skilled in the art, thereby making a clearer and more precise definition of the protection scope of the present invention.

[0018] See also Figures 1 to 3 , the embodiments of the present utility model include:

[0019] A secondary material distribution positioning and loading device, the secondary material distribution positioning and loading device includes a PP pad loading bracket 1, a PP pad collection box 2 mounted on the upper end of the PP pad loading bracket 1, a PP pad blocking component 3 installed on both sides of the PP pad loading bracket 1 for blocking the PP pad at the bottom of the PP pad collection box 2, and a secondary material distribution positioning mechanism 4 located below the PP pad collection box 2, the secondary material distribution positioning mechanism 4 includes a feeding track plate 41, a positioning baffle 42, a first pushing cylinder 43, a pushing plate 44, a second pushing cylinder 45, a secondary dislocation component 46, a brake pad component 47 and a shooting optical fiber 48, the feeding track plate 41 is provided with a product profiling sliding groove, and a positioning baffle is installed at the end of the feeding track plate 41 42. The first pushing cylinder 43 is installed on the PP pad loading bracket 1 below the feeding track plate 41 through a bracket. The first pushing cylinder 43 drives the pushing plate 44 to move horizontally toward the positioning baffle 42. The pushing plate 44 extends upward and is provided with a protrusion that can push the PP pad in the feeding track plate 41. The second pushing cylinder 45 is set below the other end of the feeding track plate 41 through a bracket. The second pushing cylinder 45 drives the secondary misalignment assembly 46 to move horizontally. Two positioning stations are provided on the feeding track plate 41. The brake pad assembly 47 and the opposing optical fiber 48 are installed on the feeding track plate 41 at the side end of the positioning station. The first pushing cylinder 43 and the second pushing cylinder 45 push the PP pad to the two positioning stations in turn.

[0020] The secondary dislocation assembly 46 includes a dislocation frame 461, a dislocation cylinder 462, a dislocation wedge 463 and a dislocation lifting block 464. Two dislocation cylinders 462 are installed on the side end of the dislocation frame 461. The dislocation cylinder 462 drives the dislocation wedge 463 to slide. Two wedge-shaped surfaces are provided on the dislocation wedge 463. A dislocation lifting block 464 is provided above the wedge surface. The dislocation lifting block 462 is vertically inserted into the dislocation frame 461. The dislocation lifting block 462 is divided into group A and group B, which are driven by the corresponding dislocation cylinder 462 respectively. The piston rod of the dislocation cylinder 462 is extended, and with the cooperation of the dislocation wedge 463 and the dislocation lifting block 464, the dislocation lifting block 464 is lifted.

[0021] The brake pad assembly 47 includes a base 471, a brake pad 472 and a spring 473. The base 471 is fixed to the outer end of the feed track plate 41, and the brake pad 472 is slidably inserted on the feed track plate 41. The setting direction of the brake pad 472 is perpendicular to the feeding direction on the feed track plate 41. The brake pad 472 and the base 471 are elastically connected by the spring 473. Guide slopes are provided on both sides of the protruding end of the brake pad 472.

[0022] The PP mat blocking assembly 3 includes a blocking cylinder 31 mounted on the PP mat feeding bracket 1 through a bracket and a blocking plate 32 driven by the side blocking cylinder 31 and inserted into the bottom of the PP mat collecting box 2.

[0023] When the secondary material distribution and positioning feeding device of the present invention is working, the lower layer of PP pad in the PP pad collecting box 2 falls onto the feeding track plate 41, the PP pad blocking component 3 extends to block the upper layer of PP pad, the A group offset jacking block 464 is retracted in the offset rack 461, the B group offset jacking block 464 is extended under the drive of the corresponding offset cylinder 462, the first pushing cylinder 43 drives the pushing plate 44 to push the PP pad to the offset jacking block 464 of the B group, and the A group offset jacking block 464 extends. The offset lifting block 464 of group B is retracted into the offset frame 461, and the second pushing cylinder 45 drives the secondary material distribution and positioning device 4 to move. The offset lifting block 464 of group A pushes the PP pad to abut against the positioning baffle 42, and the brake pad assembly 47 clamps the PP pad here. The above action is repeated, and the next PP pad is pushed to abut against the offset lifting block 464 of group B, and the optical fiber 48 is shot to position the two PP pads twice. After the positioning of the PP pads at the two workstations is completed, they are uniformly sucked and transported to the riveting mechanism by the robot.

[0024] The utility model relates to a secondary material dividing, positioning and feeding device. A PP pad collecting box automatically drops and feeds the material, and positions the PP pad twice, so as to position two products for subsequent assembly.

[0025] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A secondary material distribution positioning and feeding device, characterized by: The invention comprises a PP pad feeding bracket (1), a PP pad collecting box (2) mounted on the upper end of the PP pad feeding bracket (1), a PP pad blocking assembly (3) mounted on both sides of the PP pad feeding bracket (1) for blocking the PP pad at the bottom of the PP pad collecting box (2), and a secondary material distribution positioning mechanism (4) located below the PP pad collecting box (2), wherein the secondary material distribution positioning mechanism (4) comprises a feeding track plate (41), a positioning baffle (42), a first pushing cylinder (43), a pushing plate (44), a second pushing cylinder (45), a secondary misalignment assembly (46), a brake pad assembly (47) and a beaming optical fiber (48), wherein the feeding track plate (41) is provided with a product profiling sliding groove, a positioning baffle (42) is mounted at the end of the feeding track plate (41), the first pushing cylinder ( 43) is installed on the PP pad loading bracket (1) below the feeding track plate (41) through a bracket, and the first pushing cylinder (43) drives the pushing plate (44) to move horizontally toward the positioning baffle (42), and the pushing plate (44) extends upward and is provided with a protrusion that can push the PP pad in the feeding track plate (41), and the second pushing cylinder (45) is set below the other end of the feeding track plate (41) through the bracket, and the second pushing cylinder (45) drives the secondary misalignment component (46) to move horizontally, and two positioning stations are provided on the feeding track plate (41), and the feeding track plate (41) at the side end of the positioning station is installed with a brake pad assembly (47) and a corresponding optical fiber (48), and the first pushing cylinder (43) and the second pushing cylinder (45) push the PP pad to the two positioning stations in turn.

2. A secondary material distribution positioning and feeding device according to claim 1, characterized in that: The secondary dislocation assembly (46) includes a dislocation frame (461), a dislocation cylinder (462), a dislocation wedge (463) and a dislocation lifting block (464). Two dislocation cylinders (462) are installed on the side end of the dislocation frame (461). The dislocation cylinders (462) drive the dislocation wedge (463) to slide. Two wedge-shaped surfaces are provided on the dislocation wedge (463). A dislocation lifting block (464) is provided above the wedge surface. The dislocation lifting block (462) is vertically inserted into the dislocation frame (461). The dislocation lifting block (462) is divided into group A and group B, which are driven by the corresponding dislocation cylinders (462) respectively. The piston rod of the dislocation cylinder (462) extends, and the dislocation lifting block (464) rises under the cooperation of the dislocation wedge (463) and the dislocation lifting block (464).

3. The secondary material distribution, positioning and loading device according to claim 1, characterized in that: The brake pad assembly (47) includes a base (471), a brake pad (472) and a spring (473). The base (471) is fixed to the outer end of the feed track plate (41). The brake pad (472) is slidably inserted into the feed track plate (41). The setting direction of the brake pad (472) is perpendicular to the feeding direction on the feed track plate (41). The brake pad (472) and the base (471) are elastically connected by the spring (473). Guide slopes are provided on both sides of the protruding end of the brake pad (472).

4. The secondary material distribution, positioning and feeding device according to claim 1, characterized in that: The PP pad blocking assembly (3) comprises a blocking cylinder (31) mounted on a PP pad feeding bracket (1) via a bracket, and a blocking plate (32) driven by the side blocking cylinder (31) and inserted into the bottom of the PP pad collecting box (2).