Part storage device

The soft mesh grid system with individual compartments addresses the issue of part damage from friction in storage racks by providing a protective and secure storage solution for components.

CN223099196UActive Publication Date: 2025-07-15CHONGQING QICAI ELECTRIC VEHICLE CO LTD
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Patent Information

Application Number
CN202422137178.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-07-15
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

In existing parts storage devices, parts are prone to friction between the frame inside the frame, resulting in damage to the paint surface and affecting the quality of the parts.

Method used

The soft grid frame design is adopted, including the horizontal and vertical mesh interlaced to form a containment cavity to avoid friction between parts and with the frame body, and prevent slipping through the baffle limit.

Benefits of technology

Protect the surface of parts, avoid frictional damage, ensure the quality of parts, and facilitate classified storage and access.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of mechanical part storage devices, and discloses a part storage device which comprises a frame body, a grid frame is arranged in the frame body and is a soft grid frame, the grid frame comprises a plurality of pieces of transverse mesh cloth and a plurality of pieces of longitudinal mesh cloth, the transverse mesh cloth is distributed in the frame body in the height direction at intervals, and the longitudinal mesh cloth is arranged in the frame body. The multiple pieces of longitudinal screen cloth are sequentially arranged in the frame body in the length direction of the frame body, the multiple pieces of transverse screen cloth and the multiple pieces of longitudinal screen cloth are staggered in a cross mode to form a plurality of containing cavities, and the containing cavities are used for storing parts. The part storage device has the advantages of being simple in structure and high in part storage safety.
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Description

Technical Field

[0001] The utility model relates to the technical field of mechanical part storage devices, and particularly relates to a part storage device. Background Art

[0002] During the production process of electric vehicles and other equipment, it is usually assembled from a large number of parts. After these parts are produced, the processed parts usually need to be uniformly transported to other processing procedures for assembly or uniformly stored. In order to ensure the orderly placement of parts, facilitate part conveying operations, and facilitate the placement and taking of parts, parts are usually stored by a rack.

[0003] For example, the patent document with publication number CN109515915A discloses a circular part storage rack for automobile part production, which includes a rack in the shape of a cuboid frame. A number of horizontally arranged cylindrical part racks are fixed inside the rack, a number of spherical part racks are arranged inside the rack, and a number of horizontally arranged fixing plates are fixed inside the rack. The bottom of the spherical part rack is rotationally matched with the top of the fixing plate; a number of rectangularly distributed spherical part grooves are arranged on the spherical part rack. Through the rotatable spherical part rack, when taking and placing parts, by adjusting the position of the spherical part rack, the parts can be quickly taken and placed, which is convenient to use; through the slidable cylindrical placement rack, when storing cylindrical parts, after the parts are placed on the conveyor belt, the cylindrical parts can be taken and placed by pulling, which saves physical strength and is convenient to operate.

[0004] Although the above technical solution can realize the convenient operation of taking and placing parts, during the production process, for some parts with appearance or painted surfaces, in order to ensure the quality of the parts, the integrity of the part surface needs to be ensured. When the existing part storage rack stores parts, the parts are prone to rubbing against the rack inside the rack, or when the storage rack is moved, under the action of inertia, the parts are prone to shaking inside the rack, causing the parts to rub against the rack, resulting in easy damage to the painted surface of the parts or even scratches on the parts, affecting the quality of the parts. Content of the Utility Model

[0005] The utility model aims to provide a part storage device to solve the technical problem that in the prior art, parts are prone to rubbing against the rack inside the rack, resulting in easy damage to the painted surface of the parts or even scratches on the parts, affecting the quality of the parts.

[0006] To achieve the above object, the utility model adopts the following technical solution: A part storage device includes a frame body, and a grid frame is arranged inside the frame body. The grid frame is a soft grid frame, and the grid frame includes a plurality of transverse mesh cloths and a plurality of longitudinal mesh cloths. The plurality of transverse mesh cloths are spaced along the height direction inside the frame body, and the plurality of longitudinal mesh cloths are arranged in sequence along the length direction of the frame body inside the frame body. The plurality of transverse mesh cloths and the plurality of longitudinal mesh cloths are cross-crossed with each other to form a plurality of accommodating cavities, and the accommodating cavities are used for storing parts.

[0007] The principle and advantages of this solution are as follows: When placing parts, the parts to be stored are placed into the accommodating cavity through the openings at both ends of the accommodating cavity, and each part is independently stored in an accommodating cavity. When all the accommodating cavities in the grid frame are filled with parts, the entire frame body can be transported through a transfer device. When taking parts, the parts are taken out through the opening of the accommodating cavity.

[0008] In this solution, by setting a soft grid frame inside the frame body, when storing parts, the soft grid frame can protect the surface of the parts, avoiding friction between the grid frame and the parts, which may cause damage to the parts. And by setting a plurality of accommodating cavities in the grid frame, when storing parts, the parts can be placed independently of each other, avoiding mutual friction between the parts during storage, which may cause damage to the parts and affect the quality of the parts.

[0009] Preferably, as an improvement, fixing rods are provided at the corresponding positions of the frame body, the transverse mesh cloth, and the longitudinal mesh cloth. The fixing rods are located on the circumferential direction of the frame body. Both ends of the transverse mesh cloth are connected to the fixing rods on the left and right sides of the frame body, and both ends of the longitudinal mesh cloth are connected to the fixing rods on the upper and lower sides of the frame body. This enables the transverse mesh cloth and the longitudinal mesh cloth to remain in a taut state under the action of the fixing rods, improving the stability of the connection between the transverse mesh cloth, the longitudinal mesh cloth, and the frame body, and avoiding deformation of the accommodating cavity due to the pressing action of the parts during use, reducing the supporting effect of the grid frame on the parts.

[0010] Preferably, as an improvement, openings are reserved on both the front side and the rear side of the frame body where the grid frame is located. The openings are communicated with the accommodating cavities inside the grid frame, and the openings are used for placing and taking out the parts in the accommodating cavities. By opening openings on both sides of the grid frame, while improving the convenience of placing and taking out parts, when taking and placing parts, the storage conditions of the parts in each accommodating cavity can be conveniently viewed through the openings, facilitating the operation of storing and taking out parts. And by setting an open opening on one side of the grid frame, when placing parts, the types of parts stored in each accommodating cavity can be compared and viewed through the opening, avoiding incorrect placement of parts during the part placement process, and facilitating the classified storage of multiple parts.

[0011] Preferably, as an improvement, baffles are provided in the openings at both ends of each accommodation cavity. The baffles are located at the openings close to the bottom of the accommodation cavity. One end of the baffle is connected to the bottom of the accommodation cavity, and the other end extends upward in the height direction. When the parts are placed in the accommodation cavity, they can be limited under the action of the baffles, preventing the parts from slipping out of the accommodation cavity during transportation and other processes, resulting in damage to the parts and ensuring the safety of the parts.

[0012] Preferably, as an improvement, the height of the baffle is not higher than one-fourth of the height of the opening. While ensuring that the parts will not slip out of the accommodation cavity, it ensures that the accommodation cavity has a sufficiently large opening, improving the convenience of placing and taking parts, and facilitating the observation of the placement of parts in the accommodation cavity.

[0013] Preferably, as an improvement, the baffle is made of a soft material, and both sides of the baffle are respectively connected to the longitudinal mesh cloth on both sides of the accommodation cavity. This enables the baffle to have sufficient softness to avoid damage to the parts caused by friction between the parts and the baffle. And connecting both sides of the baffle to the side wall of the accommodation cavity gives the baffle sufficient strength to prevent the baffle from deforming under the extrusion of the parts, affecting the fixing effect of the baffle on the parts. Description of the Drawings

[0014] Figure 1 It is a schematic structural diagram of the part storage device in the embodiment of the present invention. Detailed Embodiments

[0015] The following is further detailed through specific embodiments:

[0016] The reference numerals in the drawings of the specification include: frame body 1, grid frame 2, transverse mesh cloth 201, longitudinal mesh cloth 202, accommodation cavity 3, fixing rod 4, baffle 5.

[0017] As shown in the atta Figure 1 ched drawings, a part storage device includes a frame body 1, and a plurality of accommodation cavities 3 are provided on the frame body 1. The accommodation cavities 3 are used for storing parts.

[0018] The frame body 1 is a rectangular frame body 1. In this embodiment, the frame body 1 is formed by welding multiple metal pipes into a rectangular frame. A grid frame 2 is provided inside the frame body 1. The grid frame 2 is embedded in the frame body 1, and the grid frame 2 and the frame body 1 are fixedly connected by buckles or straps. The grid frame 2 is a soft grid frame 2. Inside the grid frame 2, a plurality of accommodating cavities 3 are sequentially arranged along the transverse direction and the height direction H. Specifically, the grid frame 2 includes multiple transverse mesh fabrics 201 and multiple longitudinal mesh fabrics 202. The multiple transverse mesh fabrics 201 are spaced along the height direction H inside the frame body 1, and the multiple longitudinal mesh fabrics 202 are sequentially arranged along the length direction L of the frame body 1 inside the frame body 1. The intersecting positions of the transverse mesh fabrics 201 and the longitudinal mesh fabrics 202 are fixedly connected by sewing. The multiple transverse mesh fabrics 201 and the multiple longitudinal mesh fabrics 202 cross each other in a cross shape to form a plurality of rectangular meshes. By the mutual intersection of the multiple transverse mesh fabrics 201 and the longitudinal mesh fabrics 202 to form the accommodating cavities 3, the inner walls of the accommodating cavities 3 have sufficient softness, avoiding friction scratches on the surface of the parts, improving the safety when storing the parts, while reducing the hard support structures in the side walls of the accommodating cavities 3, ensuring that the side walls of the accommodating cavities 3 can have sufficient elasticity, enabling the accommodating cavities 3 to deform according to the shape of the parts, improving the wrapping property of the parts, and avoiding bump damage to the parts when placing them.

[0019] Fixing rods 4 are provided at the corresponding positions of the frame body 1, the transverse mesh fabrics 201, and the longitudinal mesh fabrics 202. The fixing rods 4 are located on the circumference of the frame body 1, and the extending direction of the central axis of the fixing rods 4 is consistent with the width direction W of the frame body 1. Both ends of the fixing rods 4 are fixedly connected to the frame body 1 by bolts or welding. Both ends of the transverse mesh fabric 201 are sleeved on the fixing rods 4 on the left and right sides of the frame body 1, and both ends of the longitudinal mesh fabric 202 are sleeved on the fixing rods 4 on the upper and lower sides of the frame body 1. This enables the transverse mesh fabric 201 and the longitudinal mesh fabric 202 to maintain a taut state under the action of the fixing rods 4, improving the stability of the connection between the transverse mesh fabric 201, the longitudinal mesh fabric 202, and the frame body 1, and avoiding deformation of the accommodating cavities 3 due to the pressing action of the parts during use, reducing the supporting effect of the grid frame 2 on the parts.

[0020] Openings are reserved on both the front side and the rear side of the grid frame 2 located in the frame body 1. The openings communicate with the accommodating cavities 3 inside the grid frame 2. The openings are used for placing and taking parts in the accommodating cavities 3. By opening openings on both sides of the grid frame 2, while improving the convenience of placing and taking parts, when taking and placing parts, the storage conditions of the parts in each accommodating cavity 3 can be conveniently viewed through the openings, facilitating the operation of storing and taking parts. And by setting an open opening on one side of the grid frame 2, when placing parts, the types of parts stored in each accommodating cavity 3 can be compared and viewed through the opening, avoiding incorrect part placement during the part placement process, and facilitating the classified storage of multiple parts.

[0021] Baffles 5 are provided at the openings at both ends of each accommodating cavity 3. The baffle 5 is located near the bottom of the opening close to the accommodating cavity 3. One end of the baffle 5 is fixedly connected to the bottom of the accommodating cavity 3 by a sewing thread, and the other end extends upward along the height direction H. The two sides of the baffle 5 are respectively fixedly connected to the longitudinal mesh fabrics 202 on both sides of the accommodating cavity 3 by sewing threads. The height of the baffle 5 is less than the height of the opening, and the height of the baffle 5 is not higher than one-fourth of the height of the opening. Preferably, in this embodiment, the height of the baffle 5 is one-tenth of the height of the opening. The baffle 5 is made of a soft material. Preferably, in this embodiment, the baffle 5 is a fabric, and in other embodiments, other materials can also be selected to make the baffle 5. When the parts are placed in the financing cavity, they can be limited under the action of the baffle 5, avoiding the parts from slipping out of the accommodating cavity 3 during transportation and other processes, resulting in damage to the parts and ensuring the safety of the parts.

[0022] The specific implementation process is as follows:

[0023] When placing the parts, the parts to be stored are placed in the accommodating cavity 3 through the openings at both ends of the accommodating cavity 3, and each part is independently stored in one accommodating cavity 3. When all the accommodating cavities 3 in the grid frame 2 are filled with parts, the frame body 1 can be integrally transported by a transfer device. When taking out the parts, the parts are taken out through the opening of the accommodating cavity 3.

[0024] Compared with the prior art, in this solution, by providing a soft mesh frame in the frame body 1, when the parts are stored, the soft grid frame 2 can protect the surface of the parts, avoiding friction between the grid frame 2 and the parts and causing damage to the parts. And by providing a plurality of accommodating cavities 3 in the grid frame 2, when the parts are stored, the parts can be independently placed, avoiding mutual friction between the parts during storage and causing damage to the parts and affecting the quality of the parts.

[0025] The above are only embodiments of the present invention. Specific technical solutions and / or common knowledge such as characteristics that are well known in the art are not described in detail here. It should be pointed out that for those skilled in the art, without departing from the technical solution of the present invention, several deformations and improvements can still be made, which should also be regarded as the protection scope of the present invention, and these will not affect the implementation effect of the present invention and the practicality of the patent. The protection scope required by this application should be based on the content of its claims, and the specific implementation manners described in the specification can be used to interpret the content of the claims.

Claims

1. A part storage device, characterized in that: It includes a frame body, inside which there is a grid frame. The grid frame is a soft grid frame. The grid frame includes multiple transverse mesh fabrics and multiple longitudinal mesh fabrics. The multiple transverse mesh fabrics are spaced along the height direction inside the frame body, and the multiple longitudinal mesh fabrics are arranged in sequence along the length direction of the frame body inside the frame body. The multiple transverse mesh fabrics and the multiple longitudinal mesh fabrics cross each other at right angles to form multiple accommodation cavities, and the accommodation cavities are used for storing parts.

2. The parts storage device according to claim 1, characterized in that: Fixing rods are provided at the corresponding positions of the frame body, the transverse mesh fabrics, and the longitudinal mesh fabrics. The fixing rods are located on the circumference of the frame body. Both ends of the transverse mesh fabrics are connected to the fixing rods on the left and right sides of the frame body, and both ends of the longitudinal mesh fabrics are connected to the fixing rods on the upper and lower sides of the frame body.

3. A part storage device according to claim 1, characterized in that: Openings are reserved on both the front side and the rear side of the frame body where the grid frame is located. The openings are communicated with the accommodation cavities inside the grid frame, and the openings are used for placing and taking out the parts in the accommodation cavities.

4. The parts storage device according to claim 3, wherein: Baffles are provided in the openings at both ends of each accommodation cavity. The baffles are located at the bottom of the opening close to the accommodation cavity. One end of the baffle is connected to the bottom of the accommodation cavity, and the other end extends upward along the height direction.

5. A parts storage device according to claim 4, characterized in that: The height of the baffle is not higher than one-fourth of the height of the opening.

6. The parts storage device according to claim 5, characterized in that: The baffle is made of a soft material, and both sides of the baffle are connected to the longitudinal mesh fabrics on both sides of the accommodation cavity.

Citation Information

Patent Citations

  • Round part storage frame for production of vehicle parts

    CN109515915A