A bearing production and processing storage device

By designing a storage device that includes positioning posts, insertion posts, and fixing rods, the problems of cumbersome operation and insufficient protection of bearing storage devices are solved, enabling quick placement, retrieval, and flexible movement of bearings.

CN224324369UActive Publication Date: 2026-06-05LISHUI CHENGTENG BEARING CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
LISHUI CHENGTENG BEARING CO LTD
Filing Date
2025-08-14
Publication Date
2026-06-05

AI Technical Summary

Technical Problem

Existing bearing storage devices are cumbersome to operate, making it difficult to place and retrieve bearings quickly. They lack flexibility and protection, and multiple bearings can significantly affect each other.

Method used

A storage device comprising a first storage rack, an outer box, positioning posts, casters, handles, and fixing rods is designed. By combining the positioning posts and plug-in posts, bearings can be quickly placed and retrieved. The flexibility and protection of the storage rack are improved through the division and classification management of the inner compartment.

Benefits of technology

It enables quick placement and retrieval of bearings, reduces mutual interference, improves the flexibility and protection of the storage rack, and facilitates classified management and rapid relocation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a kind of storage device for bearing production and processing, including first storage rack and outer box, the first storage rack top is provided with top groove, first storage rack inside is provided with inner groove, first storage rack bottom is provided with moving wheel, top groove inside is provided with locating post, bearing sleeve is connected on the surface of locating post, multiple locating posts are arranged in top groove inside and inner groove inside, first storage rack side edge is fixedly connected with handle, inner compartment is opened in outer box side edge, and inner compartment has multiple, second storage rack is arranged in inner compartment, third storage rack is arranged in inner compartment, fourth storage rack is arranged in inner compartment, the structure and size of first storage rack, second storage rack, third storage rack and fourth storage rack are same, it is convenient to place and quickly take bearing quickly, multiple bearings are regularly arranged to reduce mutual influence, bearing is effectively protected in storage rack and box body inside, and storage rack is high in flexibility, and bearing is easily moved and transferred quickly.
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Description

Technical Field

[0001] This utility model relates to the field of bearing production and processing technology, and in particular to a storage device for bearing production and processing. Background Technology

[0002] Bearings are essential components in mechanical equipment, primarily functioning to support rotating parts, reduce friction during movement, and ensure rotational accuracy. Utility model patent application number CN202420449499.3 discloses a bearing storage rack, comprising several positioning tubes fixedly connected to the rack body. Each positioning tube has an internal thread at its end away from the rack body. The positioning tubes are arranged in multiple vertical rows. Several baffles are fitted onto the ends of the positioning tubes away from the rack body. Several threaded posts are fixedly connected inside the baffles, their threads connecting to the internal threads of the positioning tubes. Several stop bars are evenly distributed on the outer walls of the baffles. Several support components are mounted on the shelf body to support vertically arranged positioning tubes. Each support component includes a support plate mounted on the shelf body, several screws movably mounted on the support plate, and a retaining cover with a limiting groove corresponding to the position of each screw, into which the screw extends. The support plate has threaded holes through which the screws pass and are threadedly connected. A positioning sleeve is fixedly connected to the shelf body at a position corresponding to the support plate, with the lower end of the support plate extending into the positioning sleeve. A rubber pad is fitted onto the outer circumferential wall of each positioning tube. However, the operation is cumbersome, making quick and easy placement and retrieval difficult, and it lacks flexibility and protection. Utility Model Content

[0003] This utility model aims to solve the problems existing in the prior art by providing a storage device for bearing production and processing. It can facilitate the quick placement and retrieval of bearings, and the regular arrangement of multiple bearings reduces mutual interference. The bearings are effectively protected inside the storage rack and the housing. The storage rack is highly flexible and facilitates the rapid movement and transfer of bearings.

[0004] The technical solution adopted by this utility model to solve its technical problem is as follows: This storage device for bearing production and processing includes a first storage rack and an outer box. The first storage rack has a top groove at its top and an inner groove inside. Multiple casters are provided at the bottom of the first storage rack, and multiple casters and inner grooves are present. Positioning posts are provided inside the top groove, and bearings are fitted onto the surface of the positioning posts. Multiple positioning posts are also provided inside the top groove and the inner groove. A handle is fixedly connected to the side of the first storage rack. An inner compartment is opened on the side of the outer box. The first storage rack moves into the inner compartment. There are multiple inner compartments. A second storage rack, a third storage rack, and a fourth storage rack are all located inside the inner compartment. The first, second, third, and fourth storage racks have the same structure and dimensions. Multiple bearings are respectively fitted into the positioning posts in the top groove of the first storage rack. After the top groove is full... The bearings are then placed into the multiple inner slots of the first storage rack. Following this procedure, other bearings are placed into the second, third, and fourth storage racks. Each of the first, second, third, and fourth storage racks is equipped with casters. Once all racks are full, the operator uses the handles to push them into the multiple inner compartments of the outer casing. This provides further safety protection for all stored bearings. When a bearing needs to be retrieved, the corresponding rack is pulled out of its inner compartment for easy access. This facilitates quick placement and retrieval of bearings. The regular arrangement of multiple bearings reduces mutual interference, and the bearings are effectively protected within the storage racks and casing. The high flexibility of the storage racks allows for rapid movement and transfer of bearings.

[0005] To further improve the system, the multiple inner compartments have the same structure and size, and are distributed on the left and right sides of the outer box. The multiple inner compartments separate and classify the multiple storage shelves, reducing mutual interference and facilitating classification management.

[0006] Further improvements include the addition of multiple handles with rounded corners on the sides. These multiple handles provide various operating options to meet the actual operating needs of different workers. The rounded corners enhance protection and increase comfort during operation.

[0007] Further improvements include a first chamfer on the side of the first storage rack, and the first chamfers on the sides of the second, third, and fourth storage racks as well. The first chamfers reduce obstruction on the sides of the storage racks, making it easier for the storage racks to quickly enter the inner compartment.

[0008] Further improvements include the addition of multiple positioning holes inside the top groove, with a fixed insertion post at the bottom of the positioning post. The insertion post and the positioning hole are interlocked. Multiple positioning holes are also provided inside the inner groove. The positioning post is installed using the positioning holes and the insertion post. The positioning post is easy to install, remove, and replace, meeting the needs of fitting bearings of different sizes.

[0009] To further improve the design, the bottom of the insertion post is provided with a second chamfer, the top of the positioning post is provided with a third chamfer, and the surface of the positioning post is provided with anti-slip texture. The second chamfer facilitates the insertion post to quickly enter the positioning hole, saving time and improving operating efficiency. The anti-slip texture increases the friction of the positioning post during operation, reducing the occurrence of hand slippage during operation.

[0010] Further improvements include a top hole on the top of the outer casing that connects to the interior of the inner compartment; a first connecting hole on the top of the first storage rack; a second connecting hole inside the first storage rack; a connecting groove inside the first storage rack; and a fixing rod on the top of the outer casing that passes through the top hole, the first connecting hole, and the second connecting hole in sequence. The bottom of the fixing rod is inserted into the connecting groove. The fixing rod acts on both the outer casing and the first storage rack, effectively fixing the first storage rack in the inner compartment and locking it to improve stability.

[0011] Further improvements include the provision that the second, third, and fourth storage racks are all equipped with a first connecting hole, a second connecting hole, and a connecting groove. The bottom of the fixing rod is provided with a fifth chamfer, and the top of the fixing rod is fixedly connected with a protrusion. The side of the protrusion is provided with a sixth chamfer. The second, third, and fourth storage racks are effectively fixed in the inner compartment with the help of the fixing rod. The fifth chamfer, the protrusion, and the sixth chamfer increase the convenience of the fixing rod during operation.

[0012] The beneficial effects of this utility model are:

[0013] Multiple bearings are inserted into the positioning posts in the top slot of the first storage rack. Once the top slot is full, the bearings are then inserted into the inner slots of the first storage rack. This process is repeated for the second, third, and fourth storage racks. Each of the first, second, third, and fourth storage racks has casters at the bottom. After all racks are filled, operators use the handles to push them into the inner compartments of the outer casing. This provides further safety protection for all stored bearings. To retrieve a bearing, the corresponding rack is pulled out of its inner compartment, allowing for quick placement and removal. The regular arrangement of the bearings minimizes mutual interference, and the bearings are effectively protected within the storage racks and casing. The high flexibility of the storage racks facilitates rapid movement and transfer of the bearings.

[0014] The positioning pins are installed using positioning holes and plug-in pins. The positioning pins are easy to install, remove and replace, and can meet the needs of fitting bearings of different sizes. The second chamfer makes it easy for the plug-in pins to quickly enter the positioning hole, saving time and improving operating efficiency. The anti-slip texture increases the friction of the positioning pins during operation, reducing the occurrence of slippage.

[0015] The fixing rods act simultaneously on the outer box and the first storage rack, effectively securing the first storage rack within the inner compartment. The locking of the first storage rack enhances stability. The second, third, and fourth storage racks are also effectively secured within the inner compartment with the aid of the fixing rods. The fifth chamfer, protrusion, and sixth chamfer increase the ease of operation of the fixing rods. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2 For the present utility model Figure 1 Enlarged view of point A in the middle;

[0018] Figure 3 This is a diagram illustrating the fixing rod of this utility model;

[0019] Figure 4 This is a left-side view of the structure of this utility model;

[0020] Figure 5 This is a schematic diagram of the first storage rack structure of this utility model;

[0021] Figure 6 For the present utility model Figure 5 Enlarged view at point B in the middle;

[0022] Figure 7 This is a diagram illustrating the positioning column structure of this utility model.

[0023] Explanation of reference numerals in the attached drawings: 1. First storage rack; 2. Outer box; 3. Top groove; 4. Inner groove; 5. Caster wheel; 6. Positioning post; 7. Handle; 8. Inner compartment; 9. Second storage rack; 10. Third storage rack; 11. Fourth storage rack; 12. Rounded corner; 13. First chamfer; 14. Positioning hole; 15. Insertion post; 16. Second chamfer; 17. Third chamfer; 18. Anti-slip texture; 19. Top hole; 20. First connecting hole; 21. Second connecting hole; 22. Connecting groove; 23. Fixing rod; 24. Fifth chamfer; 25. Protrusion; 26. Sixth chamfer. Detailed Implementation

[0024] The following is in conjunction with the appendix Figure 1-7 Further explanation of this embodiment:

[0025] like Figure 1 , Figure 2 , Figure 4 , Figure 5 and Figure 6 As shown: This embodiment discloses a storage device for bearing production and processing, including a first storage rack 1 and an outer casing 2. The first storage rack 1 has a top groove 3, an inner groove 4, and multiple casters 5 at its bottom. Positioning pins 6 are installed inside the top groove 3, and bearings are fitted onto the surface of the positioning pins 6. Multiple positioning pins 6 are installed inside the top groove 3 and the inner groove 4. A handle 7 is fixedly connected to the side of the first storage rack 1. An inner compartment 8 is opened on the side of the outer casing 2. The first storage rack 1 moves into the inner compartment 8. The inner compartment 8 has multiple... There are multiple inner compartments 8, each with a second storage rack 9, a third storage rack 10, and a fourth storage rack 11. The first storage rack 1, the second storage rack 9, the third storage rack 10, and the fourth storage rack 11 have the same structure and dimensions. The multiple inner compartments 8 are distributed on the left and right sides of the outer box 2. There are multiple handles 7, and the sides of the handles 7 are rounded with corners 12. The sides of the first storage rack 1 are chamfered with corners 13. The sides of the second storage rack 9, the third storage rack 10, and the fourth storage rack 11 are also chamfered with corners 13.

[0026] like Figure 6-7 As shown: The top groove 3 has multiple positioning holes 14 inside. The bottom of the positioning post 6 is fixedly connected to the insertion post 15, and the insertion post 15 is inserted into the positioning hole 14. The inner groove 4 also has multiple positioning holes 14 inside. The bottom of the insertion post 15 is provided with a second chamfer 16, the top of the positioning post 6 is provided with a third chamfer 17, and the surface of the positioning post 6 is provided with anti-slip texture 18.

[0027] like Figure 1-5 As shown: The top of the outer box 2 is provided with a top hole 19, which connects to the interior of the inner compartment 8. The top of the first storage rack 1 is provided with a first connecting hole 20, the interior of the first storage rack 1 is provided with a second connecting hole 21, and the interior of the first storage rack 1 is provided with a connecting groove 22. The top of the outer box 2 is provided with a fixing rod 23, which passes through the top hole 19, the first connecting hole 20, and the second connecting hole 21 in sequence. The bottom of the fixing rod 23 is inserted into the connecting groove 22. The second storage rack 9, the third storage rack 10, and the fourth storage rack 11 are all provided with a first connecting hole 20, a second connecting hole 21, and a connecting groove 22. The bottom of the fixing rod 23 is provided with a fifth chamfer 24, and the top of the fixing rod 23 is fixedly connected with a protrusion 25. The side of the protrusion 25 is provided with a sixth chamfer 26.

[0028] In use, the positioning post 6 is inserted into the positioning hole 14 of the top groove 3 to install one positioning post 6. Following this procedure, multiple positioning posts 6 are installed in the top groove 3 and multiple inner grooves 4 respectively. After all the positioning posts 6 of the first storage rack 1 are installed, the positioning posts 6 of the second storage rack 9, third storage rack 10, and fourth storage rack 11 are then installed. The second chamfer 16 facilitates the quick insertion of the insertion post 15 into the positioning hole 14, saving time and improving operational efficiency. The anti-slip texture 18 enhances positioning... The friction of column 6 during operation reduces the occurrence of hand slippage. Multiple bearings are respectively inserted into the positioning columns 6 in the top groove 3 of the first storage rack 1. After the top groove 3 is full, the bearings are further inserted into the multiple inner grooves 4 of the first storage rack 1. Following this operation, other bearings are inserted into the second storage rack 9, the third storage rack 10, and the fourth storage rack 11. The bottom of the first storage rack 1, the second storage rack 9, the third storage rack 10, and the fourth storage rack 11 are all equipped with casters 5. After the third and fourth storage racks 10 and 11 are filled, the operator holds the handle 7 and pushes the first storage rack 1, the second storage rack 9, the third storage rack 10 and the fourth storage rack 11 into the multiple inner compartments 8 of the outer box 2. All the stored bearings are further protected. The multiple inner compartments 8 separate and classify the multiple storage racks, reducing mutual interference and facilitating classified management. Multiple fixing rods 23 pass through the top hole 19, the first connecting hole 20 and the second connecting hole 21 respectively. The bottom of the multiple fixing rods 23 are inserted into the connecting groove 22. The first storage rack 1, the second storage rack 9, the third storage rack 10 and the fourth storage rack 11 are effectively fixed in the inner compartments 8 with the help of the fixing rods 23, improving stability. When it is necessary to remove the corresponding bearing, pull out the corresponding fixing rod 23, and pull the corresponding storage rack out of the inner compartment 8 to directly pick up the bearing. This facilitates quick placement and retrieval of the bearings. The regular arrangement of multiple bearings reduces mutual interference. The bearings are effectively protected inside the storage racks and the box. The high flexibility of the storage racks makes it easy to move and transfer the bearings quickly.

[0029] Although the present invention has been illustrated and described with reference to preferred embodiments, those skilled in the art should understand that various changes in form and detail are possible within the scope of the claims.

Claims

1. A storage device for bearing production and processing, comprising a first storage rack (1) and an outer casing (2), characterized in that: The first storage rack (1) has a top groove (3) at the top, an inner groove (4) inside the first storage rack (1), and a moving wheel (5) at the bottom of the first storage rack (1). There are multiple moving wheels (5) and inner grooves (4). A positioning post (6) is set inside the top groove (3). A bearing is sleeved on the surface of the positioning post (6). Multiple positioning posts (6) are set inside the top groove (3) and the inner groove (4). A handle (7) is fixedly connected to the side of the first storage rack (1). An inner compartment (8) is opened on the side of the outer box (2). The first storage rack (1) moves into the inner compartment (8). There are multiple inner compartments (8). A second storage rack (9) is set inside the inner compartment (8). A third storage rack (10) is set inside the inner compartment (8). A fourth storage rack (11) is set inside the inner compartment (8). The first storage rack (1), the second storage rack (9), the third storage rack (10), and the fourth storage rack (11) have the same structure and size.

2. The storage device for bearing production and processing according to claim 1, characterized in that: The multiple inner compartments (8) have the same structure and size, and the multiple inner compartments (8) are distributed on the left and right sides of the outer box (2).

3. The storage device for bearing production and processing according to claim 1, characterized in that: There are multiple handles (7), and the sides of the handles (7) are provided with rounded corners (12).

4. The storage device for bearing production and processing according to claim 1, characterized in that: The first storage rack (1) has a first chamfer (13) on its side, and the second storage rack (9), the third storage rack (10) and the fourth storage rack (11) also have a first chamfer (13) on their sides.

5. A storage device for bearing production and processing according to claim 1, characterized in that: The top groove (3) has a positioning hole (14) inside. There are multiple positioning holes (14). The bottom of the positioning post (6) is fixedly connected to the insertion post (15). The insertion post (15) and the positioning hole (14) are inserted into each other. Multiple positioning holes (14) are also provided inside the inner groove (4).

6. A storage device for bearing production and processing according to claim 5, characterized in that: The bottom of the plug post (15) is provided with a second chamfer (16), the top of the positioning post (6) is provided with a third chamfer (17), and the surface of the positioning post (6) is provided with anti-slip texture (18).

7. A storage device for bearing production and processing according to claim 1, characterized in that: The outer box (2) has a top hole (19) at the top, which connects to the interior of the inner compartment (8). The first storage rack (1) has a first connecting hole (20) at the top, a second connecting hole (21) inside the first storage rack (1), and a connecting groove (22) inside the first storage rack (1). The outer box (2) has a fixing rod (23) at the top, which passes through the top hole (19), the first connecting hole (20), and the second connecting hole (21) in sequence. The bottom of the fixing rod (23) is inserted into the connecting groove (22).

8. A storage device for bearing production and processing according to claim 7, characterized in that: The second storage rack (9), the third storage rack (10) and the fourth storage rack (11) are all provided with a first connecting hole (20), a second connecting hole (21) and a connecting groove (22). The bottom of the fixing rod (23) is provided with a fifth chamfer (24), and the top of the fixing rod (23) is fixedly connected with a protrusion (25). The side of the protrusion (25) is provided with a sixth chamfer (26).