Receiving bar for assisting bearing receiving disc in taking materials
The bearing removal tool addresses the inefficiency of traditional methods by using a cone gear system for single-handed operation, facilitating the efficient lifting and transport of multiple bearing outer rings without manual support or bending.
Patent Information
- Application Number
- CN202420934689.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-30
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-04-30
AI Technical Summary
During the process of collecting materials, traditional feed rods require staff to bend over and carry them with both hands, which is inconvenient to operate.
A feed rod including a rod body, bevel gear and transmission assembly is designed. The transmission assembly is driven to drive the oblique block to move through the bevel gear, realize one-handed operation and limit multiple bearing outer rings to avoid collision.
It realizes no need to bend over and carry both hands, improves material collection efficiency, and protects the integrity of the outer ring of the bearing during transportation.
Smart Images

Figure CN223101669U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of auxiliary tools for bearing receiving trays, and more specifically, it relates to a receiving rod for assisting in taking materials from a bearing receiving tray. Background Technique
[0002] During the production process of bearings, after the outer rings are manufactured, they are placed vertically on the bearing outer ring limit frames on the bearing receiving trays. When one outer ring limit frame is full, the rotating platform is rotated by a motor to replace another outer ring limit frame, and then bearings are placed. After that, workers use a receiving rod to take them out and send them to other processes for the next step of bearing manufacturing.
[0003] However, the traditional receiving rod is just a simple rod body. When it is inserted into the vertically arranged bearing outer rings on the bearing receiving tray, workers need to hold the bottom of the lowermost bearing outer ring with one hand and the top of the uppermost bearing outer ring with the other hand to restrict multiple bearing outer rings on the rod body for transportation. This not only requires bending down (bending down to hold the bottom of the lowermost bearing outer ring) but also requires two hands to carry (the receiving rod needs to be carried horizontally, and the bearings on both sides need to be held during transportation), which is rather inconvenient.
[0004] Therefore, in order to solve the above technical problems, this application proposes a receiving rod for assisting in taking materials from a bearing receiving tray. Content of the Utility Model
[0005] Aiming at the deficiencies of the existing technology, the purpose of the utility model is to provide a receiving rod for assisting in taking materials from a bearing receiving tray.
[0006] To achieve the above purpose, the utility model provides the following technical solution: A receiving rod for assisting in taking materials from a bearing receiving tray, including a rod body for inserting into the inner hole of the bearing outer ring, and a bevel gear A, characterized in that:
[0007] A cylindrical cover is fixedly connected to the bottom end of the rod body. A circular hole penetrating through its upper and lower surfaces is opened inside the rod body. A bearing A is fixedly connected to the top end of the rod body, and a rotating rod A is fixedly connected to the inner ring part of the bearing A. The end of the rotating rod A passes through the bottom of the rod body from the circular hole and is fixed to the head of the bevel gear A. A vertically rotating bevel gear B is meshed with the outer side wall of the bevel gear A. The bevel gear B drives the operation of the transmission component, and drives the movement of the inclined block through the transmission component, so that the inclined block passes through the opening near the bottom of the cylindrical cover.
[0008] Preferably, the transmission assembly includes a lead screw fixed to the surface of bevel gear B. A rod sleeve is threadedly connected to the outer sidewall of the lead screw. A guide rail is fixedly connected to the inner sidewall of the cylindrical cover. The top end of the rod sleeve is slidably connected to the guide rail through a slider. The bottom end of the rod sleeve is fixedly connected to a moving plate. The surface of the moving plate is fixed to the back of the inclined block.
[0009] Preferably, a handle A for facilitating its rotation is fixedly connected to the head of the rotating rod A.
[0010] Preferably, a connecting plate is welded to the side end of the bearing A, and a handle B is fixedly connected to the head of the connecting plate. By means of the handle B, it is convenient to hold and move the material receiving rod. When rotating the rotating rod A, the rod body can be supported by the handle B to prevent the rod body from rotating. At the same time, when carrying, the staff can also hold and move the material receiving rod through the handle B.
[0011] Preferably, a limiting member for blocking the top of the outer ring of the bearing is detachably connected to the outer sidewall of the rod body.
[0012] Preferably, a long strip groove is formed on the outer sidewall of the rod body. The limiting member includes a moving block slidably connected inside the long strip groove. A circular ring is fixedly connected to the surface of the moving block. A cross plate is fixedly connected to the outer sidewall of the circular ring. The circular ring is fixed at a height matching the rod body and the outer ring of the bearing through a fixing structure. It should be noted that the cross section of the moving block and the long strip groove inside is the same, and the moving block can move linearly along the inner surface of the long strip groove well to prevent the circular ring from rotating, resulting in misalignment of the screw hole and the through hole, which is beneficial for fixing.
[0013] Preferably, the fixing structure includes a screw hole formed on the inner surface of the long strip groove. A through hole is formed inside the moving block and sequentially penetrates forward through the circular ring. A screw is installed at the head of the through hole, and the screw sequentially passes through the through hole downward and then is installed into the screw hole in a clockwise rotation to fix the height of the circular ring and the cross plate.
[0014] Preferably, a rotating rod B is fixedly connected to the back of the bevel gear A. The rotating rod B is fixed in the inner ring part of the bearing B. The top end of the bearing B is fixedly connected to the bottom of the rod body through a vertical plate. When the bevel gear B rotates, it will drive the rotation of the inner ring of the bearing B, and the inner ring of the bearing B rotates along its outer ring, thereby supporting the bevel gear B.
[0015] Compared with the prior art, the present utility model has the following beneficial effects:
[0016] 1. The utility model passes the rod through the bearings arranged vertically on the bearing receiving plate, and then rotates the rod A clockwise, the rotating rod A drives the inner ring of the bearing A to rotate, the inner ring of the bearing A rotates along the outer ring of the bearing A, the rotating rod A drives the rotation of the bevel gear A, the bevel gear A drives the rotation of the bevel gear B, the bevel gear B drives the inner ring of the bearing B to rotate, the inner ring of the bearing B rotates along its outer ring, thereby supporting the bevel gear B, and the bevel gear B drives the operation of the transmission component, and the transmission component drives the movement of the inclined block, so that the inclined block is prompted to pass through the opening near the bottom of the cylindrical cover, so that the inclined block is inserted from the bottom of the outer ring of the lowest bearing, thereby limiting one side of the outer rings of multiple bearings, so that the staff does not need to bend over and hold the bottom of the outer ring of the lowest bearing with one hand, and the lowest parts of multiple bearings have been limited, and only one hand is needed to hold the rod with the cylindrical cover facing downward, and no two hands are needed to carry it, thereby solving the problem that the background technology not only requires bending over to operate, but also requires two hands to carry it, which is inconvenient.
[0017] 2. The utility model uses a limiting component to hold the uppermost bearing outer ring against the inclined block, thereby cooperating with the inclined block to prevent the outer rings of the bearings from colliding with each other and being damaged during transportation. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of the present application. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation on the present invention. In the drawings:
[0019] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0020] Figure 2 For this utility model Figure 1 A schematic diagram of the structure from another angle;
[0021] Figure 3 For this utility model Figure 2 A local structure enlarged view;
[0022] Figure 4 It is a schematic diagram of the bottom structure of the rod body in the utility model.
[0023] In the figure: 1. rod body; 2. round hole; 3. bevel gear A; 4. rotating rod A; 5. cylindrical cover; 6. transmission assembly; 61. screw rod; 62. rod sleeve; 63. guide rail; 64. slider; 65. moving plate; 7. inclined block; 8. bevel gear B; 9. handle A; 10. connecting plate; 11. handle B; 12. bearing A; 13. limiting component; 131. moving block; 132. circular ring; 133. horizontal plate; 134. fixing structure; 1341. screw hole; 1342. through hole; 14. long groove; 15. rotating rod B; 16. bearing B; 17. vertical plate. Detailed implementation mode
[0024] As Figures 1-4 shown, the utility model provides a material receiving rod for assisting in taking materials from a bearing material receiving tray, which includes a rod body 1 for inserting into the inner hole of the bearing outer ring and a bevel gear A3. A cylindrical cover 5 is fixedly connected to the bottom end of the rod body 1. A circular hole 2 penetrating through the upper and lower surfaces is formed inside the rod body 1. A bearing A12 is fixedly connected to the top end of the rod body 1, and a rotating rod A4 is fixedly connected to the inner ring part of the bearing A12. The end of the rotating rod A4 passes through the bottom of the rod body 1 through the circular hole 2 and is fixed to the head of the bevel gear A3. A vertically rotating bevel gear B8 is engaged with the outer side wall of the bevel gear A3. The gear B drives the operation of the transmission assembly 6, and the inclined block 7 is driven to move through the transmission assembly 6, so that the inclined block 7 passes through the opening near the bottom of the cylindrical cover 5. A rotating rod B15 is fixedly connected to the back of the bevel gear A3, and the rotating rod B15 is fixed in the inner ring part of the bearing B16. The top end of the bearing B16 is fixedly connected to the bottom of the rod body 1 through a vertical plate 17.
[0025] During use, the rod body 1 (the diameter of the rod body 1 is slightly smaller than the inner diameter of the bearing outer ring) is passed through the bearings vertically arranged on the bearing material receiving tray (with the cylindrical cover facing downwards). Then, the rotating rod A4 is rotated clockwise. The rotating rod A4 drives the rotation of the inner ring of the bearing A12. The inner ring of the bearing A12 rotates along the outer ring of the bearing A12. The rotating rod A4 drives the rotation of the bevel gear A3. The bevel gear A3 drives the rotation of the bevel gear B8. The bevel gear B8 drives the rotation of the inner ring of the bearing B16. The inner ring of the bearing B16 rotates along its outer ring, thereby supporting the bevel gear B8. The bevel gear B drives the operation of the transmission assembly 6, and the inclined block 7 is driven to move through the transmission assembly 6, so that the inclined block 7 passes through the opening near the bottom of the cylindrical cover 5, so that the inclined block 7 (the inclined block 7 is in a shape with a lower front and a higher rear, which is convenient for it to be inserted into the gap between the bottom of the lowermost bearing outer ring and the bearing material receiving rod) is inserted from the bottom of the lowermost bearing outer ring, thereby limiting one side of the outer rings of multiple bearings. In this way, it is not necessary for the staff to bend down and hold the bottom of the lowermost bearing outer ring with one hand. Moreover, the lowermost part of multiple bearings has been limited. It is only necessary to hold the rod body 1 with the cylindrical cover 5 facing downwards (a slight inclination angle is also acceptable), and it is not necessary to carry it with both hands. Rotating the rotating rod A4 counterclockwise will retract the inclined block 7 into the cylindrical cover 5.
[0026] Wherein, a handle A9 for facilitating the rotation of the rotating rod A4 is fixedly connected to the head of the rotating rod A4, and the rotating rod A4 can be rotated conveniently through the handle A9.
[0027] Furthermore, a connecting plate 10 is welded to the side end of the bearing A12, and a handle B11 is fixedly connected to the head of the connecting plate 10. The handle B11 facilitates the movement of the receiving rod by hand. When the rotating rod A4 is rotated, the handle B11 can be used to support the rod body 1 to prevent the rod body 1 from rotating. At the same time, when carrying, the staff can also move the receiving rod by hand by the handle B11.
[0028] The following is the specific structure of the rotating assembly: the transmission assembly 6 includes a screw rod 61 fixed on the surface of the bevel gear B8, a rod sleeve 62 is threadedly connected on the outer wall of the screw rod 61, a guide rail 63 is fixedly connected on the inner wall of the cylindrical cover 5, the top of the rod sleeve 62 is slidably connected in the guide rail 63 through a slider 64, and the bottom end of the rod sleeve 62 is fixedly connected to a moving plate 65, the surface of the moving plate 65 is fixed to the back of the inclined block 7, that is, when the bevel gear B8 rotates clockwise or counterclockwise, it will drive the screw rod 61 to rotate clockwise or counterclockwise, the screw rod 61 drives the rod sleeve 62 to move back and forth, the rod sleeve 62 drives the slider 64 to slide back and forth, and the slider 64 slides along the guide rail 63 to maintain the back and forth linear movement of the rod sleeve 62, the rod sleeve 62 can linearly drive the moving plate 65 to move back and forth linearly, and the moving plate 65 drives the inclined block 7 to move back and forth linearly, thereby completing the operation of the inclined block 7 extending and extending from the cylindrical cover 5.
[0029] The outer wall of the rod body 1 is detachably connected with a limiting component 13 for blocking the top of the bearing outer ring. The uppermost bearing outer ring is supported by the limiting component 13, thereby cooperating with the inclined block 7 to prevent the bearing outer rings from colliding with each other and being damaged during transportation.
[0030] The outer wall of the rod body 1 is provided with a long groove 14, and the limiting component 13 includes a moving block 131 slidably connected inside the long groove 14, a circular ring 132 is fixedly connected to the surface of the moving block 131, and a transverse plate 133 is fixedly connected to the outer wall of the circular ring 132, and the circular ring 132 is fixedly connected to the height matching the rod body 1 and the outer ring of the bearing through a fixing structure 134, and the fixing structure 134 includes a screw hole 1341 provided on the inner surface of the long groove 14, a through hole 1342 is provided inside the moving block 131, and the through hole 1342 sequentially penetrates the circular ring 132 forward, and a screw is installed at the head of the through hole 1342, and the screw sequentially passes downward through the through hole 1342 and then rotates clockwise to be installed in the screw hole 1341.
[0031] When the inclined block 7 abuts against the bottom end of the lowermost bearing, it pushes the ring 132 to move downward. The ring 132 drives the moving block 131 to move downward. The moving block 131 moves linearly along the inside of the long slot 14 (it should be noted that the cross-section of the moving block 131 and the inside of the long slot 14 is the same, and the moving block 131 can move linearly along the inner surface of the long slot 14 well to prevent the ring 132 from rotating, resulting in the misalignment of the screw hole 1341 and the through hole 1342, which is beneficial for fixing). This causes the cross plate 133 to abut against the top end of the uppermost bearing, thus cooperating with the inclined block 7 to fix multiple vertical bearings together, preventing the outer rings of the bearings from colliding with each other during movement and being damaged. Then, a screw is passed through the through hole 1342 and installed into the screw hole 1341 at the corresponding height to fix the height of the ring 132 and the cross plate 133.
[0032] The above is only the preferred embodiment of the present invention, and it is not intended to limit the present invention in any form. Any ordinary technician in the industry can smoothly implement the present invention according to the illustrations in the specification and the above description. However, any equivalent changes such as minor modifications, decorations, and evolutions made by those skilled in the art within the scope of the technical solution of the present invention by using the technical content disclosed above are equivalent embodiments of the present invention. At the same time, any equivalent changes, modifications, and evolutions made to the above embodiments based on the essential technology of the present invention still fall within the protection scope of the technical solution of the present invention.
Claims
1. A material receiving rod for assisting in taking materials from a material receiving tray of an auxiliary bearing, comprising a rod body (1) for inserting into the inner hole of the outer ring of the bearing, and a bevel gear A (3), characterized in that: The bottom end of the rod body (1) is fixedly connected with a cylindrical cover (5). A circular hole (2) penetrating through its upper and lower surfaces is formed inside the rod body (1). The top end of the rod body (1) is fixedly connected with a bearing A (12), and a rotating rod A (4) is fixedly connected to the inner ring part of the bearing A (12). The end of the rotating rod A (4) passes through the bottom of the rod body (1) through the circular hole (2) and is fixed to the head of the bevel gear A (3). The outer side wall of the bevel gear A (3) is meshed with a vertically rotating bevel gear B (8). The bevel gear B (8) drives the operation of the transmission assembly (6). The transmission assembly (6) drives the movement of the inclined block (7), so that the inclined block (7) passes through the opening near the bottom of the cylindrical cover (5).
2. The material receiving rod for assisting in taking materials from the material receiving tray of the auxiliary bearing, characterized in that: The transmission assembly (6) includes a lead screw (61) fixed on the surface of the bevel gear B (8). A rod sleeve (62) is threadedly connected to the outer side wall of the lead screw (61). A guide rail (63) is fixedly connected to the inner side wall of the cylindrical cover (5). The top end of the rod sleeve (62) is slidably connected to the guide rail (63) through a slider (64). The bottom end of the rod sleeve (62) is fixedly connected with a moving plate (65). The surface of the moving plate (65) is fixed to the back of the inclined block (7).
3. The material receiving rod for assisting in taking materials from the material receiving tray of the auxiliary bearing, characterized in that: A handle A (9) for facilitating the rotation of the rotating rod A (4) is fixedly connected to the head of the rotating rod A (4).
4. The material receiving rod for assisting in taking materials from the material receiving tray of the auxiliary bearing, characterized in that: A connecting plate (10) is welded to the side end of the bearing A (12), and a handle B (11) is fixedly connected to the head of the connecting plate (10). The handle B (11) facilitates the movement of the material receiving rod by hand.
5. The material receiving rod for assisting in taking materials from the material receiving tray of the auxiliary bearing, characterized in that: A limiting component (13) for blocking the top of the outer ring of the bearing is detachably connected to the outer side wall of the rod body (1).
6. The material receiving rod for assisting in taking materials from the material receiving tray of the auxiliary bearing, characterized in that: A long strip groove (14) is formed on the outer side wall of the rod body (1). The limiting component (13) includes a moving block (131) slidably connected inside the long strip groove (14). A circular ring (132) is fixedly connected to the surface of the moving block (131). A cross plate (133) is fixedly connected to the outer side wall of the circular ring (132). The circular ring (132) is fixed at a height matching the rod body (1) and the outer ring of the bearing through a fixing structure (134).
7. The material receiving rod for assisting in taking materials from the material receiving tray of the auxiliary bearing, characterized in that: The fixing structure (134) includes a screw hole (1341) formed on the inner surface of the long strip groove (14). A through hole (1342) is formed inside the moving block (131), and the through hole (1342) sequentially penetrates forward through the circular ring (132). A screw is installed at the head of the through hole (1342), and the screw sequentially passes through the through hole (1342) and then is installed into the screw hole (1341) in a clockwise rotation.
8. The material receiving rod for assisting in taking materials from the material receiving tray of the auxiliary bearing, characterized in that: A rotating rod B (15) is fixedly connected to the back of the bevel gear A (3). The rotating rod B (15) is fixed to the inner ring part of the bearing B (16). The top end of the bearing B (16) is fixedly connected to the bottom of the rod body (1) through a vertical plate (17).