Storage and transportation frame for optical axis production
By designing a specific structure of the storage and transportation rack for optical axis production, the problems of collision and friction between optical axis during storage and transportation are solved, safe and effective separation and transportation of optical axis are achieved, and product quality and aesthetics are improved.
Patent Information
- Application Number
- CN202422262105.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-09-14
AI Technical Summary
During the storage and transportation process of existing optical axis production storage racks, multiple optical axis are prone to bump and friction with each other, affecting the quality and aesthetics of the product.
A storage and transportation rack for optical axis production is designed, including a loading plate, a first placement seat, a second placement seat, a third placement seat and a fourth placement seat. By setting grooves, plug grooves, limit holes and limit boards on the placement seat, effective separation and fixation of the optical axis is achieved, safe transportation is used for use with a moving wheel, and product information is managed through the label box.
It realizes safe storage and transportation of optical axis, reduces mutual influence, ensures product quality and overall aesthetics, and improves operating efficiency and safety.
Smart Images

Figure CN223045793U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of optical axis production, in particular to a storage and transportation rack for optical axis production. Background Art
[0002] The linear optical axis has the guiding function of a sliding bearing and can enable products that perform linear motion to play roles such as transmitting motion and torque in machinery. The linear optical axis is widely used in many linear motion systems such as cylinder rods, automatic precision printers, automatic cutting machines, and industrial robots. The patent with the application number CN202321700009.4 discloses a storage and transportation rack for optical axis production, which includes a base, a support plate, and a back plate. The support plate is a horizontally arranged rectangular plate structure. A base is provided directly below the support plate, and the base is connected to the support plate through a second piston rod. One end of the upper surface of the support plate is vertically welded with a back plate. The upper surface of the support plate is provided with a first limiting component and a second limiting component for limiting the position of the optical axis body. The top of the back plate is fixedly welded with a pull rod. A partition plate is vertically welded at the center on the side of the back plate close to the support plate. There are two sets of the first limiting components arranged oppositely, and the partition plate is located between the two sets of the first limiting components. The first limiting component includes a vertical plate, a push plate, and a lead screw. The second limiting component includes a box body, a movable plate, a third electric cylinder, and a third piston rod; A horizontally arranged top plate is vertically welded on the upper part of the side of the back plate close to the partition plate. A pressing plate is arranged between the top plate and the partition plate, and the pressing plate is located above the two sets of the first limiting components; First electric cylinders are fixedly installed at both ends of the upper surface of the top plate. The first electric cylinders are connected to the pressing plate through first piston rods. One side of the pressing plate is slidably connected to one side of the back plate; Vertical plates are vertically welded at both ends of the side of the back plate close to the partition plate. The push plate is located between the vertical plate and the partition plate. One end of the lead screw passes through the vertical plate and is rotatably connected to one side of the push plate. A limiting cavity for placing the optical axis body is arranged between the push plate and the partition plate; A box body is fixedly connected to the end of the upper surface of the support plate away from the back plate. A third electric cylinder is fixedly installed inside the box body, and one end of the third electric cylinder is connected to the movable plate through a third piston rod; Universal wheels are fixedly installed at the four corners of the lower end surface of the base. The inner bottom wall of the base is fixedly connected with a second electric cylinder, and the second electric cylinder is connected to the support plate through a second piston rod. However, when multiple optical axes are placed together, they are prone to bumping and rubbing against each other, leaving marks on the surface of the optical axis, which affects the product quality and aesthetics. Summary of the Utility Model
[0003] The utility model aims to solve the problems existing in the above-mentioned prior art, and provides a storage and transportation rack for optical axis production, which can facilitate the storage and placement of optical axes for safe transportation, effectively separate multiple optical axes to reduce mutual influence, and ensure product quality and overall aesthetics.
[0004] The technical solution adopted by the present utility model to solve its technical problems: This storage and transportation rack for optical axis production includes a loading plate, a first placement seat, a second placement seat, a third placement seat, and a fourth placement seat. The first placement seat, the second placement seat, the third placement seat, and the fourth placement seat are installed on the top of the loading plate. A groove is provided at the top of the first placement seat, and an inner pad is arranged inside the groove. A plug-in slot is provided at the top of the inner pad, and an optical axis is inserted into the plug-in slot. There are multiple optical axes and multiple plug-in slots respectively. Multiple optical axes are also placed on the tops of the second placement seat, the third placement seat, and the fourth placement seat respectively. A fixed tube is fixedly connected to the side of the first placement seat, and a movable rod is installed on the top of the fixed tube. There are two fixed tubes and two movable rods respectively. A limiting plate is fixedly connected to the top of the movable rod, and a limiting hole is provided inside the limiting plate. There are multiple limiting holes, and multiple optical axes are respectively inserted into the multiple limiting holes. The second placement seat, the third placement seat, and the fourth placement seat are also respectively provided with connecting fixed tubes, and limiting plates are also installed on the tops of the second placement seat, the third placement seat, and the fourth placement seat respectively. Multiple moving wheels are provided at the bottom of the loading plate. A fixed seat is fixedly connected to the top of the loading plate, and an inner groove is provided at the top of the fixed seat. A handrail is fixedly connected inside the inner groove. A label box is installed on the front side of the first placement seat. The operator brings the optical axis close to the first placement seat. The bottom of the optical axis is first inserted into the limiting hole of the limiting plate, and the optical axis is moved downward and inserted into the plug-in slot at the top of the inner pad. Referring to this operation, the storage and placement of multiple optical axes on the first placement seat are completed. Referring to this operation, the storage and placement of multiple optical axes on the second placement seat, the third placement seat, and the fourth placement seat are respectively completed. After all the optical axes are placed, the operator holds the handrail and pushes or pulls the loading plate, and the loading plate moves by means of multiple moving wheels. All the optical axes are effectively limited and fixed, and are effectively separated from each other without affecting each other. The optical axes are safely moved and transferred. The whole process facilitates the safe transfer of the storage and placement of the optical axes. The effective separation of multiple optical axes reduces mutual influence and ensures the product quality and overall aesthetics.
[0005] For further improvement, the lengths and thicknesses of the optical axes placed on the first placement seat, the second placement seat, the third placement seat, and the fourth placement seat are different, and the diameters of the plug-in slots and the limiting holes are different. The first placement seat, the second placement seat, the third placement seat, and the fourth placement seat respectively store and place optical axes of different specifications and sizes, increasing flexibility and meeting the needs of simultaneous storage and simultaneous transfer of optical axes of various specifications.
[0006] For further improvement, there are two handrails. Fillets are provided inside the inner groove, and fillets are also provided at the top of the fixed seat and the side of the loading plate. The two handrails meet the usage needs of different operators. Fillets are provided in multiple places to reduce accidental injuries caused by sharp right angles and increase the safety during the usage process.
[0007] Further improvement: a first chamfer is provided at the top of the insertion slot, and a second chamfer is provided at the top of the limiting hole. The first chamfer and the second chamfer facilitate the insertion of the optical axis into the limiting hole and the insertion slot, reducing the alignment time and improving the operation efficiency.
[0008] Further improvement: mounting grooves are formed at the top of the loading plate. There are multiple mounting grooves, and the fixed tubes are inserted into the interior of the mounting grooves. A third chamfer is provided at the bottom of the fixed tube. The third chamfer facilitates the insertion of the bottom of the fixed tube into the mounting groove. The first placing seat, the second placing seat, the third placing seat and the fourth placing seat are mounted by using the fixed tubes and the mounting grooves. The operation is simple, the installation is fast, the removal is easy, and the replacement is convenient.
[0009] Further improvement: fixing blocks are fixedly connected to the side of the fixed tube. There are multiple fixing blocks, and the multiple fixing blocks are respectively connected to the first placing seat, the second placing seat, the third placing seat and the fourth placing seat. First through holes are formed in the fixing blocks, threaded grooves are formed at the top of the loading plate, fixing bolts are arranged inside the fixing blocks, the fixing bolts pass through the first through holes, and the fixing bolts are threadedly connected with the threaded grooves. There are multiple first through holes, threaded grooves and fixing bolts respectively. By means of the first through holes, the threaded grooves and the fixing bolts, the fixing blocks are fixed, so that the first placing seat, the second placing seat, the third placing seat and the fourth placing seat are further fixed, effectively increasing the strength of the multiple placing seats at the top of the loading plate.
[0010] Further improvement: the movable rod is inserted into the top of the fixed tube. A fourth chamfer is provided at the bottom of the movable rod. A second through hole is formed in the outer side of the fixed tube, a threaded hole is formed in the inner side of the fixed tube, a positioning hole is formed in the movable rod, a hand-tightening bolt is arranged on the side of the fixed tube, the hand-tightening bolt continuously passes through the second through hole and the positioning hole, and the hand-tightening bolt is threadedly connected with the threaded hole. The movable rod facilitates quick insertion into the fixed tube by means of the fourth chamfer. After the hand-tightening bolt continuously passes through the second through hole and the positioning hole and is connected with the threaded hole, the movable rod is fixed, so that the limiting plate is also fixed. The installation of the limiting plate is easy, saving time and manpower.
[0011] Further improvement: there are multiple positioning holes, and the multiple positioning holes are on the same vertical line. The spacing distances of the multiple positioning holes are equal. The limiting plate moves up and down, the movable rod moves up and down in the fixed tube, the second through hole and the threaded hole correspond to different positioning holes, and after the hand-tightening bolt continuously passes through the second through hole and the corresponding positioning hole and is connected with the threaded hole, the height of the limiting plate is effectively adjusted to meet the storage and placement requirements of optical axes of different lengths.
[0012] For further improvement, there are multiple label boxes. Label boxes are also respectively installed on the front sides of the second placement seat, the third placement seat, and the fourth placement seat. Label paper is provided inside the label box. An internal slot is opened at the top of the label box, and a viewing port is opened at the front side of the label box. The viewing port communicates with the internal slot. The label paper is inserted into the internal slot. Different optical axis product information is filled on the label paper and viewed at the viewing port, and the product information can be directly obtained, which is convenient for the effective management of multiple optical axis products.
[0013] For further improvement, a steel sheet is fixedly connected to the front side of the first placement seat, and a magnet block is fixedly connected to the back of the label box. The magnet block and the steel sheet adsorb to each other. Steel sheets are also respectively provided and connected to the second placement seat, the third placement seat, and the fourth placement seat. The label box is installed by relying on the magnet block and the steel sheet. The installation process is simple and fast, and the removal is quick and convenient for replacement.
[0014] The beneficial effects of the present utility model are:
[0015] 1. By the operator bringing the optical axis close to the first placement seat, the bottom of the optical axis is first inserted into the limit hole of the limit plate, and the optical axis is moved downward and inserted into the insertion slot at the top of the inner pad. Referring to this operation, the storage placement of multiple optical axes on the first placement seat is completed. Referring to this operation, the storage placement of multiple optical axes on the second placement seat, the third placement seat, and the fourth placement seat is respectively completed. After all the optical axes are placed, the operator holds the handrail and pushes or pulls the loading plate. The loading plate moves by means of multiple moving wheels. All the optical axes are effectively limited and fixed, and are effectively separated from each other without interference. The optical axes are safely moved and transferred. The whole process is convenient for the safe transfer of the storage placement of the optical axes. The effective separation of multiple optical axes reduces the mutual influence and ensures the product quality and overall aesthetics.
[0016] 2. Through the third chamfer, it is convenient for the bottom of the fixing tube to be inserted into the installation slot. The first placement seat, the second placement seat, the third placement seat, and the fourth placement seat are installed by using the fixing tube and the installation slot. The operation is simple, the installation is fast, the removal is easy, and it is convenient for replacement. By means of the first through hole, the threaded groove, and the fixing bolt, the fixing block is fixed, so that the first placement seat, the second placement seat, the third placement seat, and the fourth placement seat are further fixed, effectively increasing the strength of the multiple placement seats on the top of the loading plate.
[0017] 3. Through the movable rod, it is convenient to quickly insert the movable rod into the fixing tube by using the fourth chamfer. The hand-tightening bolt sequentially passes through the second through hole and the positioning hole and then is connected to the threaded hole, so that the movable rod is fixed and the limit plate is also fixed. The installation of the limit plate is easy, saving time and manpower. The limit plate moves up and down, and the movable rod moves up and down in the fixing tube. The second through hole and the threaded hole correspond to different positioning holes. The hand-tightening bolt sequentially passes through the second through hole and the corresponding positioning hole and then is connected to the threaded hole, and the height of the limit plate is effectively adjusted to meet the storage placement requirements of different lengths of optical axes.
[0018] 4. Fill in the product information of different optical axes on the label paper and view it at the viewport. The product information can be directly obtained, which is convenient for the effective management of various optical axis products. The label box is installed by relying on the magnet block and the steel sheet, and the installation process is simple and fast, and the removal is quick and convenient for replacement. Description of the Drawings
[0019] Figure 1 It is a structural schematic diagram of the present utility model;
[0020] Figure 2 Of the present utility model Figure 1 Enlarged view of part A in
[0021] Figure 3 Of the present utility model Figure 1 Enlarged view of part B in
[0022] Figure 4 It is an installation display diagram of the first placement seat of the present utility model;
[0023] Figure 5 Of the present utility model Figure 1 Enlarged view of part C in
[0024] Figure 6 It is an activity display diagram of the hand-tightening bolt of the present utility model;
[0025] Figure 7 Of the present utility model Figure 1 Enlarged view of part D in
[0026] Figure 8 It is a back view display diagram of the structure of the present utility model;
[0027] Figure 9 It is a structure display diagram of the first placement seat of the present utility model;
[0028] Figure 10 Of the present utility model Figure 9 Enlarged view of part E in
[0029] Figure 11 It is an installation display diagram of the label box of the present utility model;
[0030] Figure 12 It is a structure display diagram of the limit plate of the present utility model;
[0031] Figure 13 It is a structure display diagram of the loading plate of the present utility model.
[0032] Description of reference numerals: 1, loading plate; 2, first placement seat; 3, second placement seat; 4, third placement seat; 5, fourth placement seat; 6, groove; 7, inner pad; 8, insertion slot; 9, optical axis; 10, fixed tube; 11, movable rod; 12, limit plate; 13, limit hole; 14, moving wheel; 15, fixed seat; 16, inner groove; 17, handrail; 18, label box; 19, rounded corner; 20, first chamfer; 21, second chamfer; 22, installation groove; 23, third chamfer; 24, fixed block; 25, first through hole; 26, threaded groove; 27, fixing bolt; 28, fourth chamfer; 29, second through hole; 30, threaded hole; 31, positioning hole; 32, hand-tightening bolt; 33, label paper; 34, built-in groove; 35, viewing port; 36, steel sheet; 37, magnet block. Detailed implementation mode
[0033] The following is further described in conjunction with the attached Figures 1-13 This embodiment is further described as follows:
[0034] As Figures 1-13 shown: In this embodiment, a storage and transportation rack for optical axis production includes a loading plate 1, a first placement seat 2, a second placement seat 3, a third placement seat 4 and a fourth placement seat 5. The first placement seat 2, the second placement seat 3, the third placement seat 4 and the fourth placement seat 5 are installed on the top of the loading plate 1. A groove 6 is opened at the top of the first placement seat 2, an inner pad 7 is arranged inside the groove 6, an insertion slot 8 is opened at the top of the inner pad 7, and an optical axis 9 is inserted inside the insertion slot 8. There are multiple optical axes 9 and insertion slots 8 respectively. Multiple optical axes 9 are also placed on the tops of the second placement seat 3, the third placement seat 4 and the fourth placement seat 5 respectively. A fixed tube 10 is fixedly connected to the side of the first placement seat 2, and a movable rod 11 is installed on the top of the fixed tube 10. There are two fixed tubes 10 and movable rods 11 respectively. A limit plate 12 is fixedly connected to the top of the movable rod 11, and a limit hole 13 is opened inside the limit plate 12. There are multiple limit holes 13, and multiple optical axes 9 are respectively inserted inside the multiple limit holes 13. The second placement seat 3, the third placement seat 4 and the fourth placement seat 5 are also respectively provided with and connected to the fixed tube 10, and limit plates 12 are also respectively installed on the tops of the second placement seat 3, the third placement seat 4 and the fourth placement seat 5. Multiple moving wheels 14 are arranged at the bottom of the loading plate 1. A fixed seat 15 is fixedly connected to the top of the loading plate 1, an inner groove 16 is opened at the top of the fixed seat 15, and a handrail 17 is fixedly connected inside the inner groove 16. A label box 18 is installed on the front side of the first placement seat 2. The lengths, thicknesses and diameters of the optical axes 9 placed on the first placement seat 2, the second placement seat 3, the third placement seat 4 and the fourth placement seat 5 are different. The diameters of the insertion slot 8 and the limit hole 13 are different. There are two handrails 17, rounded corners 19 are arranged inside the inner groove 16, and rounded corners 19 are also arranged at the top of the fixed seat 15 and the side of the loading plate 1. A first chamfer 20 is arranged at the top of the insertion slot 8, and a second chamfer 21 is arranged at the top of the limit hole 13.
[0035] As Figure 3 , Figure 4 , Figure 9 and Figure 13 shown: There are a plurality of mounting grooves 22 opened at the top of the loading plate 1. The fixing pipes 10 are inserted into the interior of the mounting grooves 22. There is a third chamfer 23 provided at the bottom of the fixing pipes 10. A plurality of fixing blocks 24 are fixedly connected to the sides of the fixing pipes 10. The plurality of fixing blocks 24 are respectively connected to the first placing seat 2, the second placing seat 3, the third placing seat 4, and the fourth placing seat 5. A first through hole 25 is opened inside the fixing block 24. A threaded groove 26 is opened at the top of the loading plate 1. A fixing bolt 27 is provided inside the fixing block 24. The fixing bolt 27 passes through the first through hole 25, and the fixing bolt 27 is threadedly connected to the threaded groove 26. There are a plurality of the first through holes 25, the threaded grooves 26, and the fixing bolts 27 respectively.
[0036] As Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 and Figure 12 shown: The movable rod 11 is inserted into the top of the fixing pipe 10. There is a fourth chamfer 28 provided at the bottom of the movable rod 11. A second through hole 29 is opened on the outer side of the fixing pipe 10. A threaded hole 30 is opened on the inner side of the fixing pipe 10. A positioning hole 31 is opened inside the movable rod 11. A hand-tightening bolt 32 is provided on the side of the fixing pipe 10. The hand-tightening bolt 32 successively passes through the second through hole 29 and the positioning hole 31, and the hand-tightening bolt 32 is threadedly connected to the threaded hole 30. There are a plurality of the positioning holes 31, and the plurality of positioning holes 31 are on the same vertical line, and the spacing distances of the plurality of positioning holes 31 are equal.
[0037] As Figures 10-11 shown: There are a plurality of label boxes 18. The label boxes 18 are also respectively installed on the front sides of the second placing seat 3, the third placing seat 4, and the fourth placing seat 5. A label paper 33 is provided inside the label box 18. An internal slot 34 is opened at the top of the label box 18. A viewing port 35 is opened on the front side of the label box 18. The viewing port 35 communicates with the internal slot 34. The label paper 33 is inserted into the interior of the internal slot 34. A steel sheet 36 is fixedly connected to the front side of the first placing seat 2. A magnet block 37 is fixedly connected to the back of the label box 18. The magnet block 37 and the steel sheet 36 are mutually adsorbed. The second placing seat 3, the third placing seat 4, and the fourth placing seat 5 are also respectively provided with a connecting steel sheet 36.
[0038] When the utility model is in use: Obtain the first placement seat 2, the second placement seat 3, the third placement seat 4 and the fourth placement seat 5. The fixed tube 10 of the first placement seat 2 is inserted into the installation groove 22 at the top of the loading plate 1. The fixed tube 10 of the second placement seat 3 is inserted into the installation groove 22. The fixed tube 10 of the third placement seat 4 is inserted into the installation groove 22. The fixed tube 10 of the fourth placement seat 5 is inserted into the installation groove 22. Multiple placement seats are quickly installed. Obtain multiple fixing bolts 27. The multiple fixing bolts 27 respectively pass through multiple first through holes 25, and the multiple fixing bolts 27 are respectively threadedly connected with multiple threaded grooves 26. Tighten all the fixing bolts 27 to further fix multiple placement seats. Obtain a limiting plate 12 matching the placement seat. At the same time, obtain two hand-tightening bolts 32. The movable rod 11 and the fixed tube 10 are inserted into each other. The limiting plate 12 moves up and down to adjust to the required height position. The second through hole 29 and the threaded hole 30 are aligned with the corresponding positioning holes 31. The hand-tightening bolt 32 continuously passes through the second through hole 29 and the positioning hole 31, and the hand-tightening bolt 32 is threadedly connected with the threaded hole 30. The movable rod 11 is fixed, so that the limiting plate 12 is also fixed, realizing the installation of one limiting plate 12. Refer to this to complete the installation of multiple limiting plates 12. The first placement seat 2, the second placement seat 3, the third placement seat 4 and the fourth placement seat 5 respectively store and place optical axes 9 of different specifications and sizes. The operator brings the optical axis 9 close to the first placement seat 2. The bottom of the optical axis 9 is first inserted into the limiting hole 13 of the limiting plate 12. The second chamfer 21 reduces the alignment time and improves the operation efficiency. Move the optical axis 9 downward and insert it into the insertion groove 8 at the top of the inner pad 7. The first chamfer 20 reduces the alignment time and improves the operation efficiency. Refer to this operation to complete the storage and placement of multiple optical axes 9 on the first placement seat 2. Refer to this operation to respectively complete the storage and placement of multiple optical axes 9 on the second placement seat 3, the third placement seat 4 and the fourth placement seat 5. After all the optical axes 9 are placed, obtain multiple label boxes 18. The magnet block 37 of the label box 18 is magnetically adsorbed to the steel sheet 36 on the front side of the first placement seat 2, completing the installation and setting of one label box 18. Refer to this operation to complete the installation and setting of multiple label boxes 18 on the front sides of the second placement seat 3, the third placement seat 4 and the fourth placement seat 5 respectively. Fill in multiple label papers 33, and the multiple label papers 33 respectively fill in the product information of different optical axes 9. The multiple label papers 33 are respectively inserted into the built-in slots 34 of the label boxes 18, which is convenient for the effective management of various optical axis 9 products. The operator holds the handrail 17 and pushes or pulls the loading plate 1. The loading plate 1 moves by means of multiple moving wheels 14. All the optical axes 9 are effectively limited and fixed, and are effectively separated from each other without mutual influence. The optical axes 9 are safely moved and transferred. The whole process facilitates the safe transfer of the storage and placement of the optical axes 9. Multiple optical axes are effectively separated to reduce mutual influence, ensuring the product quality and overall aesthetics.
[0039] Although the present utility model has been illustrated and described with reference to the preferred embodiments, those of ordinary skill in the art should understand that various changes in form and detail may be made within the scope of the claims.
Claims
1. A storage and transportation rack for optical axis production, comprising a loading plate (1), a first placement seat (2), a second placement seat (3), a third placement seat (4) and a fourth placement seat (5), wherein: The first placement seat (2), the second placement seat (3), the third placement seat (4) and the fourth placement seat (5) are installed on the top of the loading plate (1). A groove (6) is provided on the top of the first placement seat (2). An inner pad (7) is provided inside the groove (6). A plug-in slot (8) is provided on the top of the inner pad (7). An optical axis (9) is plugged into the plug-in slot (8). There are multiple optical axes (9) and plug-in slots (8). Multiple optical axes (9) are also placed on the top of the second placement seat (3), the third placement seat (4) and the fourth placement seat (5). A fixed tube (10) is fixedly connected to the side of the first placement seat (2). A movable rod (11) is installed on the top of the fixed tube (10). There are two fixed tubes (10) and two movable rods (11). The top of the movable rod (11) is fixedly connected to A limiting plate (12) is provided with a limiting hole (13) inside the limiting plate (12), the limiting hole (13) is provided in plurality, the plurality of optical axes (9) are respectively inserted into the plurality of limiting holes (13), the second placement seat (3), the third placement seat (4) and the fourth placement seat (5) are also respectively provided with connecting fixing tubes (10), the second placement seat (3), the third placement seat (4) and the fourth placement seat (5) are also respectively installed with the limiting plate (12) on the top, the loading plate (1) is provided with a moving wheel (14) at the bottom, the moving wheel (14) is provided in plurality, the top of the loading plate (1) is fixedly connected with a fixing seat (15), the top of the fixing seat (15) is provided with an inner groove (16), the inner groove (16) is fixedly connected with a handrail (17), and the front side of the first placement seat (2) is installed with a label box (18).
2. The storage and transportation rack for optical axis production according to claim 1 is characterized in that: The optical axes (9) placed on the first placement seat (2), the second placement seat (3), the third placement seat (4) and the fourth placement seat (5) are of different lengths, thicknesses and sizes, and the diameters of the plug-in slots (8) and the limiting holes (13) are different.
3. The storage and transportation rack for optical axis production according to claim 1 is characterized in that: There are two handrails (17), the inner groove (16) is provided with a rounded corner (19), and the top of the fixing seat (15) and the side of the loading plate (1) are also provided with a rounded corner (19).
4. The storage and transportation rack for optical axis production according to claim 1 is characterized in that: The top of the plug-in slot (8) is provided with a first cut corner (20), and the top of the limiting hole (13) is provided with a second cut corner (21).
5. The storage and transportation rack for optical axis production according to claim 1 is characterized in that: The top of the loading plate (1) is provided with a mounting groove (22), there are a plurality of mounting grooves (22), the fixing tube (10) is inserted into the inside of the mounting groove (22), and the bottom of the fixing tube (10) is provided with a third cut corner (23).
6. The storage and transportation rack for optical axis production according to claim 1 is characterized in that: The fixing tube (10) is fixedly connected to a fixing block (24) on the side thereof. There are a plurality of fixing blocks (24). The plurality of fixing blocks (24) are respectively connected to the first placement seat (2), the second placement seat (3), the third placement seat (4) and the fourth placement seat (5). A first through hole (25) is provided inside the fixing block (24). A threaded groove (26) is provided on the top of the loading plate (1). A fixing bolt (27) is provided inside the fixing block (24). The fixing bolt (27) passes through the first through hole (25). The fixing bolt (27) is threadedly connected to the threaded groove (26). There are a plurality of first through holes (25), threaded grooves (26) and fixing bolts (27).
7. The storage and transportation rack for optical axis production according to claim 1 is characterized in that: The movable rod (11) is inserted into the top of the fixed tube (10), a fourth cut angle (28) is provided at the bottom of the movable rod (11), a second through hole (29) is provided on the outside of the fixed tube (10), a threaded hole (30) is provided on the inside of the fixed tube (10), a positioning hole (31) is provided inside the movable rod (11), a hand-tightening bolt (32) is provided on the side of the fixed tube (10), the hand-tightening bolt (32) passes through the second through hole (29) and the positioning hole (31) in succession, and the hand-tightening bolt (32) is threadedly connected with the threaded hole (30).
8. The storage and transportation rack for optical axis production according to claim 7, characterized in that: There are a plurality of positioning holes (31), the plurality of positioning holes (31) are on the same vertical line, and the spacing distances between the plurality of positioning holes (31) are equal.
9. The storage and transportation rack for optical axis production according to claim 1, characterized in that: There are a plurality of label boxes (18), and label boxes (18) are also installed on the front sides of the second placement seat (3), the third placement seat (4) and the fourth placement seat (5), respectively. Label paper (33) is arranged in the label box (18), a built-in groove (34) is opened on the top of the label box (18), and a viewport (35) is opened on the front side of the label box (18), the viewport (35) is connected to the built-in groove (34), and the label paper (33) is inserted into the inside of the built-in groove (34).
10. The storage and transportation rack for optical axis production according to claim 9, characterized in that: The front side of the first placement seat (2) is fixedly connected with a steel sheet (36), the back side of the label box (18) is fixedly connected with a magnet block (37), the magnet block (37) and the steel sheet (36) are mutually attracted, and the second placement seat (3), the third placement seat (4) and the fourth placement seat (5) are also respectively provided with connecting steel sheets (36).
Citation Information
Patent Citations
Storage and transportation frame for optical axis production
CN220114675U