Electronic product injection mold storage device
By introducing a moving and pulling structure into the storage device, the problem of difficult and safety hazards of mold position adjustment is solved, and the mold is easily stored and removed, extending its service life.
Patent Information
- Application Number
- CN202422469679.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-12
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-10-12
AI Technical Summary
The existing storage devices lack moving structures and pulling structures, which makes it difficult to operate the injection molds of electronic products when adjusting their positions, which easily damage the molds and pose safety hazards.
A storage device containing a moving structure and a pulling structure is designed to provide shock absorption by setting the moving structure, and buffering and shock absorption by the pulling structure is provided to facilitate the storage and removal of the mold.
It realizes convenient movement and fixation of the mold, reduces the risk of mold damage, and improves service life and safety.
Smart Images

Figure CN223147110U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of mold storage, in particular to a storage device for injection molds of electronic products. Background Art
[0002] Injection molds are key tools for producing plastic products, determining the product structure and dimensional accuracy, and are widely used in modern manufacturing. They provide molding guarantees for electronic products and come in a wide variety of types. In order to store them properly, a storage device for injection molds of electronic products is needed.
[0003] A storage device for injection molds of plastic products with the publication number CN217836626U includes a storage box. The inner side wall of the storage box is fixedly connected with a support plate. A connection groove is opened on one side of the support plate, and a movable groove is opened on the top of the support plate. A bidirectional screw rod is movably connected to the inner wall of the movable groove. One end of the bidirectional screw rod is fixedly connected with a rotating disk. A sliding sleeve is movably connected to the outer wall of the bidirectional screw rod. A limiting plate is fixedly connected to the outer wall of the sliding sleeve. An extrusion pad is fixedly connected to one side of the limiting plate. A box door is movably connected to the front of the storage box. This storage device for injection molds of plastic products facilitates users to limit and tightly press the injection mold according to its size, thereby improving the stability during storage and avoiding the situation of the injection mold accidentally falling. It not only greatly improves the storage effect but also improves the usability, further meeting the usage requirements. In addition, the existing storage devices also have the following disadvantages in use:
[0004] (1) The existing storage devices lack a moving structure. Although the injection molds of electronic products are lighter than other molds, they are usually heavy. Once the mold is placed on the storage device, if the position of the device needs to be adjusted, the mold must be unloaded first, which not only increases the operation difficulty but also reduces the work efficiency;
[0005] (2) The existing storage devices lack a pulling structure. The position of the support plate of the existing storage device is fixed. When placing or taking out the injection mold, the mold may collide with the upper support plate, which not only easily causes damage to the mold and affects the production accuracy, but may also cause the mold to slip out of the hand in severe cases, posing a threat to the personal safety of the user.
[0006] The information disclosed in this background art section is only intended to enhance the overall understanding of the present invention and should not be regarded as an admission or any form of suggestion that this information constitutes prior art already known to those of ordinary skill in the art. Summary of the Utility Model
[0007] The technical problem to be solved by the present utility model is to overcome the above technical defects and provide a storage device for injection molds of electronic products.
[0008] To solve the above problems, the technical solution of the present utility model is as follows: It includes a bottom plate, and moving structures are respectively fixedly connected to the four sides of the bottom of the bottom plate. On both sides of the top of the bottom plate, side plates are respectively fixedly connected. On one side of the middle of the tops of the two side plates, a top plate is fixedly connected. On the opposite sides of the two side plates, a number of equally spaced empty slots are provided. Between the number of equally spaced empty slots, a number of equally spaced placement plates are provided. On the front and rear sides of the tops of the number of placement plates, a number of clamping structures are respectively provided. On both sides of the number of placement plates, pull-out structures are respectively provided. On both sides of the front sides of the tops of the number of placement plates, fixing plates are respectively fixedly connected. Through the fixing plates of the number of placement plates, clamping rods are respectively inserted. At the opposite ends of the number of clamping rods, pull blocks are respectively fixedly connected. At the opposite ends of the number of clamping rods, a first spring is respectively wound.
[0009] Further, each group of the pull-out structures includes an extension block, a second damping rod, a fifth spring, an extension plate, an extension seat and a sliding wheel. The extension block is fixedly connected to the placement plate. On the upper and lower sides of the extension block, the second damping rods are respectively fixedly connected. On the outer walls of the two second damping rods, the fifth spring is respectively wound. At the opposite ends of the two second damping rods, the extension plates are respectively fixedly connected. On one side of the opposite sides of the two extension plates, the extension seats are respectively fixedly connected. At the centers of the tops of the two extension seats, the sliding wheels are respectively movably connected. The two extension seats are respectively adapted to be connected with the sliding grooves.
[0010] Further, each group of the clamping structures includes a threaded rod, a rotating block, a vertical block, a clamping plate and a fourth spring. One end of the threaded rod is fixedly connected to the rotating block, and the other end passes through the vertical block and is movably connected to the clamping plate. The threaded rod is threadedly connected to the vertical block. The bottom of the vertical block is fixedly connected to the placement plate. On both sides of the vertical block close to the clamping plate, the fourth spring is respectively fixedly connected.
[0011] Further, each group of the moving structures includes a fixed shell, a support column, a first damping rod, a second spring, an outer shell, a runner, a bolt, an abutting plate and a third spring. The support column is inserted into the bottom of the fixed shell. At the top of the support column, a number of first damping rods are fixedly connected. On the outer walls of the number of first damping rods, the second spring is respectively wound. The bottom end of the support column is movably connected to the outer shell. In the outer shell, the runner is movably connected. On the side of the outer shell away from the runner, the bolt is inserted. At the end of the bolt close to the runner, the abutting plate is fixedly provided. On the bottom side of the abutting plate close to the fixed shell, the third spring is fixedly connected.
[0012] Further, the top of the fixed shell is fixedly connected to the bottom plate. The top of the abutting plate is hinged to the outer shell. One end of the third spring away from the abutting plate is fixedly connected to the outer shell.
[0013] Further, on the opposite sides of the two side plates, a number of equally spaced card slots are respectively provided. The number of card slots are respectively adapted to be connected with the clamping rods. On the upper and lower sides of the opposite sides of the number of empty slots, the sliding grooves are respectively provided.
[0014] The advantages of the present utility model compared with the existing technology are as follows:
[0015] 1. The present utility model provides a storage device for injection molds of electronic products. By setting a moving structure, when it is necessary to move, the bolt can be screwed out, and the third spring pulls the abutting plate back, and it can be directly pushed. When it is necessary to fix, the bolt can be screwed in, and the bolt pushes the abutting plate to abut against the rotating wheel, and the device is fixed. The telescoping of the first damping rod and the second spring at the top of the moving structure can provide a shock absorption effect for the movement of the device, and it is convenient to use;
[0016] 2. The present utility model provides a storage device for injection molds of electronic products. By setting a pulling structure, when it is necessary to store or take out the injection mold, the pulling block can be pulled, so that the clamping rod leaves the clamping groove, and the placing plate is pulled out. The clamping rod is aligned with the clamping groove, and the first spring expands, and the placing plate is fixed. The telescoping of the second damping rod and the fifth spring at the top and bottom of the pulling structure can provide a buffering and shock absorption effect for storing or taking out the injection mold, effectively prolonging the service life of the device and the injection mold. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a perspective view of the present utility model.
[0018] Figure 2 is a side sectional view of the present utility model.
[0019] Figure 3 is Figure 1 the internal structure schematic diagram of part A in
[0020] Figure 4 is Figure 2 the internal structure schematic diagram of part B in
[0021] Figure 5 is Figure 2 the enlarged view of part C in
[0022] As shown in the figure: 1. Bottom plate; 2. Moving structure; 201. Fixed shell; 202. Support pillar; 203. First damping rod; 204. Second spring; 205. Outer shell; 206. Rotating wheel; 207. Bolt; 208. Abutting plate; 209. Third spring; 3. Side plate; 301. Clamping groove; 4. Top plate; 5. Empty groove; 501. Sliding groove; 6. Placing plate; 7. Clamping structure; 701. Threaded rod; 702. Rotating block; 703. Vertical block; 704. Clamping plate; 705. Fourth spring; 8. Pulling structure; 801. Extension block; 802. Second damping rod; 803. Fifth spring; 804. Extension plate; 805. Extension seat; 806. Sliding wheel; 9. Fixed plate; 10. Clamping rod; 11. Pulling block; 12. First spring. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0023] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0024] As Figure 1 and Figure 2 shown, it includes a bottom plate 1. Moving structures 2 are respectively welded to the four sides of the bottom of the bottom plate 1. Side plates 3 are respectively welded to both sides of the top of the bottom plate 1. A top plate 4 is welded to the middle side of the tops of the two side plates 3. A number of equally spaced empty slots 5 are opened on the opposite sides of the two side plates 3. A number of equally spaced placement plates 6 are provided between the number of equally spaced empty slots 5. Clamping structures 7 are respectively provided on the front and rear sides of the tops of the number of placement plates 6. Pull-out structures 8 are respectively provided on both sides of the number of placement plates 6. Fixing plates 9 are respectively welded to both sides of the front side of the tops of the number of placement plates 6. A clamping rod 10 is passed through the inside of the number of fixing plates 9. Pulling blocks 11 are respectively welded to the separated ends of the number of clamping rods 10. One ends of the number of clamping rods 10 are respectively wound with a first spring 12. The number of first springs 12 are respectively movably welded to the pulling blocks 11, and the other ends are welded to the fixing plates 9. A number of equally spaced clamping slots 301 are respectively opened on the opposite sides of the two side plates 3. The number of clamping slots 301 are respectively adapted to be connected with the clamping rods 10. Sliding slots 501 are respectively opened on the upper and lower sides of the separated sides of the number of empty slots 5.
[0025] As Figure 3 shown, each group of clamping structures 7 includes a threaded rod 701, a rotating block 702, a vertical block 703, a clamping plate 704 and a fourth spring 705. One end of the threaded rod 701 is welded to the rotating block 702, and the other end passes through the vertical block 703 and is connected to the clamping plate 704 by a bearing. The threaded rod 701 is threadedly connected to the vertical block 703. The vertical block 703 is welded to the placement plate 6 at the bottom. Springs 705 are respectively welded to both sides of the vertical block 703 close to the clamping plate 704. The separated ends of the two springs 705 are welded to the clamping plate 704.
[0026] As Figure 4As shown in the figure, each set of moving structures 2 includes a fixed housing 201, a support column 202, a first damping rod 203, a second spring 204, an outer housing 205, a runner 206, a bolt 207, an abutting plate 208, and a third spring 209. Sliding grooves are provided on both sides of the fixed housing 201. The support column 202 is inserted into the bottom of the fixed housing 201. Sliders are welded to the top of both sides of the support column 202, and the two sliders are respectively slidably connected to the sliding grooves. A plurality of first damping rods 203 are welded to the top of the support column 202, and a bottom plate 1 is welded to the top of the plurality of first damping rods 203. The outer walls of the plurality of first damping rods 203 are respectively wound with second springs 204. One end of each of the plurality of second springs 204 is welded to the bottom plate 1, and the other end is welded to the support column 202. The bottom end of the support column 202 is connected to the outer housing 205 by a bearing, and the runner 206 is connected to the outer housing 205 by a bearing. A bolt 207 is inserted through one side of the outer housing 205 away from the runner 206. An abutting plate 208 is fixedly provided at one end of the bolt 207 close to the runner 206. A third spring 209 is welded to the bottom of one side of the abutting plate 208 close to the fixed housing 201. The bottom plate 1 is welded to the top of the fixed housing 201. The top of the abutting plate 208 is hinged to the outer housing 205, and one end of the third spring 209 away from the abutting plate 208 is welded to the outer housing 205. By providing the moving structure 2, when movement is required, the bolt 207 can be unscrewed, and the third spring 209 pulls the abutting plate 208 back, and it can be directly pushed. When fixation is required, the bolt 207 can be screwed in, and the bolt 207 pushes the abutting plate 208 to abut against the runner 206, and the device is fixed. The telescoping of the first damping rods 203 and the second springs 204 at the top of the moving structure 2 can provide a shock-absorbing effect for the movement of the device, which is convenient to use.
[0027] As Figure 5 shown, each set of pulling structures 8 includes an extension block 801, a second damping rod 802, a fifth spring 803, an extension plate 804, an extension seat 805, and a sliding wheel 806. The extension block 801 is welded to the placement plate 6. The second damping rods 802 are welded to the upper and lower sides of the extension block 801 respectively. The outer walls of the two second damping rods 802 are respectively wound with fifth springs 803. The two second damping rods 802 are welded to the extension plates 804 respectively at the ends away from each other. One end of each of the two fifth springs 803 is welded to the extension block 801, and the other end is welded to the extension plate 804. Extension seats 805 are welded to one side of each of the two extension plates 804 away from each other respectively. The sliding wheels 806 are respectively connected to the centers of the tops of the two extension seats 805 by bearings. The two extension seats 805 are respectively connected to the sliding grooves 501 in a matching manner. By providing the pulling structure 8, when it is necessary to store or take out the injection mold, the pull block 11 can be pulled, so that the clamping rod 10 leaves the clamping groove 301, and the placement plate 6 can be pulled out. The clamping rod 10 is aligned with the clamping groove 301, and the first spring 12 expands, and the placement plate 6 is fixed. The telescoping of the second damping rods 802 and the fifth springs 803 at the top and bottom of the pulling structure 8 can provide a buffering and shock-absorbing effect for storing or taking out the injection mold, effectively extending the service life of the device and the injection mold.
[0028] In specific use, refer to Figures 1 to 5As shown, the device is pushed to the appropriate area through the moving structure 2. When movement is required, the bolt 207 can be unscrewed. The third spring 209 pulls the abutting plate 208 back, and the device can be directly pushed. When fixation is required, the bolt 207 can be screwed in. The bolt 207 pushes the abutting plate 208 to abut against the runner 206, and the device is fixed. The telescoping of the first damping rod 203 and the second spring 204 at the top of the moving structure 2 can provide a damping effect for the movement of the device, which is convenient to use. By setting the pulling structure 8, when the injection mold needs to be stored or taken out, the pulling block 11 can be pulled, so that the clamping rod 10 leaves the clamping groove 301, and the placing plate 6 is pulled out. The clamping rod 10 is aligned with the clamping groove 301, and the first spring 12 expands, and the placing plate 6 is fixed. The telescoping of the second damping rod 802 and the fifth spring 803 at the top and bottom of the pulling structure 8 can provide buffering and damping effects for storing or taking out the injection mold, effectively prolonging the service life of the device and the injection mold for electronic products. After placing the injection mold, the rotating block 702 can be rotated. The rotating block 702 drives the threaded rod 701 to rotate, and then pushes the clamping plate 704 to clamp the injection mold. The fourth spring 705 assists in damping and can assist in positioning to prevent the accidental dropping of the injection mold for electronic products, which is convenient to use.
[0029] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or elements inherent to such process, method, article or device.
[0030] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
[0031] The above describes the present invention and its implementation manners. This description is not restrictive. What is shown in the drawings is only one of the implementation manners of the present invention, and the actual structure is not limited thereto. Generally speaking, if those of ordinary skill in the art are inspired by it and design similar structural manners and embodiments without creative efforts without departing from the creative purpose of the present invention, they shall fall within the protection scope of the present invention.
Claims
1. An electronic product injection mold storage device, characterized in that: It includes a bottom plate (1), and moving structures (2) are fixedly connected to the four sides of the bottom of the bottom plate (1) respectively. Side plates (3) are fixedly connected to the two sides of the top of the bottom plate (1). A top plate (4) is fixedly connected to the middle side of the tops of the two side plates (3). A number of equally spaced empty slots (5) are formed on the opposite sides of the two side plates (3). A number of equally spaced placement plates (6) are arranged between the number of equally spaced empty slots (5). Clamping structures (7) are arranged on the front and rear sides of the tops of the number of placement plates (6) respectively. Pulling structures (8) are arranged on the two sides of the number of placement plates (6) respectively. Fixing plates (9) are fixedly connected to the two sides of the front side of the tops of the number of placement plates (6). A clamping rod (10) is inserted through the inside of the number of fixing plates (9). Pulling blocks (11) are fixedly connected to the opposite ends of the number of clamping rods (10) respectively. A first spring (12) is wound around the opposite ends of the number of clamping rods (10) respectively.
2. The storage device for an injection mold of an electronic product according to claim 1, wherein: A number of equally spaced clamping slots (301) are respectively formed on the opposite sides of the two side plates (3). The number of clamping slots (301) are respectively adapted to be connected with the clamping rods (10). Sliding slots (501) are respectively formed on the upper and lower sides of the opposite sides of the number of empty slots (5).
3. The storage device for an injection mold of an electronic product according to claim 2, wherein: Each group of the moving structures (2) includes a fixed shell (201), a support column (202), a first damping rod (203), a second spring (204), an outer shell (205), a runner (206), a bolt (207), an abutting plate (208) and a third spring (209). The support column (202) is inserted into the bottom of the fixed shell (201). A number of first damping rods (203) are fixedly connected to the top of the support column (202). The second spring (204) is wound around the outer walls of the number of first damping rods (203) respectively. The bottom end of the support column (202) is movably connected to the outer shell (205). The runner (206) is movably connected inside the outer shell (205). The bolt (207) is inserted through the side of the outer shell (205) away from the runner (206). An abutting plate (208) is fixedly arranged at one end of the bolt (207) close to the runner (206). A third spring (209) is fixedly connected to the bottom of the side of the abutting plate (208) close to the fixed shell (201).
4. The storage device for an injection mold of an electronic product according to claim 3, wherein: The fixed shell (201) is fixedly connected to the bottom plate (1) at the top. The outer shell (205) is hinged to the top of the abutting plate (208). One end of the third spring (209) away from the abutting plate (208) is fixedly connected to the outer shell (205).
5. The storage device for an injection mold of an electronic product according to claim 1, characterized in that: Each group of the clamping structures (7) includes a threaded rod (701), a rotating block (702), a vertical block (703), a clamping plate (704) and a fourth spring (705). One end of the threaded rod (701) is fixedly connected to the rotating block (702), and the other end passes through the vertical block (703) and is movably connected to the clamping plate (704). The threaded rod (701) is threadedly connected to the vertical block (703). The vertical block (703) is fixedly connected to the placement plate (6) at the bottom. Two springs (705) are fixedly connected to the two sides of the side of the vertical block (703) close to the clamping plate (704) respectively.
6. The storage device for an injection mold of an electronic product according to claim 2, characterized in that: Each of the drawer structures (8) includes an extension block (801), a second damping rod (802), a fifth spring (803), an extension plate (804), an extension seat (805), and a sliding wheel (806). The extension block (801) is fixedly connected to the placement plate (6). The upper and lower sides of the extension block (801) are respectively fixedly connected to the second damping rods (802). The outer walls of the two second damping rods (802) are respectively wound with the fifth spring (803). The separated ends of the two second damping rods (802) are respectively fixedly connected to the extension plate (804). One side of each of the separated sides of the two extension plates (804) is respectively fixedly connected to the extension seat (805). The centers of the tops of the two extension seats (805) are respectively movably connected to the sliding wheels (806). The two extension seats (805) are respectively adaptively connected to the sliding grooves (501).
Citation Information
Patent Citations
Plastic product injection mold storage device
CN217836626U