Intelligent classification storage equipment for workshop and use method thereof
By adopting a double-controlled locking method in the workshop storage equipment, flexible adjustment of the storage area and high safety locking are achieved, solving the limitations of mechanical locks and the short boards of electromagnetic locks in existing equipment, and significantly improving the safety and convenience of storage equipment.
Patent Information
- Application Number
- CN202510157128.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-13
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2045-02-13
AI Technical Summary
Existing workshop storage equipment cannot effectively solve the problems of equipment locking, storage classification, storage area adjustment, and complementary advantages of mechanical locks and smart locks, and there are limitations of mechanical locks and electromagnetic locks.
An intelligent classification warehousing equipment for workshops is designed, using a double-controlled locking method combined with an electromagnetic bar to achieve flexible adjustment of the storage area through the design of the adjustment layer and the positioning block, and automatic conversion between the mechanical lock and the electromagnetic lock is realized.
It realizes flexible adjustment of storage areas and high safety locking, avoids the limitations of area adjustment of mechanical locks and the problem of electromagnetic locks affecting pickup due to power problems, and significantly improves the safety and convenience of storage equipment.
Smart Images

Figure CN119612034B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of workshop storage equipment, and in particular relates to intelligent classification storage equipment for workshops and a method for using the equipment. Background Art
[0002] Existing factory workshops have a lot of storage equipment. Because the parts produced by the factory are different or the size and security of finished products and processed products are different, they are traditionally stored in cabinet-type classification grids. If this type of classification storage uses a mechanical key lock, it is difficult to achieve the locking of the storage grid after the size is adjusted. The existing smart unlocking cannot be unlocked due to the limitations of traditional electricity. When the factory is out of power or the municipal maintenance project is carried out to alternately supply power to large factories, the smart lock cannot be unlocked, which is inconvenient to use. Traditional workshop storage equipment does not have a structure to balance the multiple needs of equipment locking, storage classification, storage area adjustment, and the complementary advantages of mechanical locks and smart locks. There is no storage equipment with a relatively simple structure and low cost, and which has neither the limitations of mechanical locks nor the shortcomings of electromagnetic locks. Summary of the invention
[0003] The purpose of the present invention is to provide an intelligent classification storage device for a workshop and a method of using the same to solve the above-mentioned problems.
[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an intelligent classification storage equipment for workshops, comprising a cabinet body, wherein the cabinet body is provided with multiple sliding blocks on both sides, wherein the interior is slidably provided with sliding blocks and an adjustment layer is hinged on the sliding blocks, and a layer is formed relative to the two adjustment layers, and positioning blocks are movably connected with the two ends of one side of the adjustment layer through a rotating shaft, and the top of the positioning block is locked with the inner wall of the cabinet and / or the positioning block on another adjustment layer placed on the top of the positioning block through a locking assembly, and a double-control lock locking assembly is inlaid on the positioning block near the front side, and a fixing assembly is provided on the positioning block near the rear side of the inner wall of the cabinet that can be inserted into the inner wall of the cabinet for support according to the rotation of the positioning block, and a plurality of door panels are hinged on the front side of the cabinet body, and the plurality of door panels are all movably connected with unlocking assemblies through bearings, and the unlocking assembly cooperates with the double-control lock locking assembly to lock the door panels;
[0005] Electromagnetic bars are arranged at the upper and lower ends of the front side of the cabinet and the front side of the adjustment layer. Two electromagnet bars on the adjustment layer are in contact with the edges of the upper and lower door panels respectively. A power switch is arranged at the bottom of the multiple adjustment layers on one side. The power switch controls the power supply of all the electromagnet bar circuits on the top thereof.
[0006] The unlocking component and the double-control lock locking component can trigger the power failure of all electromagnet bars during the unlocking process.
[0007] Preferably, the double-control lock locking assembly includes a fixed body fixedly connected to the positioning block, a locking body embedded in the fixed body, a limit position 1 is slidingly arranged on the top of the locking body, a limit position body 2 is arranged on the top of the limit position 1, an installation groove is opened on the top of the fixed body, a spring 1 is fixedly connected to the inner wall of the installation groove, the spring 1 is fixedly connected to the limit position body 2, and the total length of the matching body formed by the two pairs of limit position bodies 2 and the limit position 1 is the same, but the lengths of the two limit position bodies 2 are different, at least one L-shaped limit position body 1 is fixedly connected to the outer periphery of the front side of the locking body to cooperate with the unlocking assembly for locking, an external thread is fixedly arranged on the outer side of the locking body, an internal thread is processed on the inner wall of the fixed body, and the internal thread and the external thread are threadedly connected to each other, and a power-off switch for controlling the power-off of all electromagnet bars is fixedly arranged on one side of the inner wall of the fixed body, and the power-off switch is triggered by the extension of the rotation of the locking body.
[0008] Preferably, sliding grooves are provided on both sides of the upper limit one on the locking body, sliders are fixedly provided on both sides of the limit one, the limit one is slidably connected to the sliding grooves through the sliders, a protrusion is fixedly connected to the outside of the locking body, and the outer diameter of the protrusion is equal to the outer diameter of the L-shaped limit body one.
[0009] Preferably, the unlocking assembly includes a fixed block movably connected to the door panel via a bearing, and one side of the fixed block is fixedly connected to at least one L-shaped limit body 2 which cooperates with the L-shaped limit body 1, and the L-shaped limit body 2 is an elastic metal support which can be bent by compression and enter the bottom of the L-shaped limit body 1 for limiting, and the inner side of the L-shaped limit body 2 is fixedly connected to a spring 2, and the spring 2 uses the rebound force to bounce the fixed block and the door panel as a whole when the limiting position between the L-shaped limit body 1 and the L-shaped limit body 2 is removed.
[0010] Preferably, two placement grooves for engaging positioning blocks are provided at the bottom of the adjustment layer, and the locking assembly is specifically a locking bolt threadedly connected to the positioning block, which is locked with the inner wall of the cabinet and / or a positioning block on another adjustment layer placed on the top of the positioning block through the locking bolt, and threaded holes are provided at the bottom of the positioning block and the top of the cabinet to match the locking bolts.
[0011] Preferably, the fixing component includes a threaded rod arranged inside the positioning block and threadedly connected to the positioning block, an extension groove is opened inside the adjustment layer, a slide rail is installed inside the extension groove, the threaded rod is slidably connected to the adjustment layer through the slide rail, and one end of the threaded rod is inserted into the inner wall of the cabinet through the rotation of the positioning block.
[0012] Preferably, magnets are provided on the top of the inner wall of the cabinet and the bottom of the adjusting layer, and the magnets adsorb the adjusting layer that slides up at the bottom to fix it.
[0013] Preferably, a plurality of adjustment layer forming layer areas are arranged inside the cabinet, and a plurality of fixing layers fixedly connected to the cabinet are interspersed between the layers formed by the plurality of adjustment layers to fix the supporting points.
[0014] Preferably, a method for using intelligent classification storage equipment for a workshop is characterized in that the specific steps are as follows:
[0015] Step 1: Traditional storage lock, traditional workshop storage can be based on multiple door panels and unlocking components for multiple standard sizes of storage, and then according to the key inserted into the unlocking component until it is inserted into the double control lock component to unlock;
[0016] Step 2: Adjustment area storage lock. When the workshop needs to safely store some finished products or some large items, the positioning block is disconnected from the cabinet or the adjustment layer on the top that is threadedly connected to the locking bolt by the locking bolt, and then the positioning block is rotated 270 degrees to the inside of the placement slot at the bottom of the adjustment layer until it is adsorbed and fixed by the magnet inside the placement slot, and then the adjustment layer is moved up by sliding between the slider and the adjustment layer, and then the adjustment layer is rotated 90 degrees by the hinge between the adjustment layer and the slider to form a side wall. The adjustment layers at the ends are operated in this way to achieve large area storage;
[0017] Step 3: The mechanical lock is converted to a dual-control lock. Through the setting of the power switch, after the adjustment layer rotates 90 degrees, the power switch will be triggered, so that all the corresponding electromagnet bars on the top will be powered on and started. Then, the electromagnet bars on the upper part of the adjustment layer, the electromagnet bars on the side adjustment layer and the electromagnet bars on the top cabinet are used to realize rectangular electromagnet locking to adsorb the corresponding multiple door panels for fixing, so that multiple mechanical locks can be automatically converted into electromagnetic locks plus mechanical locks when a large area is stored;
[0018] Step 4: Hidden locking, multiple front positioning blocks can rotate freely, so that the staff can choose any positioning block according to their own wishes not to rotate into the placement slot, but to act as an unlocking mechanism for large-area storage, and other positioning blocks are placed in the placement slot, that is, from the outside, all unlocking components on the door panels exist, but only one unlocking component has an unlocked double-control lock component behind it, and only the storage person knows this, realizing hidden locking;
[0019] Step 5: Unlock
[0020] (1) Mechanical unlocking: insert the key into the fixed block until it is inserted into the locking body, and use the principle of different key heights to lift up multiple limiters at different heights to make the gap between the locking body and the fixed body coincide with the gap between the limiter 1 and the limiter 2. Then rotate the locking body to rotate the L-shaped limiter 2 from the limiter 1 until the side limit is lost, and then use the spring 2 to bounce it open to unlock;
[0021] (2) Unlocking the dual-control lock. When the key drives the locking body to rotate, the locking body is rotated a few more times. The threaded connection between the external thread and the internal thread can be used to realize that the locking body is continuously moved backward until the power-off switch is triggered to unlock all the electromagnet bars. During the rotation process, the mechanical lock between the L-shaped limit body 1 and the L-shaped limit body 2 is unlocked and the electromagnetic lock is also powered off and unlocked, thereby realizing the unlocking of the dual-control lock.
[0022] The technical effects and advantages of the present invention are as follows: the present invention can perform hidden locking while arbitrarily adjusting the size of the area, thereby increasing the safety of cargo storage in the workshop and reducing the chance of product loss, and then utilizes electromagnetic locking to lock a large area, and all locking and unlocking functions are on the unlocking component and the dual-control lock locking component, that is, no other settings are required, and both mechanical locks and dual-control locks can be locked, avoiding the limitations of mechanical locks after regional adjustment, and also avoiding the reasons why electromagnetic locks are affected by practical problems such as electricity when picking up goods, and large items are safer with dual-control locks. Compared with the previous invention, the dual-control lock has neither the limitations of mechanical locks nor the shortcomings of electromagnetic locks, and the locking function is also significantly improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a structural schematic diagram of the present invention;
[0024] Figure 2 It is a schematic diagram of the internal structure of the present invention;
[0025] Figure 3 It is a structural schematic diagram of the present invention;
[0026] Figure 4 For the present invention Figure 2 A partial enlarged view of the middle part;
[0027] Figure 5 For the present invention Figure 2 A partial enlarged view of part B in the middle;
[0028] Figure 6 It is a schematic diagram of the threaded rod installation structure of the present invention;
[0029] Figure 7 For the present invention Figure 6 A partial enlarged view of the middle C part;
[0030] Figure 8 It is a three-dimensional diagram of the locking structure of the present invention.
[0031] In the figure: 1. door panel; 2. unlocking assembly; 201. spring 2; 202. fixing block; 203. L-shaped limit body 2; 3. cabinet; 4. electromagnet bar; 5. positioning block; 6. locking bolt; 7. double-control lock locking assembly; 701. slide groove; 702. L-shaped limit body 1; 703. limit body 2; 704. installation groove; 705. spring 1; 706. fixing body; 707. power-off switch; 708. internal thread; 709. slider; 710. limit 1; 711. protrusion; 712. external thread; 713. locking body; 8. placement groove; 9. power-on switch; 10. slide rail; 11. threaded rod; 12. extension groove; 13. fixed layer; 14. adjustment layer; sliding groove 15. sliding groove. DETAILED DESCRIPTION
[0032] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0033] The present invention provides an intelligent classification storage equipment for workshops as shown in the figure, including a cabinet 3, a plurality of sliding grooves 15 are opened on both sides of the interior of the cabinet 3, a slider is slidably arranged inside the sliding groove 15, and an adjustment layer 14 is hinged on the slider, forming a layer relative to the two adjustment layers 14, and positioning blocks 5 are movably connected to the two ends of one side of the adjustment layer 14 through a rotating shaft, and the top of the positioning block 5 is locked with the inner wall of the cabinet 3 and / or the positioning block 5 on another adjustment layer 14 placed on the top of the positioning block 5 through a locking component, and a double-control lock locking component 7 is inlaid on the positioning block 5 near the front side, and a fixing component that can be inserted into the inner wall of the cabinet 3 for support according to the rotation of the positioning block 5 is provided on the positioning block 5 near the rear side of the inner wall of the cabinet 3, and a plurality of door panels 1 are hinged on the front side of the cabinet 3, and the plurality of door panels 1 are all movably connected with unlocking components 2 through bearings, and the unlocking component 2 cooperates with the double-control lock locking component 7 to lock the door panel 1;
[0034] Electromagnetic bars 4 are arranged at the upper and lower ends of the front side of the cabinet 3 and the front side of the adjustment layer 14. Two electromagnetic bars 4 on the adjustment layer 14 are in contact with the edges of the upper and lower door panels 1 respectively. A power switch 9 is arranged at the bottom of multiple adjustment layers 14 on one side. The power switch 9 controls the power supply of all the electromagnetic bars 4 circuits on the top thereof.
[0035] The unlocking process of the unlocking component 2 and the dual-control lock locking component 7 interacting with each other can trigger the power failure of all the electromagnet bars 4 .
[0036] Specifically, the dual-control lock assembly 7 includes a fixed body 706 fixedly connected to the positioning block 5, a locking body 713 is embedded in the fixed body 706, a limit position 710 is slidably arranged on the top of the locking body 713, a limit position body 2 703 is arranged on the top of the limit position 1 710, a mounting groove 704 is opened on the top of the fixed body 706, a spring 1 705 is fixedly connected to the inner wall of the mounting groove 704, the spring 1 705 is fixedly connected to the limit position body 2 703, and the total length of the matching body formed by the two pairs of limit positions 2 703 and limit positions 1 710 is one. The two limiting bodies 703 are of different lengths, and at least one L-shaped limiting body 702 is fixedly connected to the outer periphery of the front side of the locking body 713 for locking with the unlocking component 2. The outer side of the locking body 713 is fixedly provided with an external thread 712, and the inner wall of the fixed body 706 is processed with an internal thread 708, and the internal thread 708 and the external thread 712 are threadedly connected to each other. A power-off switch 707 for controlling the power-off of all electromagnet bars 4 is fixedly provided on one side of the inner wall of the fixed body 706, and the power-off switch 707 is triggered by the extension of the rotation of the locking body 713.
[0037] Specifically, both sides of the upper limit position 1 710 of the locking body 713 are provided with sliding grooves 701, and sliders 709 are fixedly provided on both sides of the limit position 1 710. The limit position 1 710 is slidably connected to the sliding groove 701 through the slider 709. A protrusion 711 is fixedly connected to the outer side of the locking body 713, and the outer diameter of the protrusion 711 is equal to the outer diameter of the L-shaped limit position 1 702. When the locking body 713 moves backward to trigger the power-off switch 707, the L-shaped limit position 1 702 and the protrusion 711 can be used to support the position of the two limit positions 2 703 to prevent the limit position 2 703 from moving downward and failing to cooperate with the limit position 1 710.
[0038] Specifically, the unlocking component 2 includes a fixed block 202 movably connected to the door panel 1 through a bearing, and at least one L-shaped limiting body 203 corresponding to the L-shaped limiting body 1 702 is fixedly connected to one side of the fixed block 202, and the L-shaped limiting body 203 is an elastic metal support that can be bent by compression and enter the bottom of the L-shaped limiting body 1 702 for limiting, and a spring 201 is fixedly connected to the inner side of the L-shaped limiting body 203. When the spring 201 is removed from the limiting position between the L-shaped limiting body 1 702 and the L-shaped limiting body 203, the rebound force is used to bounce the fixed block 202 and the door panel 1 as a whole.
[0039] Specifically, two placement grooves 8 for engaging the positioning block 5 are provided at the bottom of the adjustment layer 14. The locking component is specifically a locking bolt 6 threadedly connected on the positioning block 5, which is locked with the inner wall of the cabinet 3 and / or the positioning block 5 on another adjustment layer 14 placed on the top of the positioning block 5 through the locking bolt 6. Threaded holes and locking bolts 6 are provided at the bottom of the positioning block 5 and the top of the cabinet 3 to match each other.
[0040] Specifically, the fixing component includes a threaded rod 11 arranged inside the positioning block 5 and threadedly connected to the positioning block 5, an extension groove 12 is opened inside the adjustment layer 14, a slide rail 10 is installed inside the extension groove 12, the threaded rod 11 is slidably connected to the adjustment layer 14 through the slide rail 10, and one end of the threaded rod 11 is inserted into the inner wall of the cabinet 3 through the rotation of the positioning block 5.
[0041] Specifically, magnets are provided at the top of the inner wall of the cabinet 3 and the bottom of the adjustment layer 14 , and the magnets absorb and fix the adjustment layer 14 that slides up through the sliding groove 15 at the bottom.
[0042] Embodiment 1 A traditional workshop can store multiple door panels 1 and unlocking components 2 in multiple standard sizes, and then insert the key into the unlocking component 2 until it is inserted into the dual-control lock locking component 7 to unlock; by inserting the key into the fixed block 202 until it is inserted into the locking body 713, multiple limiters 710 of different heights are lifted up based on the principle of different key heights to achieve that the gap between the locking body 713 and the fixed body 706 coincides with the gap between the limiter 1 710 and the limiter 2 703, and then the locking body 713 is rotated to rotate the L-shaped limiter 203 from the self-limiting L-shaped limiter 1 702 until the side limit is lost, and then the spring is used to release the key. The second 201 pops open to unlock. When the workshop needs to safely store some finished products or some large items, the positioning block 5 is disconnected from the cabinet 3 or the adjusting layer 14 whose top is threadedly connected to the locking bolt 6 through the locking bolt 6, and then the positioning block 5 is rotated 270 degrees to the inside of the placement groove 8 at the bottom of the adjusting layer 14 until it is adsorbed and fixed by the magnet inside the placement groove 8, and then the adjusting layer 14 is moved up by sliding between the slider and the sliding groove 15, and then the adjusting layer 14 is rotated 90 degrees by the hinge between the adjusting layer 14 and the slider to form a side wall. The adjusting layers 14 at the ends are operated in this way to realize large-area storage; by setting the power switch 9, at the adjusting layer 1 After the 4 is rotated 90 degrees, the power switch 9 will be triggered, so that all the corresponding electromagnet bars 4 on the top will be powered on and started, and then the electromagnet bars 4 on the upper part of the adjustment layer 14, the electromagnet bars 4 on the side adjustment layer 14 and the electromagnet bars 4 on the top cabinet 3 are used to realize rectangular electromagnet locking to adsorb the corresponding multiple door panels 1 for fixation, so that multiple mechanical locks are automatically converted into electromagnetic locks plus mechanical locks when they are converted into large-area storage; the multiple front positioning blocks 5 can all rotate freely, so that the staff can choose any one of the positioning blocks 5 according to their own wishes not to rotate to the inside of the placement slot 8, but to act as an unlocking mechanism for large-area storage, and the other positioning blocks 5 are When the double-control lock is unlocked, the locking body 713 is rotated a few more times by the key, and the threaded connection between the external thread 712 and the internal thread 708 can be used to realize that the locking body 713 continuously moves backward until the power-off switch 707 is triggered, thereby unlocking all the electromagnet bars 4. During the rotation process, the mechanical lock between the L-shaped limiting body 1 702 and the L-shaped limiting body 203 is unlocked, and the electromagnetic lock is also powered off and unlocked, thereby realizing the unlocking of the double-control lock;
[0043] Embodiment 2: According to the requirements, the adjustment layers 14 of any intermediate layers can be replaced with the fixed layers 13 fixedly connected to the inside of the cabinet 3, so as to realize the locking of multiple medium and large areas, so as to provide four-point support and fixation of the medium and large areas of the lower layer;
[0044] In summary, the present invention can perform hidden locking while arbitrarily adjusting the size of the area, thereby increasing the safety of cargo storage in the workshop and reducing the chance of product loss. Then, electromagnetic locking is used to lock a large area, and all locked unlocking functions are on the unlocking component 2 and the dual-control lock locking component 7, that is, no other settings are required, and both mechanical locks and dual-control locks can be locked, avoiding the limitations of mechanical locks after regional adjustment, and also avoiding the reasons why electromagnetic locks are affected by practical problems such as electricity when picking up goods. In addition, large items are safer with dual-control locks. Compared with the previous invention, the dual-control lock has neither the limitations of mechanical locks nor the shortcomings of electromagnetic locks, and the locking function is significantly improved.
[0045] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. An intelligent classification storage device for a workshop, comprising a cabinet (3), characterized in that: A plurality of sliding grooves (15) are provided on both sides of the cabinet body (3), a sliding block is slidably arranged inside the sliding groove (15) and an adjustment layer (14) is hinged on the sliding block, and a layer is formed relative to the two adjustment layers (14), and positioning blocks (5) are movably connected to the two ends of one side of the adjustment layer (14) through a rotating shaft, and the top of the positioning block (5) is locked with the inner wall of the cabinet body (3) and / or the positioning block (5) on another adjustment layer (14) placed on the top of the positioning block (5) through a locking component, and a double-control lock locking component (7) is embedded on the positioning block (5) near the front side, and a fixing component that can be inserted into the inner wall of the cabinet body (3) for support according to the rotation of the positioning block (5) is provided on the positioning block (5) near the rear side of the inner wall of the cabinet body (3), and a plurality of door panels (1) are hinged on the front side of the cabinet body (3), and the plurality of door panels (1) are movably connected to unlocking components (2) through bearings, and the unlocking components (2) cooperate with the double-control lock locking components (7) to lock the door panels (1); Electromagnetic bars (4) are arranged at the upper and lower ends of the front side of the cabinet (3) and the front side of the adjustment layer (14); the electromagnetic bars (4) on the adjustment layer (14) are two and contact the edges of the upper and lower door panels (1) respectively; two placement grooves (8) are arranged at the bottom of the adjustment layer (14); magnets are arranged at the top of the inner wall of the cabinet (3) and the bottom of the adjustment layer (14); the positioning block (5) is rotated 270 degrees to the inside of the placement groove (8) at the bottom of the adjustment layer (14) until it is adsorbed and fixed by the magnet inside the placement groove (8).
2. The intelligent classification storage equipment for workshops according to claim 1 is characterized in that: A plurality of the regulating layers (14) on one side are each provided with a power switch (9) at the bottom, the power switch (9) controlling the power supply of the circuits of all the electromagnet bars (4) at the top thereof; The unlocking component (2) and the dual-control lock locking component (7) can trigger the power off of all the electromagnet bars (4) during the unlocking process.
3. The intelligent classification storage equipment for workshops according to claim 1 is characterized in that: The dual-control lock assembly (7) comprises a fixed body (706) fixedly connected to the positioning block (5), a locking body (713) is embedded in the fixed body (706), a limiter (710) is slidably arranged on the top of the locking body (713), a limiter (703) is arranged on the top of the limiter (710), a mounting groove (704) is provided on the top of the fixed body (706), a spring (705) is fixedly connected to the inner wall of the mounting groove (704), the spring (705) is fixedly connected to the limiter (703), and the matching body formed by the two pairs of limiters (703) and limiters (710) is integrally connected. The two limiting bodies (703) are the same in length but different in length; at least one L-shaped limiting body (702) for cooperating with the unlocking component (2) for locking is fixedly connected to the outer periphery of the front side of the locking body (713); an external thread (712) is fixedly arranged on the outer side of the locking body (713); an internal thread (708) is processed on the inner wall of the fixing body (706); and the internal thread (708) and the external thread (712) are threadedly connected to each other; a power-off switch (707) for controlling the power-off of all the electromagnet bars (4) is fixedly arranged on one side of the inner wall of the fixing body (706); and the power-off switch (707) is triggered by the extension of the rotation of the locking body (713).
4. The intelligent classification storage equipment for workshops according to claim 3 is characterized by: Slide grooves (701) are provided on both sides of the upper limit position (710) of the locking body (713), and sliders (709) are fixedly provided on both sides of the limit position (710). The limit position (710) is slidably connected to the slide grooves (701) via the sliders (709). A protrusion (711) is fixedly connected to the outer side of the locking body (713), and the outer diameter of the protrusion (711) is equal to the outer diameter of the L-shaped limit position (702).
5. The intelligent classification storage equipment for workshops according to claim 1 is characterized in that: The unlocking assembly (2) comprises a fixed block (202) movably connected to the door panel (1) via a bearing, and at least one L-shaped limiting body (203) which is matched with the L-shaped limiting body (702) is fixedly connected to one side of the fixed block (202), and the L-shaped limiting body (203) is an elastic metal support which can be bent by compression and enter the bottom of the L-shaped limiting body (702) for limiting, and a spring (201) is fixedly connected to the inner side of the L-shaped limiting body (203), and the spring (201) uses the rebound force to bounce the fixed block (202) and the door panel (1) apart as a whole when the limiting position between the L-shaped limiting body (702) and the L-shaped limiting body (203) is removed.
6. The intelligent classification storage equipment for workshops according to claim 1 is characterized in that: The locking assembly is specifically a locking bolt (6) threadedly connected to the positioning block (5), which is locked with the inner wall of the cabinet (3) and / or the positioning block (5) on another adjustment layer (14) placed on the top of the positioning block (5) through the locking bolt (6), and the bottom of the positioning block (5) and the top of the cabinet (3) are both provided with threaded holes that are mutually compatible with the locking bolt (6).
7. The intelligent classification storage equipment for workshops according to claim 1 is characterized by: The fixing assembly comprises a threaded rod (11) disposed inside the positioning block (5) and threadedly connected to the positioning block (5); an extension groove (12) is provided inside the adjustment layer (14); a slide rail (10) is installed inside the extension groove (12); the threaded rod (11) is slidably connected to the adjustment layer (14) via the slide rail (10); and one end of the threaded rod (11) is inserted into the inner wall of the cabinet (3) through the rotation of the positioning block (5).
8. The intelligent classification storage equipment for workshops according to claim 1 is characterized by: A plurality of adjustment layers (14) are arranged inside the cabinet (3) to form a layer area, and a plurality of fixing layers (13) fixedly connected to the cabinet (3) are interspersed between the layers formed by the plurality of adjustment layers (14) to fix the supporting points.
9. The method for using the intelligent classification storage equipment for workshops according to any one of claims 1 to 8, characterized in that: The specific steps are as follows: Step 1: Traditional storage lock, traditional workshop storage can be based on multiple door panels (1) and unlocking components (2) to store multiple standard sizes, and then insert the key into the unlocking component (2) until it is inserted into the dual-control lock component (7) to unlock; Step 2: Adjustment area storage locking. When the workshop needs to safely store some finished products or some large items, the positioning block (5) is disconnected from the cabinet (3) or the adjustment layer (14) whose top is threadedly connected to the locking bolt (6) by the locking bolt (6), and then the positioning block (5) is rotated 270 degrees to the inside of the placement groove (8) at the bottom of the adjustment layer (14) until it is adsorbed and fixed by the magnet inside the placement groove (8), and then the adjustment layer (14) is moved up by sliding between the slider and the sliding groove (15), and then the adjustment layer (14) is rotated 90 degrees by the hinge between the adjustment layer (14) and the slider to form a side wall. The adjustment layers (14) at the ends are operated in the same way to achieve large area storage; Step 3: The mechanical lock is converted into a dual-control lock. By setting the power switch (9), after the adjustment layer (14) rotates 90 degrees, the power switch (9) is triggered, so that all the corresponding electromagnet bars (4) on the top are powered on and started. Then, the electromagnet bars (4) on the upper part of the adjustment layer (14), the electromagnet bars (4) on the side adjustment layer (14) and the electromagnet bars (4) on the top cabinet (3) are used to realize rectangular electromagnet locking to adsorb the corresponding multiple door panels (1) for fixing, so that the multiple mechanical locks are automatically converted into electromagnetic locks plus mechanical locks when a large area is stored; Step 4: Concealed locking, through the multiple front positioning blocks (5) can be freely rotated, so that the staff can choose any one of the positioning blocks (5) according to their own wishes not to rotate into the placement groove (8), but to act as an unlocking mechanism for large area storage, and the other positioning blocks (5) are all placed in the placement groove (8), that is, from the outside, the unlocking components (2) on all door panels (1) are present; Step 5: Unlock (a) Mechanical unlocking, by inserting the key into the fixed block (202) until it is inserted into the locking body (713), and using the principle of different key heights to lift up multiple limiters (710) at different heights to achieve that the gap between the locking body (713) and the fixed body (706) coincides with the gap between the limiter (710) and the limiter (703), and then rotating the locking body (713) to rotate the L-shaped limiter (203) from the limited L-shaped limiter (702) until the side limit is lost, and then using the spring (201) to bounce it open to unlock; (b) Unlocking the dual-control lock. When the dual-control lock is unlocked, when the key drives the locking body (713) to rotate, the locking body (713) is rotated several times more. The threaded connection between the external thread (712) and the internal thread (708) can be used to realize that the locking body (713) continuously moves backward until the power-off switch (707) is triggered, thereby unlocking all the electromagnet bars (4). During the rotation process, the mechanical lock between the L-shaped limit body 1 (702) and the L-shaped limit body 2 (203) is unlocked, and the electromagnetic lock is also powered off and unlocked, thereby realizing the unlocking of the dual-control lock.
Citation Information
Patent Citations
Foldable goods shelf container for rice storage
CN115783574A
Logistics goods shelf
CN213474345U