Management device for the storage of electrical materials
The administrative device for electrical material storage simplifies the operation of automatic lifting platforms by enabling automatic wheel locking and unlocking, enhancing safety and reducing operational complexity.
Patent Information
- Authority / Receiving Office
- DE · DE
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2025-10-09
- Publication Date
- 2026-04-02
AI Technical Summary
Existing automatic lifting platforms for electrical material storage require manual locking of universal wheels after positioning, which is cumbersome and poses safety risks.
An administrative device with a balance bike mechanism, limiting mechanism, and drive mechanism that allows for automatic locking and unlocking of wheels, reducing the need for manual intervention and enhancing safety.
The device simplifies the operation of locking wheels by allowing automatic locking and unlocking, ensuring stability and reducing the complexity and safety risks associated with manual wheel locking.
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Abstract
Description
TECHNICAL AREA
[0001] The utility model relates to the field of storage of electrical materials, in particular an administrative device for the storage of electrical materials. STATE OF THE ART
[0002] Warehousing, as a key link in modern logistics, plays a crucial role in the overall logistics system. Currently, energy supply companies rely primarily on specialized warehouse personnel to manage their electrical materials, classifying and storing various types of electrical materials in warehouses. The core of warehouse management lies in the daily handling of goods, including conducting regular inventory counts. During these counts, employees typically require support frames or stepladders to reach higher levels and count the goods on the shelves. However, this procedure is not only time-consuming and physically demanding but also poses a significant safety risk. To address this issue, energy supply companies have begun using mobile automated lifting platforms to assist with climbing operations, thereby reducing the dangers of working at height.Most existing automatic lifting platforms are equipped with universal wheels. After moving them into position, the wheels must be manually locked to prevent the platform from slipping. This procedure is quite cumbersome and not particularly user-friendly. CONTENTS OF THE PRESENT USE SAMPLE
[0003] Therefore, the technical problem solved by this utility model is that the wheels currently used on automatic lifting platforms are generally universal wheels that must be manually locked after being moved to a specific location to prevent slippage, thus making the overall use still relatively cumbersome. The aforementioned technical problems are solved by the following technical solution: This utility model proposes an administrative device for storing electrical materials, comprising the following: a main structure comprising a base, a step firmly connected to the outside of the base, a suspension frame firmly connected to the top of the base, and a protective fence arranged at the top of the base; a balance bike; a limiting mechanism, the limiting mechanism comprising an inner plate slidably connected to the inside of the base, a rubber block fixedly connected to the underside of the inner plate, a return element arranged on the top of the inner plate, and a release element arranged on the top of the inner plate; and a drive mechanism, wherein the drive mechanism consists of a drive element arranged inside the base and a suspension rope element, wherein the drive mechanism is configured in two groups.
[0004] In a preferred embodiment of the management device for storing electrical material according to this utility model, the impeller comprises a mounting seat that is fixedly connected to the underside of the base and a roller that is rotatably connected to the inside of the mounting seat.
[0005] In a preferred embodiment of the management device for the storage of electrical material according to this utility model, a square groove is provided on the top of the mounting seat, wherein the rubber block slides in the square groove.
[0006] In a preferred embodiment of the management device for storing electrical material according to this utility model, an annular groove is provided on the outside of the roller, with the inside of which a locking tooth is firmly connected, the length of the locking tooth being equal to the groove depth of the annular groove.
[0007] In a preferred embodiment of the management device for storing electrical material according to this utility model, the return element comprises a sliding rod that is fixedly connected to the top of the inner plate and a spring that is attached around the outside of the sliding rod, wherein one end of the spring is fixedly connected to the inside of the base and the other end of the spring is fixedly connected to the inner plate.
[0008] In a preferred embodiment of the management device for the storage of electrical material according to this utility model, the release element comprises a mounting block that is fixedly connected to the top of the inner plate, a foot pedal that is connected to the top of the mounting block, and a locking slot that is provided on the outside of the mounting block.
[0009] In a preferred embodiment of the management device for the storage of electrical material according to this utility model, the foot pedal extends through the base and the protective fence.
[0010] In a preferred embodiment of the management device for the storage of electrical material according to this utility model, the drive element comprises a motor adapted to be mounted inside the base, and two groups of winding drums fixedly connected to the output end of the motor, wherein a tooth block is fixedly mounted on the outside of one group of winding drums, wherein a tooth plate is slidably mounted inside the base, and wherein the tooth plate is in engagement with the tooth block.
[0011] In a preferred embodiment of the management device for the storage of electrical material according to this utility model, the tooth plates of the two drive mechanisms are arranged offset, with the winding drums that firmly connect the tooth blocks also being arranged offset.
[0012] In a preferred embodiment of the management device for storing electrical material according to this utility model, the suspension rope element comprises an auxiliary pulley rotatably mounted inside the base, a deflection pulley fixed to the top of the suspension frame, and a rope laid around the outside of the auxiliary pulley and the deflection pulley; wherein both ends of the rope are connected to the protective fence and the winding drum, respectively.
[0013] The advantageous effect of the present utility models is as follows: When the operator uses the device, it is not necessary to fix the wheels individually one after the other. The safety fence simply needs to be attached directly to complete the preliminary position limitation of the device. When the safety fence is lifted, the interlocking of the toothed plate and the locking slot then achieves the complete position limitation of the device.
[0014] This reduces the complexity of operating the device and ensures the safety of device use. BRIEF DESCRIPTION OF THE DRAWING
[0015] To more clearly illustrate the technical solutions of the embodiments of the present utility model, the accompanying drawings of the embodiments of the present utility model are briefly described below. It is obvious that the drawings described below relate only to specific embodiments of the present utility model and do not serve to limit its scope. Fig. Figure 1 shows a schematic overall diagram of the present utility model. Fig. Figure 2 shows a side section through the base of the present utility model. Fig. Figure 3 shows an enlarged schematic representation of section A of the utility model. Fig. Figure 4 shows a side view of the limiting mechanism of the present utility model embodiment. Fig. Figure 5 shows a schematic overall diagram of the impeller of the present utility model. Fig. Figure 6 shows a partial section of the present utility model. Fig. Figure 7 shows a schematic top-section cross-sectional view of a base of the utility model. Fig. Figure 8 shows a schematic overall diagram of the drive mechanism of the present utility model. Fig. Figure 9 shows an enlarged schematic representation of section B of the present utility model. DETAILED DESCRIPTION
[0016] In order to enable experts to better understand the present invention, the utility model is described in more detail below with reference to specific embodiments and the accompanying drawings.
[0017] The terminology used here is that which is currently widely used in this field, taking into account the functions of the utility model. However, this terminology may vary depending on the applicant's intent, precedents, or new developments in this field as understood by those skilled in the art. Furthermore, the applicant may select specific terms whose precise meanings are then explained in the detailed description of the utility model. Consequently, the terms used here should not be interpreted as mere nomenclature, but rather based on their meanings and the overall description of the utility model.
[0018] With reference to the Fig. In sections 1 to 6, this embodiment provides an administrative device for the storage of electromaterial, characterized in that it comprises: a main structure 1, wherein the main structure 1 comprises a base 11, a step 12 fixedly connected to the outside of the base 11, a suspension frame 13 fixedly connected to the top of the base 11 and a protective fence 14 arranged on the top of the base 11; a wheel 2; a limiting mechanism 3, wherein the limiting mechanism 3 comprises an inner plate 31 which is slidably connected to the inside of the base 11, a rubber block 32 which is fixedly connected to the underside of the inner plate 31, a return element 33 which is arranged on the top side of the inner plate 31, and a release element 34 which is arranged on the top side of the inner plate 31; and a drive mechanism 4, wherein the drive mechanism 4 consists of a drive element 41 arranged inside the base 11 and a suspension rope element 42, wherein the drive mechanism 4 is configured in two groups.
[0019] The wheel 2 comprises a mounting seat 21, which is fixedly connected to the underside of the base 11, and a roller 22, which is rotatably connected to the inside of the mounting seat 21.
[0020] A square groove 211 is provided on the top of the mounting seat 21, with the rubber block 32 sliding in the square groove 211.
[0021] On the outside of the roller 22 an annular groove 221 is provided, to the inside of which a locking tooth 222 is firmly connected, the length of the locking tooth 222 being equal to the groove depth of the annular groove 221.
[0022] The return element 33 comprises a sliding rod 331 which is fixedly connected to the top of the inner plate 31, and a spring 332 which is attached around the outside of the sliding rod 331, with one end of the spring 332 being fixedly connected to the inside of the base 11 and the other end of the spring 332 being fixedly connected to the inner plate 31.
[0023] The release element 34 comprises a mounting block 341, which is fixedly connected to the top of the inner plate 31, a foot pedal 342, which is fixedly connected to the top of the mounting block 341, and a locking slot 343, which is provided on the outside of the mounting block 341.
[0024] The foot pedal 342 passes through the base 11 and the protective fence 14.
[0025] After the operator has moved the device to a specific position, they enter the interior of the safety fence 14 through step 12. At this point, both of the operator's feet are placed on the foot pedal 342, which is exposed at the bottom of the safety fence 14. Under the pressure exerted by the operator at this point, the mounting block 341 drives the inner plate 31 downwards. The rubber block 32 on the underside of the inner plate 31 is compressed by the teeth 222 in the square groove 211 and the annular groove 221, thereby achieving the initial position limit of the roller 22 and ensuring the stability of the equipment.
[0026] The downward movement of the inner plate 31 causes the sliding rod 331 to descend, thereby tensioning the spring 332. When the operator releases the foot pedal 342, the spring force of the spring 332 returns the inner plate 31 and the rubber block 32 to their initial positions.
[0027] Since the length of the ratchet tooth 222 is equal to the working depth of the ring groove 221, it can be ensured that the rollers 22 of the device have a smooth running during the normal movement process.
[0028] When the personnel use the device, they only need to step on the protective fence 14 to implement the temporary limitation of the device without having to fix the wheels one after the other, thus reducing the cumbersome operation by the personnel while ensuring the stability of the device.
[0029] In one embodiment as described in the Fig. As shown in Figures 1 to 9, the drive element 9 comprises a motor 411 which is adapted to be mounted inside the base 11, and two groups of winding drums 412 which are fixedly connected to the output end of the motor 411, wherein a tooth block 413 is fixedly mounted on the outside of one group of the winding drums 412, wherein a tooth plate 414 is slidably mounted inside the base 11, and wherein the tooth plate 414 is in engagement with the tooth block 413.
[0030] When the operator presses the foot pedal 342, the mounting block 341 is in the post-sliding position, so that the locking slot 343 formed on the outside of the mounting block 341 is aligned with the toothed plate 414. By starting the motor 411, the winding drum 412 at the output end of the motor 411 can be set in rotation, whereby the winding drum 412, equipped with the toothed block 413, drives the toothed plate 414, causing it to slide and, during the rotation, gradually engage in the locking slot 343, thus achieving the final fixation of the mounting block 341.
[0031] In one embodiment, which is in the Fig.As shown in Figures 1 to 9, the suspension rope element 9 comprises an auxiliary pulley 421 rotatably mounted inside the base 11, a deflection pulley 422 fixedly attached to the top of the suspension frame 13, and a rope 423 laid around the outside of the auxiliary pulley 421 and the deflection pulley 422; wherein both ends of the rope 423 are connected to the guard fence 14 and the winding drum 412 respectively.
[0032] The tooth plates 414 of the two drive mechanisms 4 are arranged offset, and the winding drums 412, which firmly connect the tooth blocks 413, are also arranged offset.
[0033] When a worker steps on the foot pedal 342, the motor 411 is started, which sets the winding drum 412 at the output end of the motor 411 in motion. In combination with the auxiliary roller 421 and the deflection roller 422, this causes the safety fence 14 to be raised.
[0034] When the operator steps on the foot pedal 342, the foot pedal 342 still protrudes 30 a bit beyond the underside of the safety fence 14, ensuring that the operator can continuously apply pressure to the foot pedal 342 during the gradual rise of the safety fence 14 to ensure that the sliding toothed plate 414 can engage stably in the locking slot 343, thereby realizing the close contact between the rubber block 32 and the roller 22 to ensure the stability of the device.
[0035] The offset arrangement of the tooth plates 414 makes it possible to avoid a collision between the two sets of tooth plates 414, thereby extending the sliding path of the tooth plates 414 and increasing the height of the device as much as possible.
[0036] In summary, when the operator uses the device, it is not necessary to lock the wheels individually one after the other. The safety fence simply needs to be attached directly to complete the device's initial position limitation. When the safety fence is lifted, the interlocking toothed plate and locking slot then fully lock the device into place. This reduces the complexity of operating the device and ensures safe use.
[0037] Finally, it should be noted that the methods and devices described in detail above are merely embodiments. Those skilled in the art can modify these embodiments in various ways without departing from the scope of this utility model.
Claims
[1] Management device for the storage of electrical materials, characterized by that it includes: a main structure (1) comprising a base (11), a step (12) fixedly connected to the outside of the base (11), a suspension frame (13) fixedly connected to the top of the base (11) and a protective fence (14) arranged on the top of the base (11); a running wheel (2); a limiting mechanism (3), wherein the limiting mechanism (3) comprises an inner plate (31) slidably connected to the inside of the base (11), a rubber block (32) fixedly connected to the underside of the inner plate (31), a return element (33) arranged on the top of the inner plate (31), and a release element (34) arranged on the top of the inner plate (31); and a drive mechanism (4) wherein the drive mechanism (4) consists of a drive element (41) arranged inside the base (11) and a suspension rope element (42), wherein the drive mechanism (4) is configured in two groups. [2] Management device for the storage of electrical materials according to claim 1, characterized by , that the wheel (2) comprises a mounting seat (21) which is fixedly connected to the underside of the base (11) and a roller (22) which is rotatably connected to the inside of the mounting seat (21). [3] Management device for the storage of electrical materials according to claim 2, characterized by , that a square groove (211) is provided on the top of the mounting seat (21), wherein the rubber block (32) slides in the square groove (211). [4] Management device for the storage of electrical materials according to claim 3, characterized by, that an annular groove (221) is provided on the outside of the roller (22), with the inside of which a locking tooth (222) is firmly connected, wherein the length of the locking tooth (222) is equal to the groove depth of the annular groove (221). [5] Management device for the storage of electrical materials according to claim 4, characterized by , that the return element (33) comprises a sliding rod (331) which is fixedly connected to 30 of the top of the inner plate (31), and a spring (332) which is attached around the outside of the sliding rod (331), wherein one end of the spring (332) is fixedly connected to the inside of the base (11) and the other end of the spring (332) is fixedly connected to the inner plate (31). [6] Management device for the storage of electrical materials according to claim 5, characterized by, wherein the release element (34) comprises a mounting block (341) which is fixedly connected to the top of the inner plate (31), a foot pedal (342) which is fixedly connected to the top of the mounting block (341), and a locking slot (343) which is provided on the outside of the mounting block (341). [7] Management device for the storage of electrical materials according to claim 6, characterized by , that the foot pedal (342) passes through the base (11) and the protective fence (14). [8] Management device for the storage of electrical materials according to claim 7, characterized by, that the drive element (41) comprises a motor (411) which is adapted inside the base (11), and two groups of winding drums (412) which are fixedly connected to the output end of the motor (411), wherein a tooth block (413) is fixedly attached to the outside of one group of the winding drums (412), wherein a tooth plate (414) is slidably mounted inside the base (11), and wherein the tooth plate (414) is in engagement with the tooth block (413). [9] Management device for the storage of electrical materials according to claim 8, characterized by , that the tooth plates (414) of the two drive mechanisms (4) are arranged offset, and wherein the winding drums (412) which firmly connect the tooth blocks (413) are also arranged offset. [10] Management device for the storage of electrical materials according to claim 9, characterized by, that the suspension cable element (42) comprises an auxiliary pulley (421) rotatably mounted inside the base (11), a deflection pulley (422) fixedly attached to the top of the suspension frame (13), and a cable (423) laid around the outside of the auxiliary pulley (421) and the deflection pulley (422); where both ends of the rope (423) are connected to the protective fence (14) and the winding drum (412).