Machine and brake integrated efficient tool carrying tool

By integrating the three-level distribution box with the vehicle platform, the efficient handling tools of the machine gate integrated machine and gate are designed, which solves the safety hazards of power connection and low construction efficiency caused by frequent movement of small machines on the construction site, and realizes efficient construction process and safe power connection.

CN222922850UActive Publication Date: 2025-05-30SCEGC NO 6 CONSTR ENG GRP CO LTD
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Patent Information

Application Number
CN202422128935.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-31
Publication Date
2025-05-30
Estimated Expiration
2034-08-31

AI Technical Summary

Technical Problem

At the construction site, small equipment needs to be moved frequently, resulting in low erection efficiency of the three-level distribution box, many safety risks of power connection, and inconvenient handling of the equipment, which can easily lead to damage to components and reduced construction efficiency.

Method used

Design an efficient tool for machine-gate integration, integrate the three-stage distribution box with the vehicle platform, and adopt a reserved cable plug and winch retracting and retrieval system to achieve rapid replacement of the machine and quick connection of the power supply.

Benefits of technology

It improves construction efficiency, reduces component losses and safety hazards caused by machine handling, ensures temporary power safety of small machines, simplifies the power connection process, and avoids the risk of electric shock.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

A mechanical and brake integrated efficient machine tool carrying tool is characterized in that a second-level box connecting cable (4) is reserved and led out from a third-level distribution box (1), and a winch (5) is used for winding and unwinding; one side of the third-stage distribution box (1) is provided with a stainless steel storage rack snap ring (3), and the stainless steel storage rack snap ring (3) is used for placing a reserved cable plug (2); the top of the carrier platform (7) is provided with a machine tool (6), and the upper surface of a connecting steel plate (14) is adhered with an anti-skid damping sponge; the bottom of a third-level distribution box supporting frame (13) is welded to a carrier platform (7), an upper machine tool cable special plug (10) is connected into a machine tool cable socket (9), and remaining machine tool cables (12) are wound around machine tool cable hooks (11). According to the utility model, the three-level distribution box (1) and the small-sized machine tool (6) can be integrated and quickly plugged with a power supply, so that the carrying of a single machine tool is reduced, the carrying efficiency is improved, and the potential safety hazard of power utilization caused by temporary power utilization and power supply lap joint of the machine tool is reduced.
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Description

Technical Field

[0001] The utility model belongs to the technical field of construction, and relates to a temporary safe power utilization device, a high-efficiency handling tool for small machines and tools, and particularly to a high-efficiency handling tool for machines and tools with integrated machine and switch. Background Art

[0002] To ensure the safety of temporary power utilization at the construction site and standardize the management of temporary power utilization at the construction site, in accordance with relevant specifications such as the "Technical Code for Temporary Power Utilization at the Construction Site" JGJ4-2005 and combined with the actual situation of the construction site, the use of machines and tools needs to meet the relevant regulations that a dedicated three-level distribution box must be equipped and one machine is equipped with one switch.

[0003] In the later stage of the construction process, construction workers often have a long distance between the working surface and the processing area, and the working surface is replaced frequently. As a result, small machines and tools often need to be moved along with the working surface. After each replacement of the temporary processing area, relevant operation contents such as determining the position where the distribution box can be placed and wiring, as well as the preparatory work before material processing, will consume a lot of time and energy.

[0004] The frequent movement of equipment, machines and tools, and distribution boxes will also bring a series of safety problems such as bruising and electric shock. In addition to the above safety hazards, the frequent disassembly and assembly of machines and tools and distribution boxes will also reduce the construction efficiency. The frequent manual handling and movement of equipment, machines and tools will also cause additional physical wear and component deviation of the machines and tools.

[0005] Therefore, it is very necessary to develop an integrated tool with a switch moving along with the machine, reducing the connection of temporary power supply, and improving the use efficiency of machines and tools. Content of the Utility Model

[0006] The purpose of the utility model is to provide a high-efficiency handling tool for machines and tools with integrated machine and switch, which can integrate the power utilization of the machine 6 and the handling of the machine 6, realize the integration of the three-level distribution box 1 and the small machine 6 and the quick plug-in of the power supply, reduce the handling of a single machine 6, improve the handling efficiency, and reduce the potential safety hazards of the temporary power supply connection of the machine 6.

[0007] The technical solution of the utility model is as follows:

[0008] A high-efficiency handling tool for machines and tools with integrated machine and switch. The utility model integrates the power utilization of the machine 6 and the handling of the machine 6, solves the problems of inconvenient handling of the machine 6 caused by the handling of the machine 6, component damage caused by the handling of the machine 6, low erection efficiency of the three-level distribution box 1, and many potential safety hazards in connecting the power supply; effectively improves the construction efficiency during the actual use process, avoids component loss caused by manual handling of the machine 6, and ensures the safety of temporary power utilization of the small machine 6.

[0009] The reserved secondary box connecting cable 4 is led out from the tertiary distribution box 1 and is retracted and extended using a winch 5; the end of the reserved secondary box connecting cable 4 is connected with a reserved cable plug 2 installed, which is convenient for plugging and can realize the quick replacement of the tool 6; a stainless steel storage rack clamping ring 3 is installed on one side of the tertiary distribution box 1, and the stainless steel storage rack clamping ring 3 is used to place the reserved cable plug 2.

[0010] A tool 6 is installed on the top of the carrier platform 7, a connecting steel plate 14 is laid on the bottom of the carrier platform 7, and an anti-slip and shock-absorbing sponge is pasted on the upper surface of the connecting steel plate 14; round holes connected by connecting safety buckles 8 are also preset on the connecting steel plate 14; universal wheels 15 with a self-locking function are installed at the four corners of the bottom of the connecting steel plate 14.

[0011] The bottom of the tertiary distribution box support frame 13 is welded to the carrier platform 7, and the upper part fixes the tertiary distribution box 1 to the crossbar with bolts; the special tool cable plug 10 is plugged into the tool cable socket 9, and the remaining tool cable 12 is wound around the tool cable hook 11 to ensure that the non-suspended section of the tool cable 12 is vertical and there is no dragging.

[0012] Optimally, the carrier platform 7 is welded by #5 channel steel and steel plates. At the contact between the tool 6 and the carrier platform 7, shock-absorbing and anti-slip sponges are added, and the sponge thickness is 10 mm; the stability of the tool 6 carried on the carrier is increased.

[0013] Optimally, the connecting steel plate 14 is a perforated steel plate of 60 mm×60 mm×10 mm. The connecting steel plate 14 is welded to the front and rear ends of the tool 6 platform, and the bottom of the connecting steel plate 14 is flush with the bottom of the platform. The connecting safety buckle 8 can be used to connect multiple connecting steel plates 14 to realize the simultaneous handling of multiple tools 6.

[0014] Optimally, the column of the tertiary distribution box support frame 13 is made of 50×6 angle steel, the column height is 1 m, the crossbar length is 200 mm, and the edge of the angle steel is chamfered at 10.

[0015] Optimally, the specification of the tertiary distribution box 1 is 300 mm×400 mm×200 mm, which is a compliant lightweight tertiary distribution box 1; the cable length of the reserved secondary box connecting cable 4 is 30 m.

[0016] Optimally, the carrier platform 7 is made of #5 angle steel, and the tool 6 is a pipe cutting machine.

[0017] Optimally, the tertiary distribution box support frame 13 is welded by two angle steels with lengths of 250 mm and 1000 mm respectively, and the 50 mm×6 mm angle steel is chamfered; the tool cable 12 is 5 m.

[0018] The beneficial effects of the present utility model are:

[0019] Beneficial effect 1: The utility model integrates the three - level distribution box 1 with the vehicle platform 7, and the switch moves with the vehicle. The reserved 30 - m cable makes it safer, faster, and more convenient for the machine tool 6 to pick up power. For the connection line between the three - level distribution box 1 and the machine tool 6, a special cable plug 2 is added at the end of the three - level distribution box 1, making it safe and fast to replace the machine tool 6. The integrated design of the machine and switch successfully solves the problems caused by the relocation of the machine tool 6, such as the difficulty in finding the assumed position of the three - level distribution box 1, the non - standard erection of the three - level distribution box 1, and the troublesome layout of the power supply line, greatly improving the efficiency of pre - processing for pipeline installation.

[0020] Beneficial effect 2: The utility model realizes the transportation on the floor plane, eliminating the potential safety hazards such as bruising and collision caused by manual handling of the machine tool 6, and reducing the frictional loss of the machine tool 6 caused by its handling.

[0021] Beneficial effect 3: The utility model realizes that the box moves with the vehicle. After the machine tool 6 moves to a new processing area, it can access the secondary box by using the reserved power cable nearby, avoiding the problems of re - finding the position of the three - level distribution box 1, setting up the support frame 13 for the three - level distribution box, and re - connecting the cable due to the movement of the machine tool 6, and eliminating the potential safety hazards of temporary power use existing in cable connection.

[0022] Beneficial effect 4: The utility model realizes the quick replacement of the machine tool 6. The three - level distribution box 1 reserves the jack for the special cable plug 2. After replacing the machine tool 6, insert the power plug 2 of the machine tool 6 into the reserved hole position to power on the machine tool 6.

[0023] Beneficial effect 5: The utility model can effectively improve the construction efficiency, ensure the safety of temporary power use, and effectively reduce the damage to the machine tool 6 during on - site construction. Description of the Drawings

[0024] Figure 1 It is a three - dimensional structure schematic diagram of the utility model;

[0025] Figure 2 It is a front - view structure schematic diagram of the utility model;

[0026] Figure 3 It is a side - view structure schematic diagram of the utility model.

[0027] Among them: three - level distribution box 1, reserved cable plug 2, stainless - steel storage rack snap ring 3, reserved secondary - box connection cable 4, winch 5, machine tool 6, vehicle platform 7, connecting safety buckle 8, machine - tool cable socket 9, machine - tool special cable plug 10, machine - tool cable hook 11, machine - tool cable 12, three - level distribution box support frame 13, connecting steel plate 14, universal wheel 15. Specific Embodiment

[0028] Embodiment 1

[0029] An efficient handling tool for an integrated machine and brake, including a three - level distribution box 1, a reserved cable plug 2, a stainless - steel storage rack clamp 3, a reserved secondary box connection cable 4, a winch 5, a machine tool 6, a carrier platform 7, a connecting safety buckle 8, a machine tool cable socket 9, a machine tool cable special plug 10, a machine tool cable hook 11, a machine tool cable 12, a three - level distribution box support frame 13, a connecting steel plate 14, and a universal wheel 15.

[0030] The reserved secondary box connection cable 4 is led out from the three - level distribution box 1 and is retracted and released using the winch 5; the end of the reserved secondary box connection cable 4 is connected and installed with a reserved cable plug 2, which is convenient for plugging and can realize the quick replacement of the machine tool 6; on one side of the three - level distribution box 1, a stainless - steel storage rack clamp 3 is installed, and the stainless - steel storage rack clamp 3 is used to place the reserved cable plug 2; the specification of the three - level distribution box 1 is

[0031] 300mm×400mm×200mm, which is a compliant lightweight three - level distribution box 1; the cable length of the reserved secondary box connection cable 4 is 30m.

[0032] The machine tool 6 is installed on the top of the carrier platform 7. The bottom of the carrier platform 7 is laid with a connecting steel plate 14, and an anti - slip and shock - absorbing sponge is pasted on the upper surface of the connecting steel plate 14; round holes connected by the connecting safety buckle 8 are also preset on the connecting steel plate 14; four corners at the bottom of the connecting steel plate 14 are installed with universal wheels 15 with a self - locking function; the carrier platform 7 is made of 5# angle steel, and the machine tool 6 is a pipe cutting machine. The connecting steel plate 14 is a perforated steel plate with a size of 60mm×60mm×10mm. The connecting steel plate 14 is welded to the front and rear ends of the platform of the machine tool 6, and the bottom of the connecting steel plate 14 is flush with the bottom of the platform. The connecting safety buckle 8 can be used to connect multiple connecting steel plates 14 to realize the simultaneous handling of multiple machine tools 6.

[0033] The bottom of the three - level distribution box support frame 13 is welded to the carrier platform 7, and the upper part uses bolts to fix the three - level distribution box 1 on the cross - arm. The machine tool cable special plug 10 is inserted into the machine tool cable socket 9, and the remaining machine tool cable 12 is wound around the machine tool cable hook 11 to ensure that the non - suspended section of the machine tool cable 12 is vertical and has no dragging. The three - level distribution box support frame 13 is welded by two angle steels with lengths of 250mm and 1000mm respectively, the column height is 1m, and the 50mm×6mm angle steel is chamfered.

[0034] The machine tool cable 12 is 5m. The carrier platform 7 is welded by 5# channel steel and steel plates. At the contact between the machine tool 6 and the carrier platform 7, shock - absorbing and anti - slip sponges are added, and the sponge thickness is 10mm. The stability of the machine tool 6 carried on the carrier is increased.

[0035] The utility model integrates the power supply of the machine tool 6 and the handling of the machine tool 6, solving the problems of inconvenient handling of the machine tool 6, component damage caused by the handling of the machine tool 6, low erection efficiency of the three-level distribution box 1, and many potential safety hazards in connecting the power supply. During the actual use process, the construction efficiency is effectively improved, component loss caused by manual handling of the machine tool 6 is avoided, and the temporary power supply safety of the small machine tool 6 is ensured.

[0036] In the utility model, the machine tool 6 is placed on the carrier platform 7, and a shock-absorbing and anti-slip sponge is padded between the machine tool 6 and the carrier platform 7. The reserved secondary box connection cable 4 is led out from the three-level distribution box 1, and the reserved cable plug 2 is placed on the stainless steel storage rack snap ring 3. The special machine tool cable plug 10 is connected to the power supply through the reserved socket below the three-level distribution box 1, realizing the integration of the machine and the switch. The connection insurance buckle 8 is used to buckle the round hole on the connection steel plate 14 to realize the efficient consignment of the machine tool 6.

[0037] Embodiment 2

[0038] A method for using an efficient handling tool for a machine-tool integrated with a switch is as follows:

[0039] The first step: Place the machine tool 6 stably on the anti-slip sponge inside the carrier platform 7. The special machine tool cable plug 10 is inserted into the machine tool cable socket 9, and the remaining machine tool cable 12 is wound around the machine tool cable hook 11 to ensure that the non-suspended section of the machine tool cable 12 is vertical and has no dragging.

[0040] The second step: Straighten the reserved secondary box connection cable 4 to ensure that the cable is straight and not twisted. Stir the rotating handle of the winch 5 to slowly wind the reserved secondary box connection cable 4 into the winch 5. The lowest point of the hanging part of the reserved secondary box connection cable 4 shall not be lower than 100 mm above the upper edge of the machine tool 6. Insert the reserved cable plug 2 into the stainless steel storage rack snap ring 3.

[0041] The third step: Use the connection insurance buckle 8 to buckle the connection hole on the connection steel plate 14, unlock the universal wheels 15, and drag the carrier platform 7 to the processing area.

[0042] The fourth step: Adjust the position of the carrier platform 7 so that the four wheels of the carrier platform 7 are on the same horizontal plane, and lock the universal wheels 15.

[0043] The fifth step: Remove the reserved cable plug 2, stir the rotating handle of the winch 5, lead the reserved secondary box connection cable 4 to the nearest secondary box, and use the reserved cable plug 2 to connect to the secondary box power supply.

[0044] The sixth step: Check the power supply interfaces of the machine tool cable 12 and the secondary box connection cable 4. After ensuring that the connection is correct, turn on the air switch in the three-level distribution box 1 to start the processing inside the pipeline.

[0045] In summary, in Embodiment 1 and Embodiment 2, the utility model is an efficient construction tool that integrates the transportation of the small machine 6 and the three-level distribution box 1 of the machine 6. The carrier platform 7 can adapt to quick transportation on flat and hardened roads, and can effectively improve the construction efficiency and save construction costs in the floor plane of large public buildings, within the construction site, and in the road construction of municipal engineering. The integrated design of the three-level distribution box 1 and the carrier platform 7 avoids the need to re-erect the three-level distribution box 1 when moving the machine 6. The integrated design of the machine and the switch simplifies the power connection method, making the power connection more convenient and safe, and eliminating the potential electric shock safety hazard caused by temporary electricity use. The winch 5 makes the winding and unwinding of the secondary box connection cable 4 more convenient and fast. The use of an integrated machine and switch efficient transportation tool for the machine effectively improves the construction efficiency, avoids component loss caused by manual transportation of the machine 6, and ensures the safety of temporary electricity use for the small machine 6. It is a practical tool that can be applied to the construction site to ensure construction safety.

[0046] Matters not covered by the utility model are well-known technologies.

[0047] The above embodiments are only used to illustrate the technical concept and characteristics of the utility model, and their purpose is to enable those who are familiar with this technology to understand the content of the utility model and implement it accordingly, and it cannot be used to limit the protection scope of the utility model. All equivalent changes or modifications made according to the spirit and essence of the utility model should be covered within the protection scope of the utility model.

Claims

1. A highly efficient tool for transporting tools with integrated machine locks, characterized by: The reserved secondary box connection cable (4) is led out from the tertiary distribution box (1) and is retracted and released using a winch (5); the end of the reserved secondary box connection cable (4) is connected and installed with a reserved cable plug (2); a stainless steel shelf clamp ring (3) is installed on one side of the tertiary distribution box (1), and the stainless steel shelf clamp ring (3) is used to place the reserved cable plug (2); A tool (6) is installed on the top of the carrier platform (7), a connecting steel plate (14) is laid on the bottom of the carrier platform (7), and an anti-skid shock-absorbing sponge is pasted on the upper surface of the connecting steel plate (14); The connecting steel plate (14) is also provided with a circular hole for connecting the safety buckle (8); universal wheels (15) with a self-locking function are installed at the four corners of the bottom of the connecting steel plate (14); The bottom of the three-level distribution box support frame (13) is welded on the carrier platform (7), and the upper part of the three-level distribution box (1) is fixed on the cross arm with bolts; the tool cable special plug (10) is connected to the tool cable socket (9), and the remaining tool cable (12) is wound on the tool cable hook (11).

2. The machine lock integrated machine tool efficient handling tool according to claim 1 is characterized in that: The carrier platform (7) is welded by 5# channel steel and steel plate, and the sponge thickness at the contact point between the machine (6) and the carrier platform (7) is 10 mm.

3. The machine lock integrated machine tool efficient handling tool according to claim 1 is characterized in that: The connecting steel plate (14) is a 60mm×60mm×10mm perforated steel plate. The connecting steel plate (14) is welded to the front and rear ends of the tool (6) platform. The bottom of the connecting steel plate (14) is flush with the bottom of the platform. A connecting safety buckle (8) is used to connect multiple connecting steel plates (14).

4. The machine lock integrated machine tool efficient handling tool according to claim 1 is characterized in that: The columns of the three-level distribution box support frame (13) are made of 50×(6) angle steel, with a column height of 1m and a cross arm length of 200mm. The edges of the angle steel are chamfered at 10.

5. The machine lock integrated machine tool efficient handling tool according to claim 1 is characterized in that: The specifications of the three-level distribution box (1) are 300mm×400mm×200mm, which is a compliant lightweight three-level distribution box (1); the reserved cable length of the secondary box connection cable (4) is 30.

6. The machine lock integrated machine tool efficient handling tool according to claim 1, characterized in that: The carrier platform (7) is made of 5# angle steel, and the machine (6) is a pipe cutting machine.

7. The machine lock integrated machine tool efficient handling tool according to claim 1 is characterized in that: The three-level distribution box support frame (13) is welded from two angle steels with lengths of 250 mm and 1000 mm respectively, and the angle steel of 50 mm×6 mm is chamfered; the tool cable (12) is 5 m.