Electromechanical engineering installation positioning support
By designing mechanical and electrical engineering installation positioning brackets with multiple positioning and assembly methods and adjustment structures, the problem of waste of time on welding methods and single assembly methods cannot meet different needs is solved, and a fast and flexible installation process is achieved.
Patent Information
- Application Number
- CN202422029396.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-21
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-08-21
AI Technical Summary
The existing mechanical and electrical engineering installation positioning brackets usually use welding or a single assembly method, which leads to wasted installation time and requires special welders to operate, which cannot meet different installation needs.
Design an electromechanical engineering installation positioning bracket including assembly housing, fastening components and sliding support legs. It provides multiple positioning and assembly methods through fastening components, and adjusts with scales and sliding support legs to meet the installation needs of different equipment.
A fast and flexible installation process is achieved, and it can adapt to electromechanical equipment of different shapes and sizes, reducing installation time and dependence on welders.
Smart Images

Figure CN223063521U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of installation positioning brackets, in particular to an installation positioning bracket for mechanical and electrical engineering. Background Art
[0002] The installation positioning bracket for mechanical and electrical engineering is a basic structure to ensure the stable installation of mechanical and electrical equipment. It plays a crucial role in mechanical and electrical engineering. The design, material selection, manufacturing process and installation method of the bracket will directly affect the operation safety and efficiency of mechanical and electrical equipment. With the development of technology, the installation method of the bracket is also constantly progressing, gradually developing from traditional manual installation to automation and intelligence.
[0003] The existing installation positioning brackets for mechanical and electrical engineering usually use welding or a single assembly method for installation positioning. In terms of use, the welding method is time-consuming and requires a professional welder for operation, while the single assembly method cannot meet different installation requirements.
[0004] Therefore, in view of the situation that the existing installation positioning brackets for mechanical and electrical engineering waste installation time and affect efficiency due to welding, and the single assembly method cannot meet different installation requirements, an installation positioning bracket for mechanical and electrical engineering can be designed to achieve different assembly methods and faster installation. Content of the Utility Model
[0005] In order to overcome the problem that the existing installation positioning brackets for mechanical and electrical engineering usually use welding or a single assembly method for installation positioning. In terms of use, the welding method is time-consuming and requires a professional welder for operation, while the single assembly method cannot meet different installation requirements.
[0006] The technical solution of the utility model is: an installation positioning bracket for mechanical and electrical engineering; including an assembly housing and a fastening component; the fastening component is installed inside the assembly housing; the fastening component includes a pressing block screw; a hexagonal screw head of the pressing block screw is fixedly connected to the upper end of the pressing block screw; a rotating joint of the pressing block is rotatably connected to the lower end of the pressing block screw; a pressing block is installed at the lower end of the rotating joint of the pressing block; the pressing block and the assembly housing are arranged to be slidably connected; moving slides are installed at both the front and rear ends of the assembly housing; a moving slider is slidably connected inside the moving slide; two moving screws are in clearance fit inside the moving slider; a hand crank is installed at the front end of one of the moving screws.
[0007] Preferably, the assembly housing serves to support the device, and the fastening assembly provides two different positioning and assembly methods. The movable slide can be adjusted according to different sizes, so as to solve the problem that the existing installation positioning brackets for mechanical and electrical engineering usually adopt welding or a single assembly method for installation and positioning. In terms of use, the welding method is time-consuming and requires a professional welder for operation, while the single assembly method cannot meet different installation requirements.
[0008] Preferably, an upper and lower screw is arranged inside the movable slider, and two hexagonal nuts are in clearance fit on the upper and lower screw to adjust the up and down position.
[0009] Preferably, a gripper housing is installed at the lower end of the upper and lower screw. Two grippers are slidably connected inside the gripper housing. A double-headed screw is installed on the gripper, and gripper nuts are in clearance fit at both the front and rear ends of the double-headed screw to function as moving the gripper.
[0010] Preferably, a gripper hexagonal head is arranged at the upper end of the gripper. A gripper screw is fixedly connected to the lower end of the gripper hexagonal head. A gripper rotary joint is rotatably connected to the lower end of the gripper screw. A gripper extension arm is installed at the lower end of the gripper rotary joint to function as extending the gripper to meet mechanical and electrical installations of different sizes.
[0011] Preferably, a scale is installed on the assembly housing. A drawer is slidably connected inside one side end of the assembly housing. A drawer handle is installed at one side end of the drawer for distance measurement and tool storage.
[0012] Preferably, a plurality of sliding support legs are arranged at the lower end of the assembly housing. A support leg screw is installed at the upper end of the sliding support leg, and the support leg screw and the assembly housing are in clearance fit for height adjustment.
[0013] Preferably, a support plate is installed at the lower end of the sliding support leg. Two cylinders are installed at the upper end of the support plate. A connecting fixing sleeve is installed at the outer end of the cylinder, and the connecting fixing sleeve is rotatably connected to the sliding support leg to provide the kinetic energy for expansion and contraction.
[0014] The beneficial effects of the present utility model are as follows:
[0015] 1. A fastening assembly is provided to meet different assembly situations, a scale is used for distance measurement, and the sliding support legs are used to complete the expansion and contraction function, so as to solve the problem that the existing installation positioning brackets for mechanical and electrical engineering usually adopt welding or a single assembly method for installation and positioning. In terms of use, the welding method is time-consuming and requires a professional welder for operation, while the single assembly method cannot meet different installation requirements.
[0016] 2. During installation and positioning, first place the electromechanical equipment to be installed inside the assembly housing. Then, depending on the electromechanical equipment to be installed, use different positioning and installation methods. If it is square, rotate the hexagonal head of the pressing block screw to make the pressing block screw rotate downward. Through the rotating joint of the pressing block, tightly press the pressing block against the electromechanical equipment. Then, observe the distance through the scale for convenient installation. At the same time, the tool can be taken out by pulling the drawer handle to open the drawer for use. If it is a circular electromechanical equipment, rotate the hand crank to make the moving screw rotate and drive the moving slider to move. When it moves to the positions at both ends of the equipment, stop moving. Then loosen the two hexagonal nuts, move the upper and lower screws to make the gripper housing close to the equipment. Then, depending on the size of the equipment, decide whether to rotate the hexagonal head of the gripper to make the gripper screw rotate to let the rotating joint of the gripper push the extension arm of the gripper downward. Finally, loosen the nut at the gripper, rotate the gripper to grip the equipment, and then tighten the nut at the gripper again, which can meet the assembly methods of two different types of equipment.
[0017] 3. When the height of the device needs to be adjusted, the control cylinder can be moved up or down to drive the sliding support leg to move up and down through the connecting fixed sleeve. When the sliding support leg needs to be disassembled, the support leg screw on the sliding support leg can be unscrewed from the assembly housing by rotating the sliding support leg, so that the height of the equipment can be adjusted to meet different installation conditions. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 The figure shows a three-dimensional structural schematic diagram of an electromechanical engineering installation positioning bracket of the present utility model;
[0019] Figure 2 The figure shows a three-dimensional structural schematic diagram of the pressing block of an electromechanical engineering installation positioning bracket of the present utility model;
[0020] Figure 3 The figure shows a three-dimensional structural schematic diagram of the moving slideway of an electromechanical engineering installation positioning bracket of the present utility model;
[0021] Figure 4 The figure shows a three-dimensional structural schematic diagram of the gripper housing of an electromechanical engineering installation positioning bracket of the present utility model;
[0022] Figure 5 The figure shows a sectional three-dimensional structural schematic diagram of the gripper housing of an electromechanical engineering installation positioning bracket of the present utility model;
[0023] Figure 6 The figure shows a three-dimensional structural schematic diagram of the drawer handle of an electromechanical engineering installation positioning bracket of the present utility model;
[0024] Figure 7The figure shows a three-dimensional structural schematic diagram of the sliding support leg of a mechanical and electrical engineering installation positioning bracket of the present utility model.
[0025] Explanation of reference numerals: 1, assembly housing; 201, pressing block screw; 202, hexagonal screw head of pressing block screw; 203, pressing block rotary joint; 204, pressing block; 205, moving slideway; 206, moving slider; 207, moving screw; 208, hand crank; 209, upper and lower screw; 210, hexagonal nut; 211, gripper housing; 212, gripper; 213, double-headed screw; 214, nut at gripper; 215, hexagonal screw head of gripper; 216, gripper screw; 217, gripper rotary joint; 218, gripper extension arm; 3, scale; 4, drawer; 5, drawer handle; 6, sliding support leg; 7, support leg screw; 8, support disk; 9, cylinder; 10, connecting and fixing sleeve. Specific embodiments
[0026] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments.
[0027] Please refer to Figures 1 - 7 , the present utility model provides an embodiment: including an assembly housing 1 and a fastening assembly; a fastening assembly is installed inside the assembly housing 1; a scale 3 is installed on the assembly housing 1; a drawer 4 is slidably connected inside one end of the assembly housing 1; a drawer handle 5 is installed at one end of the drawer 4; a plurality of sliding support legs 6 are arranged at the lower end of the assembly housing 1; a support leg screw 7 is installed at the upper end of the sliding support leg 6; the support leg screw 7 and the assembly housing 1 are set to have a clearance fit; a support disk 8 is installed at the lower end of the sliding support leg 6; two cylinders 9 are installed at the upper end of the support disk 8; a connecting and fixing sleeve 10 is installed at the outer end of the cylinder 9; and the connecting and fixing sleeve 10 is set to be rotatably connected with the sliding support leg 6.
[0028] Please refer to Figures 2 - 5, in this embodiment, the fastening assembly includes a pressing block screw 201; a hexagonal head of the pressing block screw 202 is fixedly connected to the upper end of the pressing block screw 201; a rotary joint of the pressing block 203 is rotatably connected to the lower end of the pressing block screw 201; a pressing block 204 is installed at the lower end of the rotary joint of the pressing block 203; the pressing block 204 and the assembly housing 1 are arranged to be slidably connected; moving slideways 205 are installed at both the front and rear ends of the assembly housing 1; a moving slider 206 is slidably connected inside the moving slideway 205; two moving screws 207 are in clearance fit inside the moving slider 206; a hand crank 208 is installed at the front end of one of the moving screws 207; an up-and-down screw 209 is arranged inside the moving slider 206; two hexagonal nuts 210 are in clearance fit on the up-and-down screw 209; a gripper housing 211 is installed at the lower end of the up-and-down screw 209; two grippers 212 are slidably connected inside the gripper housing 211; a double-headed screw 213 is installed on the gripper 212; gripper nuts 214 are in clearance fit at both the front and rear ends of the double-headed screw 213; a hexagonal head of the gripper 215 is arranged at the upper end of the gripper 212; a gripper screw 216 is fixedly connected to the lower end of the hexagonal head of the gripper 215; a rotary joint of the gripper 217 is rotatably connected to the lower end of the gripper screw 216; a gripper extension arm 218 is installed at the lower end of the rotary joint of the gripper 217.
[0029] First, place the electromechanical equipment to be installed inside the assembly housing 1, and then use different positioning and installation methods according to the electromechanical equipment to be installed. If it is square, the hexagonal head of the pressing block screw 202 can be twisted to make the pressing block screw 201 rotate downward, and the pressing block 204 is tightly pressed against the electromechanical equipment through the rotary joint of the pressing block 203. Then, observe the distance through the scale 3 for convenient installation. At the same time, the drawer 4 can be pulled open through the drawer handle 5 to take out tools for use. If it is a circular electromechanical equipment, the hand crank 208 can be rotated to make the moving screw 207 rotate to drive the moving slider 206 to move. When it moves to the positions at both sides of the head of the equipment and stops moving, then loosen the two hexagonal nuts 210, move the up-and-down screw 209 to make the gripper housing 211 close to the equipment, and then decide whether it is necessary to twist the hexagonal head of the gripper 215 to make the gripper screw 216 rotate to let the rotary joint of the gripper 217 push the gripper extension arm 218 downward according to the size of the equipment. Finally, loosen the gripper nut 214, rotate the gripper 212 to grip the equipment, and then re-tighten the gripper nut 214.
[0030] When it is necessary to adjust the height of the device, the cylinder 9 can be controlled to move upward or downward, so that the connecting and fixing sleeve 10 drives the sliding support leg 6 to move up and down. When it is necessary to disassemble the sliding support leg 6, the sliding support leg 6 can be rotated to screw the support leg screw 7 on the sliding support leg 6 off the assembly housing 1.
[0031] Through the above steps, the fastening component is set to meet different assembly situations; the distance is measured by the scale 3; the telescopic function is completed by the sliding support leg 6; to solve the problem that the existing installation positioning brackets for mechanical and electrical engineering usually adopt welding or a single assembly method for installation and positioning. In terms of use, the welding method is time-consuming and requires a professional welder for operation, while the single assembly method cannot meet different installation requirements.
Claims
1. An electromechanical engineering installation positioning bracket; comprising an assembly housing (1); characterized in that: It also includes a fastening assembly; the fastening assembly is installed inside the assembly housing (1); the fastening assembly includes a pressing block screw (201); a hexagonal head of the pressing block screw (202) is fixedly connected to the upper end of the pressing block screw (201); a rotating joint of the pressing block (203) is rotatably connected to the lower end of the pressing block screw (201); a pressing block (204) is installed at the lower end of the rotating joint of the pressing block (203); the pressing block (204) and the assembly housing (1) are arranged to be slidably connected; moving slideways (205) are installed at both the front and rear ends of the assembly housing (1); a moving slider (206) is slidably connected inside the moving slideway (205); two moving screws (207) are in clearance fit inside the moving slider (206); a hand crank (208) is installed at the front end of the moving screw (207) on one side.
2. An electromechanical engineering installation positioning bracket according to claim 1; characterized in that: An up-and-down screw (209) is arranged inside the moving slider (206); two hexagonal nuts (210) are in clearance fit on the up-and-down screw (209).
3. An electromechanical engineering installation positioning bracket according to claim 2; characterized in that: A gripper housing (211) is installed at the lower end of the up-and-down screw (209); two grippers (212) are slidably connected inside the gripper housing (211); a double-headed screw (213) is installed on the gripper (212); gripper nuts (214) are in clearance fit at both the front and rear ends of the double-headed screw (213).
4. An electromechanical engineering installation positioning bracket according to claim 3; characterized in that: A hexagonal head of the gripper (215) is arranged at the upper end of the gripper (212); a gripper screw (216) is fixedly connected to the lower end of the hexagonal head of the gripper (215); a rotating joint of the gripper (217) is rotatably connected to the lower end of the gripper screw (216); A gripper extension arm (218) is installed at the lower end of the rotating joint of the gripper (217).
5. An electromechanical engineering installation positioning bracket according to claim 1; characterized in that: A scale (3) is installed on the assembly housing (1); a drawer (4) is slidably connected inside one side end of the assembly housing (1); A drawer handle (5) is installed at one side end of the drawer (4).
6. An electromechanical engineering installation positioning bracket according to claim 1; characterized in that: A plurality of sliding support legs (6) are arranged at the lower end of the assembly housing (1); a support leg screw (7) is installed at the upper end of the sliding support leg (6); the support leg screw (7) and the assembly housing (1) are arranged to be in clearance fit.
7. An electromechanical engineering installation positioning bracket according to claim 6; characterized in that: A support disc (8) is installed at the lower end of the sliding support leg (6); two cylinders (9) are installed at the upper end of the support disc (8); a connecting fixed sleeve (10) is installed at the outer end of the cylinder (9); and the connecting fixed sleeve (10) and the sliding support leg (6) are arranged to be rotatably connected.