Suspension device for power equipment
By designing components such as binding posts and guide wheel rods in the suspension device of the power equipment, the problem of excessive stress points during the lifting process of existing suspension devices is solved, and the safety of equipment usage is improved and the stability of the lifting process is achieved.
Patent Information
- Application Number
- CN202421949835.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-08-13
AI Technical Summary
The existing power equipment suspension devices are too strong during the lifting process, which leads to difficult to move stably, affecting the safety of equipment use.
A suspension device for power equipment is designed. By setting a binding post-binding steel cable on the top side of the mounting base, and using the cooperation of guide wheel rods, output motors, meshing gear sets and reels, the lifting mechanism can be lifted and lowered freely, achieving the effect of balanced movement.
Through the design of this suspension device, the safety of equipment usage is improved and the stability and safety of the lifting process are ensured.
Smart Images

Figure CN222935066U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of power equipment, in particular to a suspension device for power equipment. Background Art
[0002] Power equipment mainly includes two categories: power generation equipment and power supply equipment. Power generation equipment mainly includes power station boilers, steam turbines, gas turbines, water turbines, generators, transformers, etc. Power supply equipment mainly includes transmission lines, instrument transformers, contactors, etc. of various voltage levels. There are many power equipment in the power system. According to their different functions in operation, they are usually divided into primary electrical equipment and secondary electrical equipment.
[0003] When the existing suspension device is in use, for example, the application number CN202111051258.0 relates to the technical field of power equipment installation, and discloses a suspension device for power equipment installation, including a hanging basket assembly. A shock-absorbing spring is installed inside the hanging basket assembly, a baffle assembly is installed at the top of the shock-absorbing spring, and a telescopic assembly is installed on one side of the baffle assembly. The telescopic assembly includes a connection box, an outer sleeve and a toothed plate. The outer sleeve is installed inside the connection box, and the toothed plate is sleeved inside the outer sleeve; by setting a handle, the first bevel gear can be driven to rotate, and the first bevel gear will mesh with the second bevel gear. When the second bevel gear rotates, the lead screw can be rotated; however, in the above technology, the suspension rope is mainly bound and hoisted in the center, and this stress point is too strong, and it is not easy to move stably during the hoisting process. Therefore, the utility model proposes a suspension device for power equipment to solve the problems existing in the prior art. Summary of the Utility Model
[0004] In view of the above problems, the utility model proposes a suspension device for power equipment. The suspension device for power equipment mainly uses a binding plug column arranged on the top side of the carrying base to bind and wind a steel cable on the output end of the self-propelled component. Through the common cooperation of the guide wheel rod, the output motor, the meshing gear set and the drum, the lifting mechanism can be lifted and lowered freely as needed. Since the meshing gear set and the drum are symmetrically distributed about the central axis of the output motor, the effect of balanced movement can be achieved during operation, thereby improving the safety of equipment use.
[0005] To achieve the purpose of the utility model, the utility model is realized through the following technical solutions: A suspension device for power equipment, including a gantry member and a lifting mechanism. A self-propelled component is arranged on the gantry member in a rolling and sleeved manner, and a lifting mechanism connected in a winding manner is arranged at the output end of the self-propelled component;
[0006] The lifting mechanism includes a steel cable, a binding plug, side plates, a carrying base, a hydraulic cylinder, a hydraulic telescopic arm, an electric hinge seat, and a positioning flap. The steel cable is wound around the output end of the self-propelled component. One end of the steel cable is fixedly connected to a side plate through a binding plug. A carrying base is arranged below the side plate. A sleeved hydraulic cylinder is arranged on the inner side of the edge of the carrying base, and a hydraulic telescopic arm is arranged at the output end of the hydraulic cylinder. Both ends of the hydraulic telescopic arm are hinged to a positioning flap through an electric hinge seat.
[0007] As a preferred embodiment of the present invention, the electric hinge seat and the positioning flap are symmetrically distributed with respect to the central axis of the hydraulic telescopic arm, and the positioning flap is in a folded strip shape structure.
[0008] As a preferred embodiment of the present invention, the gantry member includes a bottom base, side plates, pneumatic pressure reducing pads, moving wheels, a main frame, side frames, and a gantry beam. Side plates are bolted to the sides of the bottom base, and pneumatic pressure reducing pads are arranged below both ends of the side plates. Moving wheels are arranged below both ends of the bottom base.
[0009] As a preferred embodiment of the present invention, a main frame is bolted to the top side of the bottom base, side frames are plugged and connected to the sides of the main frame, and a gantry beam is bolted to the top side of the main frame.
[0010] As a preferred embodiment of the present invention, the self-propelled component includes a wheel plate, a drive chassis, power wheels, an upper plate, a lower pod, a folded pod, a guide wheel rod, an output motor, a meshing gear set, and a drum. The power wheels roll on the gantry beam. The output end of the drive chassis is connected through the wheel plate. An upper plate is bolted to the top side of the wheel plate, and a lower pod is bolted below the wheel plate.
[0011] As a preferred embodiment of the present invention, a folded pod is arranged below the side of the lower pod, guide wheel rods are arranged inside both ends of the folded pod, a meshing gear set connected to the output end of the output motor is arranged at the inner end of the folded pod, and a drum is arranged at the output end of the meshing gear set.
[0012] The beneficial effects of the present invention are as follows:
[0013] The present invention mainly utilizes the binding plug arranged on the top side of the carrying base to bind the steel cable wound around the output end of the self-propelled component. Through the common cooperation of the guide wheel rod, the output motor, the meshing gear set, and the drum, the lifting mechanism can be lifted and lowered freely as needed. Since the meshing gear set and the drum are symmetrically distributed with respect to the central axis of the output motor, a balanced movement effect can be achieved during operation, thereby improving the safety of equipment use. Description of the Drawings
[0014] Figure 1 Schematic perspective view of the three-dimensional structure of the present utility model;
[0015] Figure 2 Schematic perspective view of the three-dimensional structure of the self-propelled component of the present utility model;
[0016] Figure 3 Schematic perspective view of the three-dimensional structure of the lifting mechanism of the present utility model.
[0017] Wherein: 1, gantry member; 101, bottom base; 102, side plate; 103, pneumatic pressure reducing pad; 104, moving wheel; 105, main frame; 106, side frame; 107, gantry beam; 2, self-propelled component; 201, wheel plate; 202, drive machine box; 203, power wheel; 204, upper plate; 205, lower pod; 206, folded pod; 207, guide wheel rod; 208, output motor; 209, meshing gear set; 2010, winding drum; 3, lifting mechanism; 301, steel cable; 302, binding plug; 303, side plate; 304, carrying base; 305, hydraulic cylinder; 306, hydraulic telescopic arm; 307, electric hinge seat; 308, positioning flap. Detailed Description of the Preferred Embodiment
[0018] In order to deepen the understanding of the present utility model, the following will further elaborate on the present utility model in combination with embodiments. These embodiments are only used to explain the present utility model and do not constitute a limitation to the protection scope of the present utility model.
[0019] According to Figures 1-3 As shown, this embodiment proposes a suspension device for power equipment, including a gantry member 1 and a lifting mechanism 3. A self-propelled component 2 is arranged on the gantry member 1 in a rolling and sleeved manner, and a lifting mechanism 3 is arranged at the output end of the self-propelled component 2 in a winding and connecting manner;
[0020] The lifting mechanism 3 includes a steel cable 301, a binding plug 302, a side plate 303, a carrying base 304, a hydraulic cylinder 305, a hydraulic telescopic arm 306, an electric hinge seat 307 and a positioning flap 308. The steel cable 301 is wound around the output end of the self-propelled component 2. One end of the steel cable 301 is bound and connected to the side plate 303 through the binding plug 302. A carrying base 304 is arranged below the side plate 303. A hydraulic cylinder 305 is arranged on the inner side of the carrying base 304 in a sleeved manner, and a hydraulic telescopic arm 306 is arranged at the output end of the hydraulic cylinder 305. The two ends of the hydraulic telescopic arm 306 are hinge-connected to the positioning flap 308 through the electric hinge seat 307.
[0021] The electric hinge seat 307 and the positioning flap 308 are symmetrically distributed with respect to the central axis of the hydraulic telescopic arm 306, and the positioning flap 308 is in a folded strip-shaped structure.
[0022] In this embodiment, when a hoisting device is required, the device is placed on the carrying base 304, and the hydraulic cylinder 305 on the side plate 303 is used to output power to drive the output end to operate. After the hydraulic cylinder 305 outputs power to expand and contract, the hydraulic telescopic arm 306 is adjusted to a suitable position so that the positioning flap 308 clamps and positions the product under the combined operation of the hydraulic telescopic arm 306 and the electric hinge seat 307.
[0023] The gantry member 1 includes a bottom base 101, side plates 102, pneumatic pressure-reducing pads 103, moving wheels 104, a main frame 105, side frames 106, and a gantry beam 107. The side plates 102 are bolted to the sides of the bottom base 101, and pneumatic pressure-reducing pads 103 are provided below both ends of the side plates 102. Moving wheels 104 are provided below both ends of the bottom base 101.
[0024] In this embodiment, after the equipment is installed, the moving wheels 104 below both ends of the bottom base 101 are used to move it to a suitable position. After the moving wheels 104 move to a suitable position, the pneumatic pressure-reducing pads 103 on the side plates 102 output power to drive the output end to operate to achieve the effect of supporting at the processing location.
[0025] The main frame 105 is bolted to the top side of the bottom base 101, and the side frames 106 are plug-connected to the sides of the main frame 105. The gantry beam 107 is bolted to the top side of the main frame 105.
[0026] In this embodiment, during use, the main frame 105 is bolted to the top side of the bottom base 101. After installation, the plug connection of the side frames 106 is used to achieve a reinforcement effect, and the gantry beam 107 is mounted on the top side of the main frame 105 to set the self-propelled component 2 of the installation lifting mechanism 3.
[0027] The self-propelled component 2 includes a wheel plate 201, a drive machine box 202, a power wheel 203, an upper plate 204, a lower nacelle 205, a folded nacelle 206, a guide wheel rod 207, an output motor 208, a meshing gear set 209, and a reel 2010. The power wheel 203 rolls on the gantry beam 107. The wheel plate 201 is connected to the output end of the drive machine box 202 through the wheel plate 201. The upper plate 204 is bolted to the top side of the wheel plate 201, and the lower nacelle 205 is bolted below the wheel plate 201.
[0028] In this embodiment, when lateral movement is required, the drive machine box 202 outputs power to drive the output end to operate, so that the power wheel 203 on the inner side of the wheel plate 201 moves to a suitable position. Then, with the mutual cooperation of the self-propelled component 2 and the lifting mechanism 3, the product is moved to a suitable position to facilitate effective installation and setting by the user.
[0029] A folded cabin 206 is provided below the side of the lower pod 205, and guide wheel rods 207 are provided on the inner sides of both ends of the folded cabin 206. A meshing gear set 209 connecting to the output end of the output motor 208 is provided at the inner end of the folded cabin 206, and a winding drum 2010 is provided at the output end of the meshing gear set 209.
[0030] In this embodiment, when it is necessary to hoist a product, the output end of the output motor 208 outputs power to drive the output end to operate. After the output end of the output motor 208 operates, the meshing gear set 209 is driven to operate in a meshing manner to drive the winding drum 2010 to rotate, so that under the cooperation of the steel cable 301, the binding plug 302, and the side plate 303, the lifting mechanism 3 is adjusted to a suitable height.
[0031] The working principle of this suspension device for electrical equipment is as follows: When in use, the main frame 105 is bolted to the top side of the bottom base 101. After installation, the side frame 106 is inserted to achieve a reinforcement effect, and the gantry beam 107 is mounted on the top side of the main frame 105 to set the self-propelled component 2 for installing the lifting mechanism 3. When the equipment is installed, the mobile wheels 104 under both ends of the bottom base 101 are used to move to a suitable position. After the mobile wheels 104 move to a suitable position, the pneumatic pressure reducing pad 103 on the side plate 102 outputs power to drive the output end to operate to achieve the effect of supporting at the processing site. When it is necessary to hoist the equipment, the equipment is placed on the carrying base 304, and the hydraulic cylinder 305 on the side plate 303 outputs power to drive the output end to operate. When the hydraulic cylinder 305 outputs power to expand and contract, the hydraulic telescopic arm 306 is adjusted to a suitable position, so that under the combined operation of the hydraulic telescopic arm 306 and the electric articulated seat 307, the positioning flap 308 clamps and positions the product. When it is necessary to hoist a product, the output end of the output motor 208 outputs power to drive the output end to operate. After the output end of the output motor 208 operates, the meshing gear set 209 is driven to operate in a meshing manner to drive the winding drum 2010 to rotate, so that under the cooperation of the steel cable 301, the binding plug 302, and the side plate 303, the lifting mechanism 3 is adjusted to a suitable height. When it is necessary to move horizontally, the drive chassis 202 outputs power to drive the output end to operate, so that the power wheels 203 on the inner side of the wheel plate 201 move to a suitable position. Then, under the cooperation of the self-propelled component 2 and the lifting mechanism 3, the product is moved to a suitable position to facilitate the user to perform effective installation and setting.
[0032] The basic principles, main features and advantages of the present utility model have been shown and described above. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and all these changes and improvements fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.
Claims
1. A suspension device for electric power equipment, comprising a gantry member (1) and a lifting mechanism (3), characterized in that: The gantry component (1) is provided with a self-propelled component (2) in rolling sleeve connection, and the output end of the self-propelled component (2) is provided with a lifting mechanism (3) in wrap-around connection; The lifting mechanism (3) includes a steel cable (301), a binding column (302), a side plate (303), a carrying base (304), a hydraulic cylinder (305), a hydraulic telescopic arm (306), an electric hinge seat (307) and a positioning folding plate (308). The steel cable (301) is wound around the output end of the self-propelled component (2). One end of the steel cable (301) is bound and connected to the side plate (303) through the binding column (302). A carrying base (304) is arranged below the side plate (303). A sleeve-connected hydraulic cylinder (305) is arranged on the inner side of the carrying base (304). The output end of the hydraulic cylinder (305) is provided with such a hydraulic telescopic arm (306). Both ends of the hydraulic telescopic arm (306) are hingedly connected to the positioning folding plate (308) through the electric hinge seat (307).
2. A suspension device for electric power equipment according to claim 1, characterized in that: The electric articulated seat (307) and the positioning folding piece (308) are symmetrically distributed about the central axis of the hydraulic telescopic arm (306), and the positioning folding piece (308) is in the form of a folded strip.
3. A suspension device for electric power equipment according to claim 1, characterized in that: The gantry component (1) comprises a bottom base (101), a side plate (102), a pneumatic decompression pad (103), a moving wheel (104), a main frame (105), a side frame (106) and a gantry beam (107); a side plate (102) assembled with bolts is arranged on the side of the bottom base (101), and pneumatic decompression pads (103) are arranged below both ends of the side plate (102); and moving wheels (104) are arranged below both ends of the bottom base (101).
4. A suspension device for electric power equipment according to claim 3, characterized in that: A main frame (105) assembled with bolts is arranged on the top side of the bottom base (101), and a side frame (106) connected with plugs is arranged on the side of the main frame (105), and a gantry beam (107) assembled with bolts is arranged on the top side of the main frame (105).
5. A suspension device for electric power equipment according to claim 3, characterized in that: The self-propelled component (2) comprises a wheel plate (201), a driving chassis (202), a power wheel (203), an upper plate (204), a lower pod (205), a folding cabin (206), a guide wheel rod (207), an output motor (208), a meshing gear set (209) and a reel (2010); the power wheel (203) rolls on the gantry beam (107); the wheel plate (201) penetrates the wheel plate (201) and is connected to the output end of the driving chassis (202); the upper plate (204) assembled with bolts is arranged on the top side of the wheel plate (201); and the lower pod (205) assembled with bolts is arranged below the wheel plate (201).
6. A suspension device for electric power equipment according to claim 5, characterized in that: A folding cabin (206) is arranged below the side of the lower pod (205), and guide wheel rods (207) are arranged inside both ends of the folding cabin (206), a meshing gear set (209) connected to the output end of the output motor (208) is arranged at the inner end of the folding cabin (206), and a reel (2010) is arranged at the output end of the meshing gear set (209).
Citation Information
Patent Citations
Suspension device for electrical equipment installation
CN113816252A