Mechanical electrical construction device
By using the lifting platform, clamping components, and flared pipes of the mechanical and electrical construction equipment, the problem of high-temperature gas injury during welding was solved, the stable control of the welding gun position and the safe fixing of cables were achieved, and the construction safety was improved.
Patent Information
- Application Number
- CN202511604739.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-05
- Publication Date
- 2026-02-24
AI Technical Summary
When workers use welding guns to perform welding work, the high-temperature gases produced during welding can easily injure them.
A mechanical and electrical construction device was designed, including an adjustment mechanism, a processing mechanism, and a clamping assembly. By setting up a lifting platform, a clamping assembly, and a flared pipe, it replaces the worker's hand-held welding gun, controls the position and angle of the welding gun, isolates high-temperature gas, and a fixing assembly ensures equipment stability. Multiple limit plates are set to fix the cables.
It effectively prevents workers from being injured by high-temperature gases, improves the stability of welding gun position control, reduces the risk of cables affecting work, and ensures construction safety.
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Figure CN121556658A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of mechanical and electrical construction equipment technology, specifically to a mechanical and electrical construction equipment. Background Technology
[0002] Electrical engineering is a general term encompassing disciplines or engineering fields such as the production, transmission, distribution, use of electrical energy, and the manufacturing of electrical equipment. It is a science that uses electrical energy, electrical equipment, and electrical technology to create, maintain, and improve a defined space and environment. It covers three aspects: the conversion, utilization, and research of electrical energy, including basic theories, applied technologies, and facilities and equipment.
[0003] A utility model patent with publication number CN219989257U discloses a mechanical and electrical construction device, including a base box. An extension frame is fixedly connected to the upper surface of the base box, and four grooves are formed on the lower surface of the base box. Two connecting blocks and two springs are fixedly connected to the inner wall of the base box. A movable frame is slidably connected to the outer surface of the two connecting blocks. A moving device is installed inside the base box, and an anti-tilt device is installed on the outer surface of the base box. The movement of the movable frame drives four universal wheels to move into the interior of the base box through the grooves, causing the universal wheels to move away from the ground and allowing the anti-slip plate to contact the ground for support. This device makes it more secure for workers to enter the construction device, ensuring their safety. However, when workers use welding torches for welding, the high-temperature gases during welding can easily injure them. Summary of the Invention
[0004] To overcome the problem that high-temperature gases during welding can easily injure workers when they use handheld welding guns, this invention provides a mechanical and electrical construction device, including a base.
[0005] An adjustment mechanism is installed on the outside of the base. The adjustment mechanism includes a second push rod, a lifting platform is installed on the outside of the second push rod, and a platform is installed on the top of the lifting platform. The second push rod and the lifting platform are used to control the position of the platform in the vertical and horizontal directions.
[0006] A lifting rod, which is installed above the adjusting mechanism;
[0007] The processing mechanism is connected to the telescopic end of the lifting rod. The processing mechanism includes a ring, a fourth push rod is installed on the outside of the ring, and a clamping assembly is installed on the outside of the fourth push rod. The fourth push rod is used to control the position of the clamping assembly in the horizontal direction.
[0008] Preferably, the adjustment mechanism further includes:
[0009] Casters are mounted on the outside of the base;
[0010] The first groove is formed inside the base;
[0011] A first push rod is installed inside a first groove, and a fixing component is installed on the outside of the first push rod.
[0012] Preferably, the adjustment mechanism further includes:
[0013] The second groove is formed inside the base, and the second push rod is installed inside the second groove;
[0014] A fence is installed above the platform, and a lifting rod is installed above the fence.
[0015] Preferably, the fixing component includes:
[0016] A movable block is connected to the telescopic end of the first push rod, and a fixing groove is provided inside the movable block;
[0017] The third push rod is installed inside the fixing groove;
[0018] A connecting cylinder, which is connected to the telescopic end of the third push rod;
[0019] An electric push plate, which is installed inside the connecting cylinder;
[0020] A connecting rod, which is installed at the bottom of the connecting cylinder;
[0021] A base plate is installed at the bottom of the connecting rod, and a gasket is installed at the bottom of the base plate.
[0022] Preferably, the processing mechanism further includes:
[0023] A platform, which is connected to the telescopic end of the lifting rod;
[0024] A motor housing, which is mounted on the outside of the platform, and a motor is installed inside the motor housing;
[0025] The telescopic rod is connected to the output end of the motor and to a circular ring.
[0026] Preferably, the processing mechanism further includes:
[0027] An adjusting element, which is mounted on the outside of the ring;
[0028] A telescopic pipe, which is installed on the outside of the ring and connected to an adjusting component;
[0029] A flared pipe, which is connected to a telescopic pipe, and an anti-collision strip is installed on the outside of the flared pipe;
[0030] A connecting fitting is installed on the outside of the flared pipe.
[0031] Preferably, the processing mechanism further includes:
[0032] The fifth push rod is mounted on the outside of the ring;
[0033] The outer ring is connected to the telescopic end of the fifth push rod;
[0034] A positioning plate, which is installed inside the ring;
[0035] A connecting box, which is installed on the outside of the ring.
[0036] Preferably, the clamping assembly includes:
[0037] An adjusting rod, which is mounted on the outside of the fourth push rod;
[0038] A clamping frame is connected to an adjusting rod. A welding gun is installed inside the clamping frame, and a cable is installed at the bottom of the welding gun.
[0039] Preferably, the clamping assembly further includes:
[0040] A connecting plate, which is installed on the outside of the adjusting rod;
[0041] A connecting rod, which is mounted on the outside of the connecting plate;
[0042] The first limiting plate is connected to the connecting rod and is installed on the outside of the cable.
[0043] The second limiting plate is connected to the ring and is installed on the outside of the cable.
[0044] This invention provides a mechanical and electrical construction device. It has the following beneficial effects:
[0045] 1. This mechanical and electrical construction device, through the setting of a processing mechanism and clamping components, places the welding gun in a telescopic pipe and flared pipe that can move and adjust its angle in both horizontal and vertical directions, thus replacing the worker's manual welding gun and preventing injury from high-temperature gases. It also controls the position of the welding gun's cable to avoid excessive cables being pre-installed on the worktable, which would interfere with the worker's work. In existing mechanical and electrical construction devices, when workers hold the welding gun, the high-temperature gases during welding can easily injure them.
[0046] 2. This mechanical electrical construction device adjusts the horizontal and vertical positions of the platform by setting up an adjustment mechanism and fixing components. As the equipment moves to the designated position, the position of the base is fixed by eight fixing components around the base. Electric push plates with adhesive strips are installed in each pair of adjacent fixing components, allowing workers to easily affix colored warning strips to the outside of adjacent adhesive strips to warn pedestrians.
[0047] 3. This mechanical electrical construction device, through its processing mechanism, places the welding torch within a telescopic pipe and a flared pipe, replacing the conventional method of workers holding the welding torch by hand, thus improving the stability of torch position control. The flared pipe outside the welding torch effectively isolates the welding flame and high-temperature gases from the worker, reducing the risk of injury. Multiple ventilation openings within the flared pipe, along with connecting fittings consisting of inclined and horizontal pipes, combined with an outer ring and rubber plate capable of reciprocating within the flared pipe, promote the horizontal discharge of high-temperature gases from the flared and telescopic pipes, further preventing worker injury from these gases.
[0048] 4. This mechanical electrical construction device, through the installation of clamping components, replaces manual fixation of the welding gun's position with a clamping frame. Under the control of the processing mechanism, the position and angle of the welding gun are adjusted, making the welding gun's movement path more precise. Multiple first limiting plates clamp and fix the cable at multiple points, preventing the cable from moving to the welding gun nozzle and causing danger during the welding gun's movement. By leaving a cable length between the second limiting plate and the first limiting plate near the second limiting plate, it facilitates cable movement within telescopic pipes and flared pipes without affecting the length of cables outside the ring, thus reducing the impact on workers' work caused by cables scattered across the platform. Attached Figure Description
[0049] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0050] Figure 2 This is a structural schematic diagram from another perspective of the present invention;
[0051] Figure 3 This is a schematic diagram of the adjustment mechanism of the present invention;
[0052] Figure 4 For the present invention Figure 3 Schematic diagram of the structure at point A;
[0053] Figure 5 This is a structural schematic diagram of the adjustment mechanism of the present invention from another perspective;
[0054] Figure 6 This is a schematic diagram of the structure of the fixing component of the present invention;
[0055] Figure 7 This is a schematic diagram of the structure of the test stand of the present invention;
[0056] Figure 8 This is a schematic diagram of the processing mechanism of the present invention;
[0057] Figure 9 This is a schematic diagram of the structure of the clamping assembly of the present invention;
[0058] Figure 10 This is a schematic diagram of the processing mechanism of the present invention from another perspective.
[0059] In the diagram: 1. Base; 2. Adjustment mechanism; 201. Caster wheel; 202. First groove; 203. First push rod; 204. Fixing component; 2041. Moving block; 2042. Fixing groove; 2043. Third push rod; 2044. Connecting cylinder; 2045. Connecting rod; 2046. Base plate; 2047. Electric push plate; 205. Platform; 206. Fence; 207. Second groove; 208. Second push rod; 209. Lifting platform; 3. Lifting rod; 4. Processing mechanism; 401. Frame; 402. Motor box; 403. Telescopic rod; 404. Ring; 405. Adjusting component; 406. Telescopic pipe; 407. Fourth push rod; 408. Clamping assembly; 4081. Adjusting rod; 4082. Clamping frame; 4083. Welding gun; 4084. Connecting plate; 4085. Connecting rod; 4086. First limiting plate; 4087. Second limiting plate; 4088. Cable; 409. Flared pipe; 410. Anti-collision strip; 411. Connecting fitting; 412. Fifth push rod; 413. Outer ring; 414. Positioning plate; 415. Connecting box. Detailed Implementation
[0060] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and design various embodiments with various modifications suitable for a particular purpose.
[0061] like Figures 1-10 As shown, the present invention provides a technical solution including a base 1;
[0062] Adjustment mechanism 2 is installed on the outside of base 1. Adjustment mechanism 2 includes a second push rod 208, which is an electric push rod. A lifting platform 209 is installed on the outside of the second push rod 208. The lifting platform 209 is composed of a sliding plate and an electric push rod in the vertical direction. A platform 205 is installed on the top of the lifting platform 209. The platform 205 is connected to the electric push rod in the lifting platform 209. The second push rod 208 and the lifting platform 209 are used to control the position of the platform 205 in the vertical and horizontal directions. A sliding block is installed at the bottom of the platform 205. The sliding block is slidably connected to the inside of base 1.
[0063] The lifting rod 3 is an electric push rod, and it is installed above the adjusting mechanism 2.
[0064] The processing mechanism 4 is connected to the telescopic end of the lifting rod 3. The processing mechanism 4 includes a ring 404. A fourth push rod 407 is installed on the outside of the ring 404. The fourth push rod 407 is set as an electric push rod. A clamping assembly 408 is installed on the outside of the fourth push rod 407. The fourth push rod 407 is used to control the position of the clamping assembly 408 in the horizontal direction.
[0065] Before using the equipment, move it to the construction position. The worker stands on the platform 205 and activates the adjustment mechanism 2 to adjust the position of the platform 205 in the vertical and horizontal directions. Then, adjust the processing mechanism 4 to perform welding processing on the designated area.
[0066] Adjustment mechanism 2 also includes:
[0067] Caster wheel 201 is mounted on the outside of base 1;
[0068] The first groove 202, four first grooves 202 are formed inside the base 1;
[0069] The first push rod 203 is configured as an electric push rod. The first push rod 203 is installed inside the first groove 202, and a fixing component 204 is installed on the outside of the first push rod 203.
[0070] The second groove 207, there are two second grooves 207, the second groove 207 is opened inside the base 1, and the second push rod 208 is installed inside the second groove 207;
[0071] Fence 206 is installed above platform 205, and lifting rod 3 is installed above fence 206.
[0072] As the device moves to the designated position, the first push rod 203 is activated, which drives the fixing component 204 to move away from the base 1. Then, the fixing component 204 is adjusted to fix the position of the device.
[0073] Based on the welding position, adjust the stroke of the second push rod 208 and the electric push rod in the vertical direction of the lifting platform 209, thereby adjusting the position of the platform 205 in the horizontal and vertical directions.
[0074] Fixing component 204 includes:
[0075] The movable block 2041 is connected to the telescopic end of the first push rod 203, and a fixing groove 2042 is provided inside the movable block 2041.
[0076] The third push rod 2043 is an electric push rod and is installed inside the fixing slot 2042.
[0077] Connecting cylinder 2044 is connected to the telescopic end of the third push rod 2043;
[0078] Electric push plate 2047 is installed inside the connecting cylinder 2044, and an adhesive strip is provided on the outside of the electric push plate 2047.
[0079] Connecting rod 2045 is installed at the bottom of connecting cylinder 2044;
[0080] The base plate 2046 is installed at the bottom of the connecting rod 2045. A gasket is installed at the bottom of the base plate 2046, and multiple gaskets are provided.
[0081] As the equipment moves to the designated position, the first push rod 203 is activated, which drives the moving block 2041 to move away from the first groove 202. Then, the third push rod 2043 is activated, which drives the connecting cylinder 2044, connecting rod 2045, and base plate 2046 to move downwards. The base plate 2046 lands on the ground. Then, the electric push plate 2047 is activated, which moves away from the connecting cylinder 2044. Workers manually affix colored warning strips to the outside of adjacent adhesive strips to warn pedestrians.
[0082] The horizontal and vertical positions of the platform 205 are adjusted by setting the adjustment mechanism 2 and the fixing components 204. As the equipment moves to the designated position, the position of the base 1 is fixed by the eight fixing components 204 around the base 1. By setting electric push plates 2047 with adhesive strips in each of the two adjacent fixing components 204, workers can easily affix colored warning strips to the outside of the adjacent adhesive strips to warn pedestrians.
[0083] Processing unit 4 also includes:
[0084] Platform 401 is connected to the telescopic end of the lifting rod 3;
[0085] Motor housing 402 is installed outside the stand 401, and a motor is installed inside the motor housing 402;
[0086] Telescopic rod 403 is configured as an electric push rod. Telescopic rod 403 is connected to the output end of the motor and to the ring 404.
[0087] Adjusting component 405 is composed of an electric push rod in the horizontal direction and a connecting column. Adjusting component 405 is installed on the outside of ring 404.
[0088] Telescopic pipe 406 is installed on the outside of ring 404 and is connected to adjusting member 405.
[0089] The flared pipe 409 has a ventilation opening inside. The flared pipe 409 is connected to the telescopic pipe 406. The flared pipe 409 is equipped with an anti-collision strip 410 on the outside.
[0090] Connecting fitting 411 is installed on the outside of flared pipe 409 and connected to the vent. Connecting fitting 411 is composed of an inclined pipe and a horizontal pipe.
[0091] The fifth push rod 412 is an electric push rod and is installed on the outside of the ring 404.
[0092] Outer ring 413 is connected to the telescopic end of the fifth push rod 412. A rubber plate is installed on the outside of the outer ring 413, and multiple rubber plates are provided.
[0093] The positioning plate 414 can be configured as a circular plate or a circular mesh plate according to the work requirements. The positioning plate 414 can be detachably installed inside the ring 404. When welding is being performed, the circular plate is used, and when welding is not being performed, the circular mesh plate is used.
[0094] The connecting box 415 is installed on the outside of the ring 404. The connecting box 415 is composed of a soft box in the horizontal direction and a placement box in the vertical direction.
[0095] When using the equipment, the worker stands on the platform 205 and adjusts the stroke of the lifting rod 3 and the telescopic rod 403 according to the welding position. The lifting rod 3 and the telescopic rod 403 drive the ring 404 and the connecting box 415 to move. According to the welding angle, the motor in the motor box 402 is turned on, and the motor drives the telescopic rod 403, the ring 404 and the clamping assembly 408 to deflect to the specified angle.
[0096] Initially, the fifth push rod 412 is not open, the rubber plate is under pressure, and the vent is not blocked. Before welding, the fourth push rod 407 is opened to the specified stroke. The fourth push rod 407 drives the clamping assembly 408 to move towards the welding area, and then the clamping assembly 408 is opened to carry out the welding work.
[0097] Before welding, by adjusting the stroke of the electric push rod in the horizontal direction in the adjusting component 405, the telescopic pipe 406 and the flared pipe 409 can be controlled to move away from the ring 404 until the flared pipe 409 moves to the designated position.
[0098] After the welding work is completed, the fifth push rod 412 is turned into reciprocating motion mode. The fifth push rod 412 drives the rubber plate outside the outer ring 413 to repeatedly contact the ventilation port. In the process of driving the high temperature gas to move, the ventilation port is scraped.
[0099] Clamping assembly 408 includes:
[0100] Adjusting rod 4081 is configured as a rod whose length can be manually adjusted, and adjusting rod 4081 is installed outside the fourth push rod 407;
[0101] The clamping frame 4082 is connected to the adjusting rod 4081. The clamping frame 4082 is equipped with a welding gun 4083 inside, and a cable 4088 is provided at the bottom of the welding gun 4083.
[0102] Connecting plate 4084 is installed on the outside of adjusting rod 4081;
[0103] Connecting rod 4085 is installed on the outside of connecting plate 4084;
[0104] The first limiting plate 4086 is connected to the connecting rod 4085 and is installed on the outside of the cable 4088.
[0105] The second limiting plate 4087 is connected to the ring 404 and is installed on the outside of the cable 4088.
[0106] Before welding, the fourth push rod 407 is activated to the corresponding stroke. The fourth push rod 407 drives the adjusting rod 4081, the clamping frame 4082 and the welding gun 4083 to move to the welding position. Then the welding gun 4083 is activated to start the welding work.
[0107] During the process of the fourth push rod 407 driving the adjusting rod 4081 to move, the connecting plate 4084, the connecting rod 4085, the first limiting plate 4086, and the cable 4088 move with the adjusting rod 4081. When the welding ends, as the fourth push rod 407 drives the adjusting rod 4081 back to its original position, the connecting rod 2045, the connecting rod 4085, and the first limiting plate 4086 return to their original positions. At this time, a section of cable 4088 is reserved between the second limiting plate 4087 and the first limiting plate 4086 near the second limiting plate 4087.
[0108] By incorporating a processing mechanism 4, the welding torch 4083 is placed within the telescopic pipe 406 and the flared pipe 409, replacing the conventional method of workers holding the welding torch 4083 for welding work, thus improving the stability of the welding torch 4083's position control. The flared pipe 409, located outside the welding torch 4083, effectively isolates the welding flame and high-temperature gases from the worker, reducing the risk of injury. Multiple ventilation openings are provided within the flared pipe 409, and a connecting fitting 411, composed of inclined and horizontal pipes, is installed outside these openings. This, along with an outer ring 413 and a rubber plate capable of reciprocating within the flared pipe 409, promotes the horizontal discharge of high-temperature gases from the flared pipe 409 and the telescopic pipe 406, further preventing injury to the worker from the high-temperature gases.
[0109] By setting up a clamping assembly 408, the clamping frame 4082 replaces manual fixation of the welding gun 4083. Under the control of the processing mechanism 4, the position and angle of the welding gun 4083 are adjusted, making the movement path of the welding gun 4083 more precise. By setting up multiple first limiting plates 4086, the cable 4088 is clamped and fixed at multiple points, preventing the cable 4088 from moving to the nozzle of the welding gun 4083 during its movement and causing danger. By reserving a length of cable 4088 between the second limiting plate 4087 and the first limiting plate 4086 near the second limiting plate 4087, the cable 4088 can move easily in the telescopic pipe 406 and the flared pipe 409 without affecting the length of the cable 4088 outside the ring 404, thereby reducing the impact on workers' work caused by the cables 4088 scattered on the table 205.
[0110] Working principle: Before using the equipment, move the equipment to the construction position, and the worker stands on the platform 205 and starts the adjustment mechanism 2 to adjust the position of the platform 205 in the vertical and horizontal directions.
[0111] As the device moves to the designated position, the first push rod 203 is activated, which drives the fixing component 204 to move away from the base 1. Then, the fixing component 204 is adjusted to fix the position of the device.
[0112] As the equipment moves to the designated position, the first push rod 203 is activated, which drives the moving block 2041 to move away from the first groove 202. Then, the third push rod 2043 is activated, which drives the connecting cylinder 2044, connecting rod 2045, and base plate 2046 to move downwards. The base plate 2046 lands on the ground. Then, the electric push plate 2047 is activated, which moves away from the connecting cylinder 2044. Workers manually affix colored warning strips to the outside of adjacent adhesive strips to warn pedestrians.
[0113] Based on the welding position, adjust the stroke of the second push rod 208 and the electric push rod in the vertical direction of the lifting platform 209, thereby adjusting the position of the platform 205 in the horizontal and vertical directions.
[0114] When using the equipment, the worker stands on the platform 205 and adjusts the stroke of the lifting rod 3 and the telescopic rod 403 according to the welding position. The lifting rod 3 and the telescopic rod 403 drive the ring 404 and the connecting box 415 to move. According to the welding angle, the motor in the motor box 402 is turned on, and the motor drives the telescopic rod 403, the ring 404 and the clamping assembly 408 to deflect to the specified angle.
[0115] Initially, the fifth push rod 412 is not open, the rubber plate is under pressure, and the vent is not blocked. Before welding, the fourth push rod 407 is opened to the specified stroke. The fourth push rod 407 drives the clamping assembly 408 to move towards the welding area, and then the clamping assembly 408 is opened to carry out the welding work.
[0116] Before welding, the fourth push rod 407 is activated to the corresponding stroke. The fourth push rod 407 drives the adjusting rod 4081, the clamping frame 4082 and the welding gun 4083 to move to the welding position. Then the welding gun 4083 is activated to start the welding work.
[0117] During the process of the fourth push rod 407 driving the adjusting rod 4081 to move, the connecting plate 4084, the connecting rod 4085, the first limiting plate 4086, and the cable 4088 move with the adjusting rod 4081. When the welding ends, as the fourth push rod 407 drives the adjusting rod 4081 back to its original position, the connecting rod 2045, the connecting rod 4085, and the first limiting plate 4086 return to their original positions. At this time, a section of cable 4088 is reserved between the second limiting plate 4087 and the first limiting plate 4086 near the second limiting plate 4087.
[0118] Before welding, by adjusting the stroke of the electric push rod in the horizontal direction in the adjusting component 405, the telescopic pipe 406 and the flared pipe 409 can be controlled to move away from the ring 404 until the flared pipe 409 moves to the designated position.
[0119] After the welding work is completed, the fifth push rod 412 is turned into reciprocating motion mode. The fifth push rod 412 drives the rubber plate outside the outer ring 413 to repeatedly contact the ventilation port. In the process of driving the high temperature gas to move, the ventilation port is scraped.
[0120] Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. All other embodiments obtained by those skilled in the art and related fields based on the embodiments of the present invention without inventive effort should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention, unless otherwise specified or limited, shall be implemented according to conventional means in the art.
Claims
1. A mechanical and electrical construction device, comprising a base (1), characterized in that: Adjustment mechanism (2), the adjustment mechanism (2) is installed outside the base (1), the adjustment mechanism (2) includes a second push rod (208), a lifting platform (209) is installed outside the second push rod (208), a platform (205) is installed above the lifting platform (209), the second push rod (208) and the lifting platform (209) are used to control the position of the platform (205) in the vertical and horizontal directions; A lifting rod (3) is installed above the adjusting mechanism (2); The processing mechanism (4) is connected to the telescopic end of the lifting rod (3). The processing mechanism (4) includes a ring (404). A fourth push rod (407) is installed on the outside of the ring (404). A clamping assembly (408) is installed on the outside of the fourth push rod (407). The fourth push rod (407) is used to control the position of the clamping assembly (408) in the horizontal direction.
2. The mechanical and electrical construction device according to claim 1, characterized in that: The adjustment mechanism (2) also includes: Casters (201) are mounted on the outside of the base (1); The first groove (202) is formed inside the base (1); A first push rod (203) is installed inside a first groove (202), and a fixing component (204) is installed on the outside of the first push rod (203).
3. The mechanical and electrical construction device according to claim 2, characterized in that: The adjustment mechanism (2) also includes: The second groove (207) is formed inside the base (1), and the second push rod (208) is installed inside the second groove (207); A fence (206) is installed above a platform (205), and a lifting rod (3) is installed above the fence (206).
4. The mechanical and electrical construction device according to claim 2, characterized in that: The fixing component (204) includes: A movable block (2041) is connected to the telescopic end of the first push rod (203), and a fixing groove (2042) is provided inside the movable block (2041); The third push rod (2043) is installed inside the fixing groove (2042); A connecting cylinder (2044) is connected to the telescopic end of the third push rod (2043); An electric push plate (2047) is installed inside the connecting cylinder (2044); A connecting rod (2045) is installed at the bottom of the connecting cylinder (2044); A base plate (2046) is installed at the bottom of the connecting rod (2045), and a gasket is installed at the bottom of the base plate (2046).
5. The mechanical and electrical construction device according to claim 1, characterized in that: The processing mechanism (4) further includes: A platform (401) is connected to the telescopic end of the lifting rod (3); A motor housing (402) is installed outside the frame (401), and a motor is installed inside the motor housing (402); Telescopic rod (403), the telescopic rod (403) is connected to the output end of the motor, and the telescopic rod (403) is connected to the ring (404).
6. The mechanical and electrical construction device according to claim 5, characterized in that: The processing mechanism (4) further includes: An adjusting element (405) is mounted on the outside of the ring (404); A telescopic pipe (406) is installed outside the ring (404) and is connected to an adjusting member (405); A flared pipe (409) is connected to a telescopic pipe (406), and an anti-collision strip (410) is installed on the outside of the flared pipe (409); A connecting fitting (411) is installed on the outside of the flared pipe (409).
7. The mechanical and electrical construction device according to claim 6, characterized in that: The processing mechanism (4) further includes: The fifth push rod (412) is mounted on the outside of the ring (404); Outer ring (413), which is connected to the telescopic end of the fifth push rod (412); A positioning plate (414) is installed inside the ring (404); A connecting box (415) is mounted on the outside of the annulus (404).
8. The mechanical and electrical construction device according to claim 1, characterized in that: The clamping assembly (408) includes: An adjusting rod (4081) is mounted on the outside of the fourth push rod (407); A clamping frame (4082) is connected to an adjusting rod (4081). A welding gun (4083) is installed inside the clamping frame (4082), and a cable (4088) is installed at the bottom of the welding gun (4083).
9. The mechanical and electrical construction device according to claim 8, characterized in that: The clamping assembly (408) further includes: A connecting plate (4084) is mounted on the outside of the adjusting rod (4081); A connecting rod (4085) is mounted on the outside of a connecting plate (4084); The first limiting plate (4086) is connected to the connecting rod (4085) and is installed on the outside of the cable (4088). The second limiting plate (4087) is connected to the ring (404) and is installed on the outside of the cable (4088).
Citation Information
Patent Citations
Mechanical electrical construction device
CN219989257U