An indoor modular water and electricity installation structure that reduces manpower

By designing an indoor modular hydropower installation structure including a fixing mechanism, shock absorbing mechanism, adjustment mechanism, limiting mechanism and direction adjustment mechanism, the problem that the hydropower line duct in the existing modular prefabricated building cannot meet the needs of line pre-embedding and direction adjustment, and the stable fixation and impact protection effect of the cable is achieved.

CN112260187BActive Publication Date: 2025-06-06FANGLIN HOME DECORATION CO LTD
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Patent Information

Application Number
CN202011190642.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-10-30
Publication Date
2025-06-06
Estimated Expiration
2040-10-30

AI Technical Summary

Technical Problem

The hydropower line ducts in existing modular prefabricated buildings cannot meet the needs of pre-embedding of the line body, resulting in poor fixing effect of the line body, inconvenient direction adjustment, insufficient impact resistance, and easy to cause cracking of the line body surface.

Method used

An indoor modular hydropower installation structure including a fixing mechanism, a shock absorbing mechanism, an adjustment mechanism, a limiting mechanism and a directional adjustment mechanism is designed. There are shock absorbing mechanisms on both sides of the fixing mechanism, adjustment mechanisms on the rear side, limiting mechanisms are provided around the inner cavity, and adjustment mechanisms are provided to meet the cable arrangement needs.

Benefits of technology

Through this structure, the cable can be stably fixed under the socket sealing of the sealing sleeve, the shock absorbing mechanism can absorb external impact, the adjustment mechanism can adapt to different installation needs, the limiting mechanism and the directional adjustment mechanism can improve the fixing stability and protection effect of the cable, effectively solving the inconvenience and stability problems of water and electricity installation in the prior art.

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Abstract

The present invention discloses an indoor modular water and electricity installation structure that reduces manpower, and belongs to the technical field of prefabricated buildings, including a fixing mechanism, shock absorbing mechanisms are provided on both sides of the fixing mechanism, an adjustment mechanism is provided on the rear side of the fixing mechanism, limiting mechanisms are provided around the inner cavity of the fixing mechanism, and a direction adjustment mechanism is provided in the inner cavity of the fixing mechanism. In the present invention, after the second telescopic rod is extended, it can drive the extrusion block to support the bottom of the cable to avoid contact between the cable and the inner cavity of the fixed shell, and the convex blocks on both sides of the inner cavity of the sealing sleeve can squeeze and limit the cable when the cable moves in, thereby improving the stability of cable fixing, and the limiting seat can rotate the rotating shaft through a side bearing to insert the cable to change the cable arrangement angle, thereby effectively changing the angle of the cable, adapting to the cable arrangement needs, improving the protection effect of the cable, and effectively improving the water and electricity arrangement and installation needs of prefabricated buildings.
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Description

Technical Field

[0001] The present invention belongs to the technical field of prefabricated buildings, and in particular relates to an indoor modular water and electricity installation structure that reduces manpower. Background Art

[0002] Buildings are places where people live and work. In the past, it was generally necessary to carry out prefabricated construction. This means that the traditional construction method requires a lot of on-site work and a long waiting time. Now, the on-site work is transferred to the factory, and the building components and accessories such as floor slabs, wall panels, stairs, balconies, etc. are processed and manufactured in the factory. Then they are transported to the construction site by vehicles and assembled and installed on site through reliable connection methods. This prefabricated building can effectively improve the assembly efficiency.

[0003] Existing modular prefabricated buildings are inconvenient in the layout of prefabricated water and electricity. It is easy to open and embed grooves on the prefabricated wall surface due to water and electricity reasons, but ordinary cable troughs cannot meet the needs of pre-embedded wires, resulting in poor wire fixation effect, and the wires cannot be well adjusted in the cable troughs, which cannot meet the installation adaptation needs, and the impact resistance of the troughs is insufficient, which easily leads to cracking on the surface of the wires. Therefore, the opened troughs cannot meet the use needs well. Therefore, a water and electricity installation structure is urgently needed. Summary of the invention

[0004] The purpose of the present invention is to propose an indoor modular water and electricity installation structure that reduces manpower in order to solve the problem that ordinary cable troughs cannot meet the needs of pre-embedding of wires, resulting in poor wire fixing effect, and the wires cannot be well adjusted in the cable troughs, cannot meet the installation adaptation needs, and the trough body has insufficient impact resistance, which easily leads to cracking of the wire surface.

[0005] In order to achieve the above object, the present invention adopts the following technical solutions:

[0006] An indoor modular water and electricity installation structure for reducing manpower comprises a fixing mechanism, shock absorbing mechanisms are arranged on both sides of the fixing mechanism, an adjusting mechanism is arranged on the rear side of the fixing mechanism, limiting mechanisms are arranged around the inner cavity of the fixing mechanism, and a direction adjustment mechanism is arranged in the inner cavity of the fixing mechanism.

[0007] As a further description of the above technical solution:

[0008] The fixing mechanism includes a fixing shell, both sides of the fixing shell are fixedly connected to fixing seats, first sliding grooves are provided on both sides of the top and bottom of the fixing shell, and two second sliding grooves are provided on one side of the fixing seat, a shock absorbing mechanism is slidably connected in the second sliding groove, a placement groove is provided on one side of the fixing shell, limiting mechanisms are embedded in the four corners of the inner cavity of the placement groove, a second through hole is provided on one side of the fixing seat at a position corresponding to the limiting mechanism, a sealing gasket is fixedly connected to the inner cavity of the second through hole, and a first through hole is provided on one side of the sealing gasket.

[0009] As a further description of the above technical solution:

[0010] The sealing pad is an elastic plastic pad.

[0011] As a further description of the above technical solution:

[0012] The shock absorbing mechanism includes an energy absorbing plate, one side of the energy absorbing plate is fixedly connected to a shock absorbing plate, one side of the energy absorbing plate is fixedly connected to two first telescopic rods, one end of the first telescopic rod is fixedly connected to one side of a first slider, an outer wall of the first telescopic rod is sleeved with a first spring, two ends of the first spring are respectively fixedly connected to the energy absorbing plate and one side of the first slider, and the first slider is slidably connected in a second sliding groove.

[0013] As a further description of the above technical solution:

[0014] The energy absorbing plate is an elastic steel plate, and the shock absorbing plate is a sponge pad.

[0015] As a further description of the above technical solution:

[0016] The cross-sectional shapes of the first sliding block, the first sliding groove and the second sliding groove are all T-shaped.

[0017] As a further description of the above technical solution:

[0018] The limiting mechanism includes a sealing sleeve, which is respectively embedded in one side of the inner cavity of the fixed shell at a corresponding position, and a groove is opened on one side of the sealing sleeve. A second telescopic rod is fixedly connected to one side of the inner cavity of the groove, and the other end of the second telescopic rod is fixedly connected to an extrusion block. A second spring is sleeved on the outer wall of the second telescopic rod, one end of the second spring is fixedly connected to one side of the extrusion block, and the other end of the second spring is fixedly connected to one side of the inner cavity of the groove, and the diameter of the inner cavity of the groove is larger than the diameter of the second telescopic rod.

[0019] As a further description of the above technical solution:

[0020] The direction adjustment mechanism includes a limit seat, both sides of the limit seat are fixedly connected to limit plates, one side of the limit plate is fixedly connected to a plurality of teeth, the teeth are elastic plastic components, and the tooth contact surface is an arc end, four corners of one side of the limit seat are fixedly connected to mounting holes, one side of the limit seat is embedded with a bearing, a rotating shaft is sleeved in the bearing, and one end of the rotating shaft is fixedly connected to one side of the inner cavity of the fixed shell.

[0021] As a further description of the above technical solution:

[0022] The adjusting mechanism includes a sliding seat, a second sliding block is fixedly connected to one side of the sliding seat, a sliding sleeve is slidably connected to the outer side wall of the second sliding block, one side of the sliding sleeve is fixedly connected to one side of a fixed shell, a threaded cap is embedded in the top of the sliding sleeve, a threaded column is connected to the inner thread of the threaded cap, a plurality of slots are opened on the top of the second sliding block, the threaded column is clamped in the slots at corresponding positions, the diameter of the inner cavity of the slot is equal to the diameter of the threaded column, and the threaded column and the slot are tightly matched.

[0023] As a further description of the above technical solution:

[0024] The cross-section shapes of the second sliding block and the sliding sleeve are both T-shaped.

[0025] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:

[0026] 1. In the present invention, when it is necessary to install water and electricity, the sliding seat is installed in the groove body opened in the prefabricated wall, and the sliding sleeve on one side of the fixing mechanism is slidably connected to the outside of the sliding seat, so that the cable can be moved into the inner cavity of the fixed shell through the sealing sleeves on both sides. After the cable enters the sealing sleeve, the teeth can fill the gap between the cable and the limiting seat, and the installation hole on one side of the limiting seat can facilitate the installation of the power socket, and after the cable is moved into the fixed shell, the sealing sleeve can be sleeved and sealed on the cable, and the sealing gasket on one side can isolate the water vapor from the outside from invading, and the second telescopic rod can drive the extrusion block to support the bottom of the cable after being extended to avoid contact between the cable and the inner cavity of the fixed shell, and the convex blocks on both sides of the inner cavity of the sealing sleeve can squeeze and limit the cable when the cable is moved in, thereby improving the fixing stability of the cable, and the limiting seat can insert the cable to change the cable arrangement angle through the bearing on one side of the rotating shaft, thereby effectively changing the angle of the cable, adapting to the arrangement needs of the cable, improving the protection effect of the cable, and effectively improving the water and electricity arrangement and installation needs of the prefabricated building.

[0027] 2. In the present invention, when an external impact occurs, the energy-absorbing plate made of elastic steel plate material can absorb the impact through its own arc structure, and the shock-absorbing plate on one side of the energy-absorbing plate can further resist the impact, and the energy-absorbing plate can shorten and pull the first spring through the first telescopic rod on one side, so as to effectively absorb the external impact, and at the same time, the energy-absorbing plate can move from the second slide groove by pulling the first slider on one side, and reset and snap into the first slide groove on one side when the cable angle is changed, which can prevent the first slider from moving out of the first slide groove or the second slide groove, thereby ensuring the protective effect of the energy-absorbing plate, improving the stability of the internal water and electricity installation arrangement, preventing external cables from being ruptured and damaged due to water vapor erosion, and reducing the occurrence of accidents due to line damage.

[0028] 3. In the present invention, the outer wall of the sliding seat can be slidably connected to multiple sliding sleeves and a fixed shell. After the threaded column is moved out of the threaded cap by turning the handle, the sliding sleeve can be pulled to slide outside the second sliding block. After sliding to a suitable position, the threaded column can be driven into the slot by turning the handle in the opposite direction, thereby effectively adjusting the corresponding positions of the sliding sleeve and the fixed shell on the sliding seat and the second sliding block, and preventing the sliding sleeve from sliding outside the second sliding block, thereby improving the fixing stability of the second sliding block and the sliding sleeve, effectively ensuring the fixing limit stability of the fixed shell, and improving the adjustment adaptability of the installation position of the water and electricity cable to meet the use needs. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 This is a schematic diagram of a front cross-sectional structure of an indoor modular water and electricity installation structure for reducing manpower proposed by the present invention;

[0030] Figure 2 The present invention proposes an indoor modular water and electricity installation structure that reduces manpower Figure 1 The structural diagram of the enlarged part A in the middle;

[0031] Figure 3 The present invention proposes an indoor modular water and electricity installation structure that reduces manpower Figure 1 The enlarged structural diagram of part B in the middle;

[0032] Figure 4 A schematic diagram of the side view of the structure of the regulating mechanism of an indoor modular water and electricity installation structure that reduces manpower proposed by the present invention;

[0033] Figure 5 A schematic diagram of the three-dimensional structure of a second sliding block of an indoor modular water and electricity installation structure for reducing manpower proposed by the present invention;

[0034] Figure 6 This is a three-dimensional structural schematic diagram of a shock absorbing mechanism of an indoor modular water and electricity installation structure that reduces manpower, as proposed by the present invention.

[0035] Legend:

[0036] 1. Fixing mechanism; 101. Fixing shell; 102. First slide groove; 103. Placement groove; 104. Second slide groove; 105. Sealing pad; 106. First through hole; 107. Second through hole; 108. Fixing seat; 2. Shock absorbing mechanism; 201. Energy absorbing plate; 202. First telescopic rod; 203. First spring; 204. First slider; 205. Shock absorbing plate; 3. Limiting mechanism; 301. Sealing sleeve; 30 2. Bump; 303. Groove; 304. Second telescopic rod; 305. Second spring; 306. Extrusion block; 4. Adjustment mechanism; 401. Limit seat; 402. Teeth; 403. Mounting hole; 404. Bearing; 405. Rotating shaft; 406. Limit plate; 5. Adjustment mechanism; 501. Sliding seat; 502. Sliding sleeve; 503. Second sliding block; 504. Slot; 505. Threaded column; 506. Threaded cap. DETAILED DESCRIPTION

[0037] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0038] See also Figure 1-6 The present invention provides a technical solution: comprising a fixing mechanism 1, shock absorbing mechanisms 2 are arranged on both sides of the fixing mechanism 1, an adjusting mechanism 5 is arranged on the rear side of the fixing mechanism 1, limiting mechanisms 3 are arranged around the inner cavity of the fixing mechanism 1, and an adjusting mechanism 4 is arranged in the inner cavity of the fixing mechanism 1.

[0039] The fixing mechanism 1 includes a fixing shell 101, both sides of which are fixedly connected to fixing seats 108, first sliding grooves 102 are provided on both sides of the top and bottom of the fixing shell 101, and two second sliding grooves 104 are provided on one side of the fixing seat 108, and a shock absorbing mechanism 2 is slidably connected in the second sliding groove 104, a placement groove 103 is provided on one side of the fixing shell 101, and limiting mechanisms 3 are embedded in the four corners of the inner cavity of the placement groove 103, a second through hole 107 is provided on one side of the fixing seat 108 at a position corresponding to the limiting mechanism 3, a sealing gasket 105 is fixedly connected to the inner cavity of the second through hole 107, a first through hole 106 is provided on one side of the sealing gasket 105, and the sealing gasket 105 is an elastic plastic pad.

[0040] The limiting mechanism 3 includes a sealing sleeve 301, which is respectively embedded in one side of the inner cavity of the fixed shell 101 at the corresponding position. A groove 303 is opened on one side of the sealing sleeve 301, and a second telescopic rod 304 is fixedly connected to one side of the inner cavity of the groove 303, and the other end of the second telescopic rod 304 is fixedly connected to an extrusion block 306. The outer wall of the second telescopic rod 304 is sleeved with a second spring 305, one end of the second spring 305 is fixedly connected to one side of the extrusion block 306, and the other end of the second spring 305 is fixedly connected to one side of the inner cavity of the groove 303, and the diameter of the inner cavity of the groove 303 is larger than the diameter of the second telescopic rod 304.

[0041] The direction adjustment mechanism 4 includes a limit seat 401, both sides of the limit seat 401 are fixedly connected to a limit plate 406, one side of the limit plate 406 is fixedly connected to a plurality of teeth 402, the teeth 402 are elastic plastic components, and the contact surface of the teeth 402 is an arc end, and the four corners of one side of the limit seat 401 are fixedly connected to mounting holes 403, one side of the limit seat 401 is embedded with a bearing 404, the bearing 404 is sleeved with a rotating shaft 405, and one end of the rotating shaft 405 is fixedly connected to one side of the inner cavity of the fixed shell 101.

[0042] The specific implementation method is as follows: when it is necessary to install water and electricity, the slide seat 501 is installed in the groove body opened in the prefabricated wall, and the sliding sleeve 502 on one side of the fixing mechanism 1 is slidably connected to the outside of the slide seat 501, and the cable can be moved into the inner cavity of the fixed shell 101 through the sealing sleeves 301 on both sides. After entering the sealing sleeve 301, the cable can be inserted between the limiting plates 406 on both sides, and the water and electricity cables and pipes can be inserted into the limiting seat 401. The teeth 402 can fill the gap between the cable and the limiting seat 401, and the installation hole 403 on one side of the limiting seat 401 can facilitate the installation of the power socket to ensure the stability of the clamping and fixing, and after the cable is moved into the fixed shell 101, the sealing sleeve 301 can sleeve and seal the cable, and the sealing gasket 1 on one side 05 can isolate the infiltration of water vapor from the outside, improve the waterproof performance of the cable entry and exit, and the second spring 305 can use its own elastic force to drive the second telescopic rod 304 to extend. After the second telescopic rod 304 is extended, it can drive the extrusion block 306 to support the bottom of the cable to avoid the cable from contacting the inner cavity of the fixed shell 101, and the protrusions 302 on both sides of the inner cavity of the sealing sleeve 301 can squeeze and limit the cable when the cable moves in, thereby improving the cable fixing stability, and the limiting seat 401 can rotate on the rotating shaft 405 through a side bearing 404. After rotating 90 degrees, the cable can be inserted to change the wiring angle, thereby effectively changing the angle of the cable, adapting to the cable arrangement needs, improving the protection effect of the cable, and effectively improving the water and electricity arrangement and installation needs of prefabricated buildings.

[0043] The shock absorbing mechanism 2 includes an energy absorbing plate 201, one side of which is fixedly connected to a shock absorbing plate 205, one side of which is fixedly connected to two first telescopic rods 202, one end of the first telescopic rod 202 is fixedly connected to one side of a first slider 204, an outer wall of the first telescopic rod 202 is sleeved with a first spring 203, two ends of the first spring 203 are respectively fixedly connected to the energy absorbing plate 201 and one side of the first slider 204, the first slider 204 is slidably connected in the second slide groove 104, the energy absorbing plate 201 is an elastic steel plate, and the shock absorbing plate 205 is a sponge pad, and the cross-sectional shapes of the first slider 204, the first slide groove 102 and the second slide groove 104 are all T-shaped.

[0044] The specific implementation method is as follows: when an external impact occurs, the energy absorbing plate 201 made of elastic steel plate material can absorb the impact through its own arc structure, and the shock absorbing plate 205 on one side of the energy absorbing plate 201 can further resist the impact, and the energy absorbing plate 201 can shorten and pull the first spring 203 through the first telescopic rod 202 on one side, and the first spring 203 can further absorb the impact by using its own elastic force, thereby effectively absorbing the external impact. At the same time, the energy absorbing plate 201 can move from the second slide groove 104 by pulling the first slider 204 on one side, and reset and snap into the first slide groove 102 on one side by changing the cable angle. After the T-shaped first slider 204 slides into the first slide groove 102 or the second slide groove 104, it can prevent the first slider 204 from moving out of the first slide groove 102 or the second slide groove 104, thereby ensuring the protective effect of the energy absorbing plate 201 and improving the stability of the internal water and electricity installation arrangement.

[0045] The direction adjustment mechanism 4 includes a limit seat 401, both sides of the limit seat 401 are fixedly connected to a limit plate 406, one side of the limit plate 406 is fixedly connected to a plurality of teeth 402, the teeth 402 are elastic plastic components, and the contact surface of the teeth 402 is an arc-shaped end, four corners of one side of the limit seat 401 are fixedly connected to mounting holes 403, one side of the limit seat 401 is embedded with a bearing 404, the bearing 404 is sleeved with a rotating shaft 405, one end of the rotating shaft 405 is fixedly connected to one side of the inner cavity of the fixed shell 101, and the cross-sectional shapes of the second slider 503 and the sliding sleeve 502 are both T-shaped.

[0046] The specific implementation is as follows: the outer wall of the sliding seat 501 can be slidably connected to multiple sliding sleeves 502 and the fixed shell 101, so as to meet the needs of arranging multiple cables, and after the threaded column 505 is moved out of the threaded cap 506 by twisting the handle, the sliding sleeve 502 can be pulled to slide outside the second slider 503. After sliding to a suitable position, the threaded column 505 is driven to snap into the card slot 504 by twisting the handle in the opposite direction, so as to effectively adjust the corresponding positions of the sliding sleeve 502 and the fixed shell 101 on the sliding seat 501 and the second slider 503, and the sliding sleeve 502 can be prevented from sliding outside the second slider 503, thereby improving the fixing stability of the second slider 503 and the sliding sleeve 502, and after the T-shaped sliding sleeve 502 is slidably connected to the outside of the second slider 503, the sliding sleeve 502 can be prevented from separating from the second slider 503 when pulling, thereby effectively ensuring the fixed limit stability of the fixed shell 101, improving the adjustment adaptability of the installation position of the water and electricity cables, and meeting the use needs.

[0047] Working principle: During use, when it is necessary to install water and electricity, install the slide 501 in the groove opened in the prefabricated wall, slide the sleeve 502 on one side of the fixing mechanism 1 to connect it to the outside of the slide 501, and move the sealing sleeves 301 on both sides of the cable into the inner cavity of the fixing shell 101. After the cable enters the sealing sleeve 301, it is inserted between the limit plates 406 on both sides. After the water and electricity cables and pipes are inserted into the limit seat 401, the teeth 402 fill the gap between the cable and the limit seat 401. The installation hole 403 on one side of the limit seat 401 facilitates the installation of the power socket, ensuring the stability of the card connection and fixation. The cable is moved in After the fixed shell 101, the sealing sleeve 301 is sleeved and sealed on the cable, and the sealing gasket 105 on one side isolates the water vapor from the outside. The second spring 305 uses its own elastic force to drive the second telescopic rod 304 to extend. After the second telescopic rod 304 extends, it drives the extrusion block 306 to support the bottom of the cable to prevent the cable from contacting the inner cavity of the fixed shell 101. The protrusions 302 on both sides of the inner cavity of the sealing sleeve 301 squeeze and limit the cable when the cable moves in, thereby improving the cable fixing stability. The bearing 404 on one side of the limiting seat 401 rotates on the rotating shaft 405. After rotating 90 degrees, the cable is inserted to change the cable arrangement angle.

[0048] When external impact occurs, the arc structure of the energy absorbing plate 201 made of elastic steel plate absorbs the impact, and the shock absorbing plate 205 on one side of the energy absorbing plate 201 further resists the impact. The first telescopic rod 202 on one side of the energy absorbing plate 201 shortens and pulls the first spring 203. The first spring 203 uses its own elastic force to further absorb the impact. At the same time, the energy absorbing plate 201 pulls the first slider 204 on one side to move from the second slide groove 104, and resets and snaps into the first slide groove 102 on one side after changing the cable angle. After the T-shaped first slider 204 slides into the first slide groove 102 or the second slide groove 104, it prevents the first slider 204 from moving out of the first slide groove 102 or the second slide groove 104.

[0049] The outer wall of the slide seat 501 is slidably connected to multiple sleeves 502 and the fixed shell 101, so as to meet the needs of multiple cable arrangements. After the handle is turned to drive the threaded column 505 to move out of the threaded cap 506, the sleeve 502 is pulled to slide outside the second slider 503. After sliding to a suitable position, the handle is turned in the opposite direction to drive the threaded column 505 to snap into the slot 504, and the corresponding positions of the sleeve 502 and the fixed shell 101 on the slide seat 501 and the second slider 503 are adjusted. After the T-shaped sleeve 502 is slidably connected to the outside of the second slider 503, the sleeve 502 is prevented from separating from the second slider 503 when pulled.

[0050] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. An indoor modular water and electricity installation structure that reduces manpower, comprising a fixing mechanism (1), It is characterized in that The fixing mechanism (1) is provided with a shock absorbing mechanism (2) on both sides, the fixing mechanism (1) is provided with an adjusting mechanism (5) on the rear side, the fixing mechanism (1) is provided with a limiting mechanism (3) around the inner cavity of the fixing mechanism (1), and the inner cavity of the fixing mechanism (1) is provided with a direction adjustment mechanism (4), the fixing mechanism (1) comprises a fixing shell (101), both sides of the fixing shell (101) are fixedly connected with a fixing seat (108), the fixing shell (101) is provided with a first slide groove (102) on both sides of the top and bottom, and one side of the fixing seat (108) is provided with two second slide grooves (104), and the second slide grooves (104) A damping mechanism (2) is slidably connected inside the fixed shell (101), a placement groove (103) is provided on one side of the fixed shell (101), and limiting mechanisms (3) are embedded at the four corners of the inner cavity of the placement groove (103), a second through hole (107) is provided on one side of the fixed seat (108) at a position corresponding to the limiting mechanism (3), a sealing gasket (105) is fixedly connected to the inner cavity of the second through hole (107), and a first through hole (106) is provided on one side of the sealing gasket (105), and the damping mechanism (2) comprises an energy absorbing plate (201), and a damping plate (205) is fixedly connected to one side of the energy absorbing plate (201), and the damping plate (205) is fixedly connected to the inner cavity of the second through hole (107). One side of the energy absorption plate (201) is fixedly connected to two first telescopic rods (202), one end of the first telescopic rods (202) is fixedly connected to one side of a first slider (204), an outer wall of the first telescopic rod (202) is sleeved with a first spring (203), two ends of the first spring (203) are respectively fixedly connected to the energy absorption plate (201) and one side of the first slider (204), the first slider (204) is slidably connected in the second slide groove (104), the adjustment mechanism (5) comprises a slide seat (501), one side of the slide seat (501) is fixedly connected to the second slider (503), the first The outer wall of the second slider (503) is slidably connected with a sliding sleeve (502), one side of the sliding sleeve (502) is fixedly connected with one side of the fixed shell (101), a threaded cap (506) is embedded in the top of the sliding sleeve (502), and a threaded column (505) is connected to the inner thread of the threaded cap (506), and a plurality of slots (504) are opened on the top of the second slider (503), and the threaded column (505) is snapped into the slots (504) at corresponding positions, the diameter of the inner cavity of the slot (504) is equal to the diameter of the threaded column (505), and the threaded column (505) and the slot (504) are tightly matched.

2. An indoor modular water and electricity installation structure that reduces manpower according to claim 1, It is characterized in that The sealing pad (105) is an elastic plastic pad.

3. According to claim 1, a modular indoor water and electricity installation structure that reduces manpower, It is characterized in that The energy absorbing plate (201) is an elastic steel plate, and the shock absorbing plate (205) is a sponge pad.

4. According to claim 1, a modular indoor water and electricity installation structure with reduced manpower, It is characterized in that The cross-sectional shapes of the first sliding block (204), the first sliding groove (102) and the second sliding groove (104) are all T-shaped.

5. According to claim 1, a modular indoor water and electricity installation structure with reduced manpower, It is characterized in that The limiting mechanism (3) comprises a sealing sleeve (301), wherein the sealing sleeve (301) is respectively embedded in one side of the inner cavity of the fixed shell (101) at a corresponding position, and a groove (303) is provided on one side of the sealing sleeve (301). A second telescopic rod (304) is fixedly connected to one side of the inner cavity of the groove (303), and the other end of the second telescopic rod (304) is fixedly connected to an extrusion block (306). A second spring (305) is sleeved on the outer wall of the second telescopic rod (304), and one end of the second spring (305) is fixedly connected to one side of the extrusion block (306), and the other end of the second spring (305) is fixedly connected to one side of the inner cavity of the groove (303), and the diameter of the inner cavity of the groove (303) is greater than the diameter of the second telescopic rod (304).

6. The indoor modular water and electricity installation structure with reduced manpower according to claim 1, It is characterized in that The direction adjustment mechanism (4) comprises a limit seat (401), both sides of the limit seat (401) are fixedly connected to a limit plate (406), one side of the limit plate (406) is fixedly connected to a plurality of teeth (402), the teeth (402) are elastic plastic components, and the contact surface of the teeth (402) is an arc-shaped end, four corners of one side of the limit seat (401) are fixedly connected to mounting holes (403), one side of the limit seat (401) is embedded with a bearing (404), a rotating shaft (405) is sleeved in the bearing (404), and one end of the rotating shaft (405) is fixedly connected to one side of the inner cavity of the fixed shell (101).

7. The indoor modular water and electricity installation structure with reduced manpower according to claim 1, It is characterized in that The cross-sectional shapes of the second sliding block (503) and the sliding sleeve (502) are both T-shaped.

Citation Information

Patent Citations

  • Indoor modularized water and electricity installation structure capable of reducing manpower

    CN213693073U