Auxiliary equipment for building wall

By designing an adjustable telescopic structure and a servo motor-driven bricklaying auxiliary device, the problem of inconvenient use and transportation of the equipment in confined spaces has been solved, enabling flexible use and transportation of the equipment in confined spaces, and facilitating efficient bricklaying by workers.

CN223866293UActive Publication Date: 2026-02-03SINOHYDRO BEREAU 10 CO LTD
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Patent Information

Application Number
CN202520563724.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2026-02-03
Estimated Expiration
2035-03-28

AI Technical Summary

Technical Problem

Existing bricklaying auxiliary equipment is bulky, inconvenient to use and transport in confined spaces, and workers need to bend over frequently when picking up bricks, which increases physical exertion.

Method used

A bricklaying auxiliary device was designed, comprising a telescopic base plate, a servo motor, a lead screw, and a bevel gear. The servo motor drives the lead screw lifting block to achieve automatic lifting of bricks. Combined with an adjustable telescopic structure, it can adapt to different space requirements and reduce the size of the equipment during transportation.

Benefits of technology

The equipment can be used flexibly in confined spaces, reducing the number of times workers have to bend over to pick up bricks, and improving work efficiency and portability.

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Abstract

The utility model relates to the technical field of house building wall building auxiliary equipment, and discloses house building wall building auxiliary equipment which comprises a telescopic bottom plate, L-shaped supporting plates are fixedly connected to the two sides of the bottom of the telescopic bottom plate, two universal wheels are fixedly connected to the bottoms of the L-shaped supporting plates, telescopic shafts are rotationally connected to the L-shaped supporting plates, servo motors are fixedly connected to the L-shaped supporting plates, and the servo motors are fixedly connected to the bottom of the telescopic bottom plate. The servo motor is connected with the telescopic shaft through an output shaft, lead screws are rotationally arranged on the two sides of the telescopic bottom plate correspondingly, n-shaped frames are fixedly connected to the two sides of the top of the telescopic bottom plate correspondingly, the upper ends of the lead screws are rotationally connected with the n-shaped frames correspondingly, driven bevel gears are fixedly connected to the lower portions of the two lead screws correspondingly, and driving bevel gears are fixedly connected to the two sides of the telescopic shaft correspondingly. The driving bevel gear is meshed with a driven bevel gear, the two lead screws are both in threaded connection with lifting blocks, and the lifting blocks are fixedly connected with telescopic supporting plates for building bricks. The wall building auxiliary equipment can increase the practical width, is good in practicability, can reduce the size of the equipment, and is convenient to carry and transport.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to house building wall building auxiliary equipment technical field, concretely is an auxiliary equipment for house building wall building. BACKGROUND

[0002] The most solid wall building method is block by block. The conventional masonry construction method is selected when building walls, and the walls of the house built in this way can play a role in temperature buffering. In the prior art, the traditional wall building auxiliary device is usually placed on the moving plate for transportation to the required position when workers are laying wall bricks. Workers need to constantly bend down to pick up the bricks, which reduces work efficiency and increases physical exertion of workers. In order to reduce the labor of workers, an auxiliary device is specially used to assist personnel in wall building construction in the prior art.

[0003] After searching, a wall building auxiliary device disclosed in publication number CN221298632U has the following main features: a moving part is provided with a lifting device at the top end, the lifting device includes a placing plate, both sides of the placing plate are fixedly connected with internal threaded blocks, the internal threaded blocks are internally threadedly connected with threaded rods, one end of each threaded rod is rotatably connected with a fixed plate, the bottom end of the fixed plate is fixedly connected with the moving part, one end of each threaded rod is fixedly connected with a second bevel gear, one end of the second bevel gear is rotatably connected with a fixed rod, one end of the fixed rod is fixedly connected with a fixed sleeve ring.

[0004] In actual use, the applicant finds that the size of the above-mentioned wall building auxiliary device is fixed. Due to the complex environment of house building construction, the space for wall building operation is small many times, and the device may not be able to operate in a narrow space. Moreover, the entire device is large in size, which is not convenient for actual carrying and transportation. In order to solve the above-mentioned problems, an auxiliary device for house building wall building is proposed. UTILITY MODEL CONTENTS

[0005] The utility model aims to solve the above-mentioned problems and provides an auxiliary device for house building wall building.

[0006] The utility model discloses a technical scheme as follows: A kind of auxiliary equipment for housing building wall laying, including telescopic base plate, the bottom two sides of telescopic base plate are fixedly connected with L type support plate, the bottom of L type support plate is fixedly connected with two universal wheels, L type support plate is rotatably connected with telescopic shaft, L type support plate is fixedly connected with servo motor, the servo motor is connected with the telescopic shaft by output shaft, the two sides of telescopic base plate are rotatably provided with screw rod, the top two sides of telescopic base plate are fixedly connected with door type frame, the upper end of screw rod is rotatably connected with the door type frame, the lower part of two screw rods is fixedly connected with from bevel gear, the two sides of telescopic shaft are fixedly connected with main bevel gear, the main bevel gear is engaged with from bevel gear, and lifting block is screw-connected on two screw rods, and housing building brick telescopic support plate is fixedly connected on lifting block.

[0007] Telescopic base plate includes telescopic plate one and telescopic plate two, two L type support plates and two door type frames are fixedly installed on telescopic plate one and telescopic plate two respectively, two screw rods are rotatably installed on telescopic plate one and telescopic plate two respectively, multiple slots one are formed in telescopic plate one, plug groove one is formed in the inner wall of slot one, multiple plug plates one are formed on telescopic plate two, plug plate one is telescopic with slot one, plug strip one is formed on the outer wall of plug plate one, plug strip one is telescopic with plug groove one, recessed plate one is fixedly connected to the bottom of telescopic plate two, recessed plate one is matched with telescopic plate one, multiple screw holes one are formed in the outer wall of the two sides of telescopic plate one, through hole one is formed in the two sides of recessed plate one, and bolt one is penetrated in through hole one, and bolt one is screw-connected with screw hole one.

[0008] Telescopic support plate includes telescopic plate three and telescopic plate four, lifting block on two screw rods is fixedly installed on telescopic plate three and telescopic plate four respectively, multiple slots two are formed in telescopic plate three, plug groove two is formed in the inner wall of slot two, multiple plug plates two are formed on telescopic plate four, plug plate two is telescopic with slot two, plug strip two is formed on the outer wall of plug plate two, plug strip two is telescopic with plug groove two, recessed plate two is fixedly connected to the bottom of telescopic plate four, recessed plate two is matched with telescopic plate three, multiple screw holes two are formed in the outer wall of the two sides of telescopic plate three, through hole two is formed in the two sides of recessed plate two, and bolt two is penetrated in through hole two, and bolt two is screw-connected with screw hole two.

[0009] The telescopic shaft comprises an inner spline shaft and an outer spline shaft, the inner spline shaft and the spline shaft are rotatably installed on the two L-shaped supporting plates respectively, the servo motor is connected with the outer spline shaft through an output shaft, the inner spline shaft and the outer spline shaft are connected through spline extension and retraction, and the two slave bevel gears are fixedly installed on the inner spline shaft and the outer spline shaft respectively.

[0010] In a preferred embodiment, a telescopic folding protection pipe one is fixedly connected between the upper part of the lifting block and the door-shaped frame, and the telescopic folding protection pipe one is sleeved on the lead screw.

[0011] In a preferred embodiment, a telescopic folding protection pipe two is fixedly connected between the upper part of the lifting block and the door-shaped frame, and the telescopic folding protection pipe two is sleeved on the lead screw.

[0012] In a preferred embodiment, two guide rods are fixedly connected to the telescopic plate one and the telescopic plate two, the upper end of the guide rod is fixedly installed on the corresponding door-shaped frame, a guide block is slidably connected to the guide rod, the guide block on the telescopic plate one is fixedly installed on the telescopic plate three, and the guide block on the telescopic plate two is fixedly installed on the telescopic plate four.

[0013] In a preferred embodiment, a first anti-disengagement block is fixedly installed on the side wall of the telescopic plate one.

[0014] In a preferred embodiment, a second anti-disengagement block is fixedly installed on the side wall of the telescopic plate three.

[0015] In summary, due to the adoption of the above technical scheme, the present application has the following beneficial effects:

[0016] 1. In the present application, the entire bricklaying auxiliary equipment can adjust the width, so that it can be adjusted and used according to the actual use site, so that it can be used in a narrower environment, and when the transportation equipment is used, the collapsible structure can reduce the equipment volume, thereby reducing the equipment occupied volume, and further improving the equipment portability.

[0017] 2. In the present application, the telescopic folding protection pipe can protect the lead screw, thereby preventing dust and particles from falling on the lead screw and affecting the use of the lead screw, and improving the equipment running stability. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a schematic diagram of the three-dimensional structure of the present application;

[0019] Figure 2 It is a front view structure schematic diagram of the present application when it is unfolded;

[0020] Figure 3The front view structure schematic diagram during contraction of the utility model;

[0021] Figure 4 The connecting three-dimensional structure schematic diagram of the lifting block and the screw rod in the utility model;

[0022] Figure 5 The three-dimensional structure schematic diagram of the concave plate one and the concave plate two in the utility model.

[0023] Marked in the drawing: 1- telescopic base plate, 2- L-shaped support plate, 3- universal wheel, 4- telescopic shaft, 5- servo motor, 6- screw rod, 7- door frame, 8- slave bevel gear, 9- master bevel gear, 10- lifting block, 11- telescopic support plate, 12- telescopic plate one, 13- telescopic plate two, 14- slot one, 15- insertion slot one, 16- insertion plate one, 17- insertion strip one, 18- concave plate one, 19- threaded hole one, 20- through hole one, 21- bolt one, 22- telescopic plate three, 23- telescopic plate four, 24- slot two, 25- insertion slot two, 26- insertion plate two, 27- insertion strip two, 28- concave plate two, 29- threaded hole two, 30- through hole two, 31- bolt two, 32- inner spline shaft, 33- outer spline shaft, 34- telescopic folding protection pipe one, 35- telescopic folding protection pipe two, 36- guide rod, 37- guide block, 38- anti-dropping block one, 39- anti-dropping block two. DETAILED DESCRIPTION

[0024] To make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme in the embodiments of the utility model will be described clearly and completely in combination with the embodiments of the utility model. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0025] The technical scheme in the embodiments of the utility model will be described clearly and completely in combination with the embodiments of the utility model. Figures 1-5 A kind of auxiliary equipment for housing building wall laying of the embodiments of the utility model is described in detail.

[0026] Embodiment:

[0027] The auxiliary equipment for housing building wall laying provided in the embodiments of the utility model is described with reference to Figures 1 to 5As shown, including telescopic base plate 1, both sides of the bottom of telescopic base plate 1 are fixedly connected with L-shaped support plate 2, the bottom of L-shaped support plate 2 is fixedly connected with two universal wheels 3, L-shaped support plate 2 is rotatably connected with telescopic shaft 4, L-shaped support plate 2 is fixedly connected with servo motor 5, servo motor 5 is connected with telescopic shaft 4 through output shaft, both sides of telescopic base plate 1 are rotatably provided with screw rod 6, both sides of the top of telescopic base plate 1 are fixedly connected with door-shaped frame 7, the upper end of screw rod 6 is rotatably connected with door-shaped frame 7, the lower part of two screw rods 6 is fixedly connected with pinion 8, both sides of telescopic shaft 4 are fixedly connected with main bevel gear 9, main bevel gear 9 is engaged with pinion 8, both screw rods 6 are threadedly connected with lifting block 10, lifting block 10 is fixedly connected with house building brick telescopic support plate 11, in the structure, the wall body can be stacked with bricks on the telescopic support plate 11, then the bricks are moved to the wall body, then the personnel take the bricks, start servo motor 5 to drive telescopic shaft 4 to rotate, thereby driving main bevel gear 9 to rotate, main bevel gear 9 drives pinion 8 to rotate, thereby driving two screw rods 6 to rotate simultaneously, screw rod 6 drives lifting block 10 to move upward, thereby driving telescopic support plate 11 to rise when building wall, thereby improving the taking height of bricks, which avoids the personnel building wall to bend down to take bricks, and reduces the working strength.

[0028] Reference Figures 1 to 5 As shown, telescopic base plate 1 includes telescopic plate one 12 and telescopic plate two 13, two L-shaped support plates 2 and two door-shaped frames 7 are fixedly installed on telescopic plate one 12 and telescopic plate two 13 respectively, two screw rods 6 are rotatably installed on telescopic plate one 12 and telescopic plate two 13 respectively, a plurality of slots one 14 are formed on telescopic plate one 12, a plurality of plug-in plates one 16 are formed on telescopic plate two 13, plug-in plate one 16 is telescopically inserted into slot one 14, telescopic support plate 11 includes telescopic plate three 22 and telescopic plate four 23, lifting block 10 on two screw rods 6 is fixedly installed on telescopic plate three 22 and telescopic plate four 23 respectively, a plurality of slots two 24 are formed on telescopic plate three 22, a plurality of plug-in plates two 26 are formed on telescopic plate four 23, plug-in plate two 26 is telescopically inserted into slot two 24, in the above structure, plug-in plate one 17 on telescopic plate two 13 can slide in slot one 14 on telescopic plate one 12, thereby realizing the contraction of telescopic base plate 1, plug-in plate two 26 of telescopic plate four 23 can slide in slot two 24 on telescopic plate three 22, thereby realizing the contraction of telescopic support plate 11, the whole structure can realize the telescopic of the equipment, thereby reducing the occupied volume of the equipment when transporting, improving the carrying portability, at the same time, the width of the equipment can be adjusted according to the demand, thereby facilitating the movement and use of the equipment in a small space, improving the practicability of the equipment.

[0029] Reference Figures 1 to 5As shown, the two inner walls of the slot one 14 are provided with the slot one 15, and the two outer walls of the plug plate one 16 are provided with the plug strip one 17, which is inserted into the slot one 15. The slot one 15 cooperates with the plug strip one 17 to guide the extension position of the extension plate one 12 and the extension plate two 13, and ensure the connection bearing capacity of the extension plate one 12 and the extension plate two 13.

[0030] Reference Figures 1 to 5 As shown, the bottom of the extension plate two 13 is fixedly connected with the concave plate one 18, which is adapted to be connected with the extension plate one 12. The two side walls of the extension plate one 12 are provided with a plurality of threaded holes one 19, and the two sides of the concave plate one 18 are provided with through holes one 20, which are penetrated by the bolt one 21. The bolt one 21 is threadedly connected with the threaded hole one 19. The bolt one 21 penetrates the through hole one 20 of the concave plate one 18 and is connected with the threaded hole one 19, which can lock the relative position of the extension plate one 12 and the extension plate two 13. The plurality of threaded holes one 19 can lock the position of the extension plate one 12 and the extension plate two 13 at different positions, so as to adjust the use width of the extension bottom plate 1.

[0031] Reference Figures 1 to 5 As shown, the two inner walls of the slot two 24 are provided with the slot two 25, and the two outer walls of the plug plate two 26 are provided with the plug strip two 27, which is inserted into the slot two 25. The slot two 25 cooperates with the plug strip two 27 to guide the extension position of the extension plate three 22 and the extension plate four 23, and ensure the connection bearing capacity of the extension plate three 22 and the extension plate four 23.

[0032] Reference Figures 1 to 5 As shown, the bottom of the extension plate four 23 is fixedly connected with the concave plate two 28, which is adapted to be connected with the extension plate three 22. The two side walls of the extension plate three 22 are provided with a plurality of threaded holes two 29, and the two sides of the concave plate two 28 are provided with through holes two 30, which are penetrated by the bolt two 31. The bolt two 31 is threadedly connected with the threaded hole two 29. The bolt two 31 penetrates the through hole two 30 of the concave plate two 28 and is connected with the threaded hole two 29, which can lock the relative position of the extension plate three 22 and the extension plate four 23. The plurality of threaded holes two 29 can lock the position of the extension plate three 22 and the extension plate four 23 at different positions, so as to adjust the use width of the extension plate 11.

[0033] Reference Figures 1 to 5As shown, the telescopic shaft 4 includes an inner spline shaft 32 and an outer spline shaft 33, the inner spline shaft 32 and the outer spline shaft 33 are rotatably installed on the two L-shaped support plates 2 respectively, the servo motor 5 is connected with the outer spline shaft 33 through an output shaft, the inner spline shaft 32 and the outer spline shaft 33 are connected in a telescopic spline manner, and the two bevel gears 8 are fixedly installed on the inner spline shaft 32 and the outer spline shaft 33 respectively. This structure forms a telescopic transmission shaft composed of the inner spline shaft 32 and the outer spline shaft 33, thereby meeting the power transmission when the device is telescoped.

[0034] Reference Figures 1 to 5 As shown, the telescopic folding protective pipe one 34 is fixedly connected between the upper part of the lifting block 10 and the door-shaped frame 7, and is sleeved on the lead screw 6. The telescopic folding protective pipe two 35 is fixedly connected between the upper part of the lifting block 10 and the door-shaped frame 7, and is sleeved on the lead screw 6. In this structure, the telescopic folding protective pipe one 34 and the telescopic folding protective pipe two 35 are used to protect the lead screw 6, thereby preventing dust and particles from falling on the lead screw 6 and affecting the use of the lead screw 6.

[0035] Reference Figures 1 to 5 As shown, the telescopic plate one 12 and the telescopic plate two 13 are fixedly connected with two guide rods 36, the upper end of the guide rod 36 is fixedly installed on the corresponding door-shaped frame 7, and the guide block 37 is slidably connected on the guide rod 36. The guide block 37 on the telescopic plate one 12 is fixedly installed on the telescopic plate three 22, and the guide block 37 on the telescopic plate two 13 is fixedly installed on the telescopic plate four 23. This structure uses the guide rod 36 and the guide block 37 to guide the lifting of the telescopic support plate 11.

[0036] Reference Figures 1 to 5 As shown, the anti-disengagement block one 38 is fixedly installed on the two side walls of the telescopic plate one 12. This structure cooperates with the concave plate one 18 to limit the maximum outward movement position of the telescopic plate two 13, and prevents the telescopic plate two 13 from disengaging from the telescopic plate one 12.

[0037] Reference Figures 1 to 5 Figures 1 to 5 Figures 1 to 5 As shown, the anti-disengagement block two 39 is fixedly installed on the two side walls of the telescopic plate three 22. This structure cooperates with the concave plate two 28 to limit the maximum outward movement position of the telescopic plate four 23, and prevents the telescopic plate three 22 from disengaging from the telescopic plate four 23.

[0038] It should be noted that the above-mentioned device is applied to assist personnel in carrying bricks when building walls, and belongs to the field of wall building auxiliary equipment.

[0039] The implementation principle of the auxiliary equipment for building wall of the embodiment of the application is as follows: when the width of the equipment needs to be adjusted, the plug plate one 17 on the telescopic plate two 13 can slide in the slot one 14 on the telescopic plate one 12, so that the telescopic base plate 1 is contracted, and the plug plate two 26 on the telescopic plate four 23 can slide in the slot two 24 on the telescopic plate three 22, so that the telescopic supporting plate 11 is contracted, thereby the width of the auxiliary equipment for building wall is adjusted, and when the width is adjusted, the outer spline shaft 33 is telescoped on the inner spline shaft 23, so that the power transmission can be ensured, when the width is adjusted, the bolt one 21 is connected with the threaded hole one 19 in the corresponding position of the telescopic plate one 12 through the through hole one 20 of the concave plate one 18, so that the positions of the telescopic plate one 12 and the telescopic plate two 13 are locked, and the bolt two 31 is connected with the threaded hole two 29 in the corresponding position of the telescopic plate three 22 through the through hole two 30 of the concave plate two 28, so that the positions of the telescopic plate three 22 and the telescopic plate four 23 are locked, so that the width of the whole equipment is locked, then the bricks can be placed on the telescopic supporting plate 11, then the equipment is moved to the wall position, then the servo motor 5 is powered, when the bricks are taken less and less, at this time, the personnel can start the servo motor 5 to drive the telescopic shaft 4 to rotate, so that the main bevel gear 9 is rotated, the main bevel gear 9 drives the driven bevel gear 8 to rotate, so that the two lead screws 6 are simultaneously rotated, the lead screw 6 drives the lifting block 10 to move upwards, so that the telescopic supporting plate 11 is lifted, so that the height of the remaining bricks is increased, so that the bricklayer bends down to take the bricks, and the working strength is reduced;

[0040] When the equipment needs to be transported, at this time, the equipment is contracted to the minimum position and is fixed by the bolt, so that the volume of the whole auxiliary equipment for building wall is locked, thereby the equipment is conveniently carried and transported.

[0041] The above embodiment is only used to illustrate the technical scheme of the application, but not to limit it; although the application is described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical scheme recorded in the foregoing embodiments can be modified, or some technical features can be replaced by equivalents; the modification or replacement does not make the essence of the corresponding technical scheme deviate from the spirit and scope of the technical scheme of the embodiments of the application.

Claims

1. An auxiliary device for building construction, comprising a telescopic base plate (1), characterized in that: The telescopic base plate (1) has L-shaped support plates (2) fixedly connected to both sides of its bottom. Two universal wheels (3) are fixedly connected to the bottom of the L-shaped support plates (2). A telescopic shaft (4) is rotatably connected to the L-shaped support plates (2). A servo motor (5) is fixedly connected to the L-shaped support plates (2). The servo motor (5) is connected to the telescopic shaft (4) via an output shaft. Lead screws (6) rotate on both sides of the telescopic base plate (1). The top of the telescopic base plate (1) has lead screws (6) on both sides. A portal frame (7) is fixedly connected. The upper end of the lead screw (6) is rotatably connected to the portal frame (7). The lower part of both lead screws (6) is fixedly connected to a bevel gear (8). Both sides of the telescopic shaft (4) are fixedly connected to a main bevel gear (9). The main bevel gear (9) meshes with the bevel gear (8). Both lead screws (6) are threadedly connected to a lifting block (10). A telescopic support plate (11) for building bricks is fixedly connected to the lifting block (10). The telescopic base plate (1) includes a telescopic plate one (12) and a telescopic plate two (13). Two L-shaped support plates (2) and two portal frames (7) are respectively fixedly installed on the telescopic plate one (12) and the telescopic plate two (13). Two lead screws (6) are respectively rotatably installed on the telescopic plate one (12) and the telescopic plate two (13). The telescopic plate one (12) has multiple slots one (14). Each slot one (15) has two inner walls. The telescopic plate two (13) has multiple insert plates one (16). The insert plates one (16) and the slots one (14) are connected to each other. 4) Telescopic insertion: Insert strips (17) are constructed on the two outer walls of the insert plate (16). Insert strips (17) are telescopically inserted into the slot (15). A concave plate (18) is fixedly connected to the bottom of the telescopic plate (13). The concave plate (18) is adapted to and snapped into the telescopic plate (12). Multiple threaded holes (19) are opened on both outer walls of the telescopic plate (12). Through holes (20) are opened on both sides of the concave plate (18). Bolts (21) pass through the through holes (20). Bolts (21) are threadedly connected to the threaded holes (19). The telescopic support plate (11) includes a telescopic plate three (22) and a telescopic plate four (23). The lifting blocks (10) on the two lead screws (6) are respectively fixedly installed on the telescopic plate three (22) and the telescopic plate four (23). The telescopic plate three (22) has multiple slots two (24). Each slot two (25) has a slot two on its two inner walls. The telescopic plate four (23) has multiple insert plates two (26). The insert plates two (26) are telescopically inserted into the slots two (24). The two insert plates two (26) are telescopically inserted into the slots two (24). The outer wall is constructed with a second insert (27), which is telescopically inserted into the second slot (25). The bottom of the telescopic plate four (23) is fixedly connected with a second concave plate (28), which is adapted to and snapped into the third telescopic plate (22). Multiple threaded holes two (29) are opened on both sides of the outer wall of the third telescopic plate three (22). Through holes two (30) are opened on both sides of the second concave plate two (28). Bolt two (31) passes through the through holes two (30), and the bolt two (31) is threadedly connected to the threaded holes two (29). The telescopic shaft (4) includes an inner spline shaft (32) and an outer spline shaft (33). The inner spline shaft (32) and the outer spline shaft (33) are rotatably mounted on the two L-shaped support plates (2). The servo motor (5) is connected to the outer spline shaft (33) through an output shaft. The inner spline shaft (32) and the outer spline shaft (33) are telescopically connected, and the two bevel gears (8) are fixedly mounted on the inner spline shaft (32) and the outer spline shaft (33).

2. The auxiliary equipment for building construction bricklaying as described in claim 1, characterized in that: A telescopic folding protective tube (34) is fixedly connected between the upper part of the lifting block (10) and the gantry frame (7), and the telescopic folding protective tube (34) is sleeved on the lead screw (6).

3. The auxiliary equipment for building construction bricklaying as described in claim 1, characterized in that: The upper part of the lifting block (10) is fixedly connected to the gantry frame (7) with a telescopic folding protective tube (35), which is sleeved on the screw rod (6).

4. The auxiliary equipment for building construction bricklaying as described in claim 1, characterized in that: Two guide rods (36) are fixedly connected to both the first telescopic plate (12) and the second telescopic plate (13). The upper end of the guide rod (36) is fixedly installed on the corresponding portal frame (7). Each guide rod (36) is slidably connected to a guide block (37). The guide block (37) on the first telescopic plate (12) is fixedly installed on the third telescopic plate (22), and the guide block (37) on the second telescopic plate (13) is fixedly installed on the fourth telescopic plate (23).

5. The auxiliary equipment for building construction bricklaying as described in claim 1, characterized in that: Anti-detachment blocks (38) are fixedly installed on both sides of the telescopic plate (12).

6. The auxiliary equipment for building construction bricklaying as described in claim 1, characterized in that: Anti-detachment blocks (39) are fixedly installed on both sides of the telescopic plate three (22).

Citation Information

Patent Citations

  • Wall building assistor

    CN221298632U