Automatic wall positioning slotter
By designing an automatic wall positioning and grooving machine with supporting and guiding structures and a driving structure, the problem of existing equipment relying on manual operation has been solved, realizing automated construction and improving construction efficiency and accuracy.
Patent Information
- Application Number
- CN202310241240.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-14
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2043-03-14
AI Technical Summary
Existing wall grooving equipment relies on manual operation, has a low degree of automation, and is difficult to adapt to the needs of large-area construction.
An automatic wall positioning and grooving machine was designed, which adopts a support and guide structure and a drive structure, including a dual-output vertical drive component and a speed change structure, to realize the automated drive and path angle adjustment of the grooving equipment.
It has enabled the automated operation of grooving equipment, simplified the construction process, and improved construction efficiency and accuracy.
Smart Images

Figure CN116714111B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of indoor decoration wall grooving machine, in particular to a wall automatic positioning grooving machine. BACKGROUND
[0002] In order to maintain the beauty of the decoration style, indoor decoration adopts the grooving and pipe burying process to arrange pipelines. The existing equipment for opening the pipe burying groove is a handheld device. This construction process greatly depends on the operation level of workers, and consumes more labor. It is not conducive to large-area construction projects. Therefore, the wall grooving equipment needs to be improved to develop from the original equipment to an automatic equipment so that the equipment can be operated visually and has higher automation performance. SUMMARY
[0003] The purpose of the present application is to overcome the defects and deficiencies of the prior art, and provide a wall automatic positioning grooving machine. The supporting and guiding structure and the corresponding driving structure are provided to facilitate the erection of the grooving equipment and the automatic driving relying on the driving structure, thereby simplifying the grooving process. The driving structure adopts a double-output structure perpendicular to each other, and a corresponding speed regulation structure is provided to adjust the running path angle of the grooving equipment, so as to open grooves of different angles according to the process requirements.
[0004] To achieve the above purpose, the following technical scheme is adopted in the present application:
[0005] It comprises a base and a top support, wherein the top support is two and symmetrically fixed on the left and right ends of the base, and it further comprises:
[0006] A supporting assembly is arranged on the base, and the supporting assembly is arranged in cooperation with the top support;
[0007] A driving assembly is arranged on the supporting assembly, and the driving assembly is arranged in transmission with the supporting assembly;
[0008] An installation assembly is arranged on the supporting assembly;
[0009] A grooving equipment is arranged on the installation assembly;
[0010] In use, when facing the indoor wall that needs to be grooved, the base is placed at the wall foot, and the top support is fixed on the indoor ceiling, thereby realizing the installation and fixation of the base. Then the installation assembly is arranged on the supporting assembly, and the grooving equipment is arranged on the installation assembly. The supporting assembly is moved by the driving assembly, and then the installation assembly is moved by the supporting assembly, that is, the grooving equipment is moved to perform the grooving construction on the wall.
[0011] Preferably, the supporting assembly comprises:
[0012] Horizontal slide rail pairs are fixedly arranged on the base;
[0013] Load-bearing seats are arranged on the horizontal slide rail pairs;
[0014] Longitudinal supports are fixedly arranged on the load-bearing seats;
[0015] Lifting slide rails are fixedly arranged on the longitudinal supports;
[0016] Connecting seats are arranged on the lifting slide rails;
[0017] In use, the load-bearing seats drive the longitudinal supports to slide on the horizontal slide rail pairs, so as to realize horizontal displacement of the longitudinal supports, and the connecting seats slide on the lifting slide rails to realize vertical displacement.
[0018] Preferably, cross supports are arranged between the top braces, guide slide rails are fixedly arranged on the top braces, end heads of the cross supports are arranged on the guide slide rails, support slide rails are fixedly arranged on the cross supports, and the connecting seats are arranged on the support slide rails;
[0019] In use, when the longitudinal supports move and drive the connecting seats to move horizontally, the connecting seats slide on the support slide rails of the cross supports, and when the connecting seats move vertically, the connecting seats drive the cross supports to slide on the guide slide rails.
[0020] Preferably, the driving assembly comprises:
[0021] Horizontal lead screws are fixedly arranged on the base;
[0022] Horizontal threaded sleeves are threadedly arranged on the horizontal lead screws, and the horizontal threaded sleeves are rotatably arranged on the load-bearing seats by bearings;
[0023] Drive shafts are rotatably arranged on the load-bearing seats by bearings;
[0024] Horizontal clutch gearboxes are fixedly arranged on the load-bearing seats, one end of the drive shafts is in transmission connection with input shafts of the horizontal clutch gearboxes, and output shafts of the horizontal clutch gearboxes are in transmission connection with the horizontal threaded sleeves through sprocket and chain sets;
[0025] Driving motors are fixedly arranged on the load-bearing seats, output shafts of the driving motors are in transmission connection with the one end of the drive shafts away from the horizontal clutch gearboxes;
[0026] Vertical lead screws are rotatably arranged on the longitudinal supports by bearings, and the vertical lead screws are threadedly arranged on the connecting seats;
[0027] The vertical clutch gear box is fixedly arranged on the load bearing seat, and the input shaft of the vertical clutch gear box is connected with the driving shaft through the bevel gear set;
[0028] The multi-gear transmission gear box is fixedly arranged on the load bearing seat, and the input shaft of the multi-gear transmission gear box is connected with the output shaft of the vertical clutch gear box, and the output shaft of the multi-gear transmission gear box is connected with the lower end of the vertical screw rod;
[0029] In use, the horizontal threaded sleeve is rotated, and then the horizontal threaded sleeve moves on the horizontal screw rod, thereby driving the load bearing seat to move, the vertical screw rod is rotated, thereby driving the connecting seat to move vertically, the driving motor is operated to drive the driving shaft to rotate, and then the driving shaft drives the input shaft of the horizontal clutch gear box and the input shaft of the vertical clutch gear box to rotate;
[0030] When the horizontal clutch gear box is disconnected, the horizontal threaded sleeve stops rotating, when the horizontal clutch gear box is closed, the horizontal threaded sleeve is driven to rotate through the driving shaft, when the vertical clutch gear box is disconnected, the vertical screw rod stops rotating, and when the vertical clutch gear box is closed, the vertical screw rod is driven to rotate through the driving shaft and the multi-gear transmission gear box;
[0031] The driving motor operates at rated power, that is, the rotating speed of the driving shaft remains unchanged, that is, the rotating speed of the horizontal threaded sleeve remains unchanged, that is, the horizontal moving speed of the load bearing seat remains unchanged, the input and output rotating speed ratio of the multi-gear transmission gear box is adjusted, that is, the rotating speed of the vertical screw rod is adjusted, that is, the vertical moving speed of the connecting seat on the lifting slide rail is adjusted, and finally the ratio of the horizontal moving speed to the vertical moving speed of the connecting seat is adjusted, that is, the inclination angle of the linear moving path of the connecting seat is adjusted.
[0032] Preferably, the mounting assembly comprises:
[0033] The mounting seat is fixedly arranged on the connecting seat;
[0034] The rotating arm is rotatably arranged on the mounting seat through the rotating shaft, a plurality of work position pin holes are formed in the mounting seat, a pin rod is rotatably arranged on the rotating arm through the threaded connection, and the pin rod on the rotating arm is arranged in one of the work position pin holes;
[0035] The rotating table is rotatably arranged on the rotating arm away from the end of the rotating arm and the mounting seat through the rotating shaft, a plurality of angle pin holes are formed in the rotating table, a pin rod is arranged in one of the angle pin holes, the pin rod in the angle pin hole is rotatably arranged on the rotating arm through the threaded connection, and the slotting device is fixedly arranged on the rotating table;
[0036] In use, the connecting seat moves and drives the mounting seat to move, and then the mounting seat realizes the installation of the slotting device through the rotating arm and the rotating table, and then drives the slotting device to carry out the slotting construction of linear movement, after adjusting the inclination angle of the linear path of the connecting seat, the orientation of the slotting device is adjusted through the rotating table, so that the working path and the advancing path of the slotting device remain horizontal.
[0037] The working face is divided into four working intervals by the transverse support and the longitudinal support, and then the position of the rotating table is adjusted by rotating the rotating arm, and then the slotting device is arranged in the corresponding working interval for slotting construction.
[0038] Preferably, a sleeve is rotatably arranged on the top support through a rotating shaft, a top rod is movably arranged in the sleeve, and the top rod is arranged obliquely, and a plow is arranged at the lower end of the top rod.
[0039] Compared with the prior art, the beneficial effects of the present application are:
[0040] 1. The base and the top support are arranged to realize the fixed installation of the equipment foundation processing, the movable bearing seat is arranged, and the longitudinal support is installed relying on the bearing seat, the connecting seat is arranged on the longitudinal support, and then the mounting seat and the slotting device relying on the mounting seat are arranged through the connecting seat, and then the movement of the mounting seat on the plane is realized through the horizontal movement and the vertical movement of the bearing seat.
[0041] 2. The horizontal lead screw is arranged to drive the bearing seat, the vertical lead screw is arranged to drive the connecting seat, the drive shaft and the drive motor are arranged, and the drive shaft is drivingly connected with the horizontal lead screw and the vertical lead screw through the transmission structure, and a multi-gear gearbox is arranged on the transmission structure of the vertical lead screw, so as to realize the adjustment of the speed ratio of the bearing seat and the connecting seat, that is, the adjustment of the inclination angle of the advancing path of the connecting seat.
[0042] 3. The transverse supports are arranged between the top supports, the transverse supports are butted with the top supports through the guide sliding rails, the connecting seat is connected with the transverse supports through the supporting sliding rails, and then when the connecting seat moves, the connecting seat drives the transverse supports to slide on the guide sliding rails, and the connecting seat slides on the supporting sliding rails, so as to realize the strengthening and limiting of the connecting seat through the transverse supports. DETAILED DESCRIPTION
[0043] Figure 1 is a structural schematic diagram of the present application.
[0044] Figure 2 is Figure 1 a front view.
[0045] Figure 3 is a structural schematic diagram of the connecting seat in the present application.
[0046] Figure 4 is Figure 1 an enlarged view of A in the figure.
[0047] Figure 5 yes Figure 1 Enlarged view of part B in the image.
[0048] Explanation of reference numerals in the attached figures:
[0049] 1. Base; 2. Top support; 3. Grooving equipment; 4. Support assembly; 4-1. Horizontal slide rail pair; 4-2. Load-bearing seat; 4-3. Longitudinal bracket; 4-4. Lifting slide rail; 4-5. Connecting seat; 5. Drive assembly; 5. Horizontal lead screw; 5-1. Horizontal threaded sleeve; 5-2. Drive shaft; 5-3. Horizontal clutch gearbox; 5-4. Drive motor; 5-5. Vertical lead screw; 5-6. Vertical clutch gearbox; 5-7. Multi-speed gearbox; 5-8. Mounting assembly; 6. Mounting seat; 6-1. Rotary arm; 6-2. Workstation pin hole; 6-3. Rotary table; 6-4. Angle pin hole; 6-5. Horizontal bracket; 7. Guide slide rail; 8. Support slide rail; 9. Insert sleeve; 10. Top rod; 11. Plow holder; 12. Detailed Implementation
[0050] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. The preferred embodiments described are only examples. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0051] Example 1:
[0052] like Figure 1 As shown, this embodiment includes a base 1 and two top supports 2, which are symmetrically fixed at the left and right ends of the base 1; it also includes:
[0053] Support component 4 is disposed on base 1 and is configured in conjunction with top support 2;
[0054] The drive component 5 is disposed on the support component 4 and is connected to the support component 4 in a transmission manner.
[0055] Mounting component 6 is mounted on support component 4;
[0056] The grooving device 3 is mounted on the mounting component 6.
[0057] Using the above design scheme, when facing the interior wall surface that needs to be grooved, the base 1 is placed at the foot of the wall and fixed to the interior ceiling by the top support 2, thereby realizing the installation and fixation of the base 1. Then, the mounting component 6 is set on the support component 4, and the grooving device 3 is set on the mounting component 6. The drive component 5 drives the support component 4 to move, and the support component 4 drives the mounting component 6 to move, that is, drives the grooving device 3 to move to perform grooving construction on the wall surface.
[0058] Embodiment 2:
[0059] As Figures 1-5 shown in the above embodiment 1, the support assembly 4 comprises:
[0060] A horizontal slide rail pair 4-1 is fixedly arranged on the base 1;
[0061] A load-bearing seat 4-2 is arranged on the horizontal slide rail pair 4-1;
[0062] A vertical support 4-3 is fixedly arranged on the load-bearing seat 4-2;
[0063] A lifting slide rail 4-4 is fixedly arranged on the vertical support 4-3;
[0064] A connecting seat 4-5 is arranged on the lifting slide rail 4-4;
[0065] A horizontal support 7 is arranged between the two side braces 2;
[0066] A guide slide rail 8 is fixedly arranged on the brace 2, and the end of the horizontal support 7 is slidingly arranged on the guide slide rail 8;
[0067] A support slide rail 9 is fixedly arranged on the horizontal support 7, and the connecting seat 4-5 is slidingly arranged on the support slide rail 9;
[0068] The load-bearing seat 4-2 moves left and right on the horizontal slide rail pair 4-1, and the vertical support 4-3 and the connecting seat 4-5 on the vertical support 4-3 move left and right, the connecting seat 4-5 moves up and down on the lifting slide rail 4-4, and when the connecting seat 4-5 moves horizontally, the connecting seat 4-5 slides on the support slide rail 9, and when the connecting seat 4-5 moves vertically, the connecting seat 4-5 drives the horizontal support 7 to slide on the guide slide rail 8;
[0069] The brace 2 supports the building roof to erect the base 1, and the horizontal support 7 stably supports the connecting seat 4-5 when the connecting seat 4-5 moves;
[0070] A plug sleeve 10 is rotatably arranged on the brace 2 through a rotating shaft;
[0071] A jacking rod 11 is movably arranged in the plug sleeve 10, and the jacking rod 11 is arranged obliquely;
[0072] A plow 12 is fixedly arranged on the jacking rod 11 away from the plug sleeve 10;
[0073] After the top support 2 is installed, it is supported diagonally on the ground by the top rod 11, thereby achieving lateral support for the top support 2;
[0074] The installation component 6 includes:
[0075] Mounting base 6-1, wherein the mounting base 6-1 is fixedly mounted on the connecting base 4-5;
[0076] Rotary arm 6-2 is spun onto mounting base 6-1 via a rotating shaft. Mounting base 6-1 has several work position pin holes 6-3. A pin is threaded through and connected to the rotary arm 6-2, and the pin on the rotary arm 6-2 passes through one of the work position pin holes 6-3.
[0077] Rotary table 6-4 is spun onto the rotating arm 6-2 via a rotating shaft at one end away from the rotating arm 6-2 and the shaft connecting the mounting base 6-1. Several angle pin holes 6-5 are provided on the rotary table 6-4. A pin is inserted into one of the angle pin holes 6-5, and the pin in the angle pin hole is threaded and inserted into the rotating arm 6-2. The grooving device 3 is fixedly installed on the rotary table 6-4.
[0078] The movement of the connecting seat 4-5 drives the installation seat 6-1 to move, which in turn drives the grooving equipment 3 to move for grooving construction. After setting the movement path of the installation seat 6-1, the angle of the grooving equipment 3 is adjusted by the rotary table 6-4 so that the working end of the grooving equipment 3 matches its travel path.
[0079] The plane is divided into four working periods by the longitudinal support 4-3 and the transverse support 7. Since the grooving equipment 3 is mounted on the side of the mounting base 6-1 by the rotary table 6-4, the rotary table 6-4 can be adjusted to be placed in different working areas by the rotating arm 6-2 according to the process requirements of the grooving position.
[0080] Example 3:
[0081] like Figures 1-5 As shown, based on the above embodiment 2, the driving component 5 includes:
[0082] Horizontal lead screw 5-1, wherein the horizontal lead screw 5-1 is fixedly mounted on the base 1;
[0083] The horizontal threaded sleeve 5-2 is threadedly fitted onto the horizontal lead screw 5-1 and screwed onto the bearing seat 4-2 via a bearing.
[0084] The drive shaft 5-3 is screwed onto the support 4-2 via bearings;
[0085] A horizontal clutch gear box 5-4 is fixedly arranged on the load bearing seat 4-2, and one end of the drive shaft 5-3 is in transmission connection with the input shaft of the horizontal clutch gear box 5-4, and the output shaft of the horizontal clutch gear box 5-4 is in transmission connection with the horizontal threaded sleeve 5-2 through a chain wheel and chain set;
[0086] A drive motor 5-5 is fixedly arranged on the load bearing seat 4-2, and the output shaft of the drive motor 5-5 is in transmission connection with the end of the drive shaft 5-3 away from the horizontal clutch gear box 5-4;
[0087] A vertical screw rod 5-6 is rotatably arranged on the longitudinal support 4-3 through a bearing, and the vertical screw rod 5-6 is arranged through and screwed on the connecting seat 4-5;
[0088] A vertical clutch gear box 5-7 is fixedly arranged on the load bearing seat 4-2, and the input shaft of the vertical clutch gear box 5-7 is in transmission connection with the drive shaft 5-3 through a bevel gear set;
[0089] A multi-gear transmission gear box 5-8 is fixedly arranged on the load bearing seat 4-2, the input shaft of the multi-gear transmission gear box 5-8 is in transmission connection with the output shaft of the vertical clutch gear box 5-7, and the output shaft of the multi-gear transmission gear box 5-8 is in transmission connection with the lower end of the vertical screw rod 5-6;
[0090] The multi-gear transmission gear box 5-8 is used for forward and reverse gear adjustment and speed gear adjustment, so as to realize forward and reverse rotation adjustment and speed adjustment of the vertical screw rod 5-6, and the connecting seat has a 30°, 45°, 60°, 120°, 135°, 150° angle operating path;
[0091] In use, the horizontal threaded sleeve 5-2 is rotated, the horizontal threaded sleeve 5-2 moves on the horizontal screw rod 5-1, the load bearing seat 4-2 is moved, the connecting seat 4-5 is moved in the vertical direction by rotating the vertical screw rod 5-6, the drive motor 5-5 is driven to rotate the drive shaft 5-3, and the input shaft of the horizontal clutch gear box 5-4 and the input shaft of the vertical clutch gear box 5-7 are driven to rotate by the drive shaft 5-3;
[0092] When the horizontal clutch gear box 5-4 is disconnected, the horizontal threaded sleeve 5-2 stops rotating, when the horizontal clutch gear box 5-4 is closed, the horizontal threaded sleeve 5-2 is driven to rotate through the drive shaft 5-3, when the vertical clutch gear box 5-7 is disconnected, the vertical screw rod 5-6 stops rotating, and when the vertical clutch gear box 5-7 is closed, the vertical screw rod 5-6 is driven to rotate through the drive shaft 5-3 and the multi-gear transmission gear box 5-8;
[0093] The driving motor 5-5 works at rated power, that is, the rotating speed of the driving shaft 5-3 remains unchanged, that is, the rotating speed of the horizontal threaded sleeve 5-2 remains unchanged, that is, the horizontal moving speed of the load bearing seat 4-2 remains unchanged, the input and output rotating speed ratio of the multi-gear variable speed gearbox 5-8 is adjusted, that is, the rotating speed of the vertical screw rod 5-6 is adjusted, that is, the vertical moving speed of the connecting seat 4-5 on the lifting slide rail 4-4 is adjusted, and finally the horizontal moving speed and vertical moving speed ratio of the connecting seat 4-5 is adjusted, that is, the inclination angle of the linear moving path of the connecting seat 4-5 is adjusted.
[0094] After the technical scheme disclosed by the application is adopted, the following can be achieved:
[0095] When the device is used, the base 1 is placed at the wall foot, the upper end of the shore 2 is pressed against the roof, the top rod 11 is inserted into the insertion sleeve 10, the plow 12 is used to support the ground, and then the installation of the base 1 is completed. According to the direction of the slotting, the rotating arm 6-2 is rotated to adjust the working range of the rotating table 6-4 and the slotting device 3, then the rotating speed ratio of the vertical screw rod 5-6 is adjusted through the multi-gear variable speed gearbox 5-8, that is, the inclination angle of the moving path of the mounting seat 6-1 is set, and then the angle of the slotting device 3 is adjusted by rotating the rotating table 6-4 to adapt to the angle of the slotting path.
[0096] The driving motor 5-5 drives the driving shaft 5-3 to rotate, and then the driving shaft 5-3 drives the vertical screw rod 5-6 to rotate through the vertical clutch gearbox 5-7 and the multi-gear variable speed gearbox 5-8, and then drives the connecting seat 4-5 to slide on the lifting slide rail 4-4. The driving shaft 5-3 drives the horizontal screw rod 5-1 to rotate through the horizontal clutch gearbox 5-4, and then drives the load bearing seat 4-2 to slide on the horizontal slide rail pair 4-1, that is, the load bearing seat 4-2 drives the longitudinal support 4-3 and the connecting seat 4-5 on the longitudinal support 4-3 to move horizontally. When the connecting seat 4-5 slides up and down, the horizontal support 7 slides on the guide slide rail 8. When the connecting seat 4-5 slides left and right, it slides on the support slide rail 9. Then the connecting seat 4-5 drives the mounting seat 6-1 to move on the plane, and the inclination angle of the moving path of the mounting seat 6-1 is adjusted through different rotating speed ratios of the horizontal screw rod 5-1 and the vertical screw rod 5-6. Then the mounting seat 6-1 drives the slotting device 3 to move through the rotating arm 6-2 and the rotating table 6-4 to perform slotting construction on the wall surface.
[0097] When the mounting seat 6-1 only moves in the up-down direction, the horizontal clutch gear box 5-4 is in neutral, and then the drive shaft 5-3 stops driving the horizontal threaded sleeve 5-2, that is, the load-bearing seat 4-2 stops moving, at this time only the vertical screw rod 5-6 drives the connecting seat 4-5 to move up and down; when the mounting seat 6-1 only moves in the left-right direction, the vertical clutch gear box 5-7 is in neutral, and then the vertical screw rod 5-6 stops rotating, and then only the load-bearing seat 4-2 drives the longitudinal support 4-3 and the connecting seat 4-5 to move left and right.
[0098] The technical advantages achieved by the above technical solutions are as follows:
[0099] 1. The base 1 and the top support 2 are arranged to realize fixed installation of equipment foundation machining, the movable load-bearing seat 4-2 is arranged, the longitudinal support 4-3 is arranged on the load-bearing seat 4-2, the connecting seat 4-5 is arranged on the longitudinal support 4-3, then the mounting seat 6-1 and the slotted equipment 3 arranged on the mounting seat 6-1 are arranged through the connecting seat 4-5, and then the horizontal movement and the vertical movement of the load-bearing seat 4-2 are realized to realize the movement of the mounting seat 6-1 on the plane.
[0100] 2. The horizontal screw rod 5-1 is arranged to drive the load-bearing seat 4-2, the vertical screw rod 5-6 is arranged to drive the connecting seat 4-5, the drive shaft 5-3 and the drive motor 5-5 are arranged, the drive shaft 5-3 is connected with the horizontal screw rod 5-1 and the vertical screw rod 5-6 through a transmission structure, and a multi-gear transmission gear box 5-8 is arranged on the transmission structure of the vertical screw rod 5-6, so as to realize the adjustment of the speed ratio of the load-bearing seat 4-2 and the connecting seat 4-5, that is, the adjustment of the inclination angle of the travel path of the connecting seat 4-5.
[0101] 3. The horizontal support 7 is arranged between the top supports 2, the horizontal support 7 is connected with the top supports 2 through the guide sliding rail 8, the connecting seat 4-5 is connected with the horizontal support 7 through the supporting sliding rail 9, then when the connecting seat 4-5 moves, the connecting seat 4-5 drives the horizontal support 7 to slide on the guide sliding rail 8, and the connecting seat 4-5 slides on the supporting sliding rail 9, so as to realize the strengthening and limiting of the connecting seat 4-5 through the horizontal support 7.
[0102] For those skilled in the art, the technical solutions described in the foregoing embodiments can be modified, and equivalent replacement of part of the technical features can be made, and any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A wall automatic positioning slotter, comprising a base and top supports, wherein the top supports are two and are symmetrically arranged at the left and right ends of the base; characterized in that, It also contains: Supporting assembly, the supporting assembly contains bearing seat, vertical support and connecting seat, the supporting assembly is arranged on the base, and the supporting assembly is matched with the top support; Driving assembly, the driving assembly is arranged on the supporting assembly, and the driving assembly is drivingly arranged with the supporting assembly; Mounting assembly, the mounting assembly is arranged on the supporting assembly; Slotting equipment, the slotting equipment is arranged on the mounting assembly; The driving assembly contains: Horizontal screw rod, the horizontal screw rod is fixedly arranged on the base; Horizontal threaded sleeve, the horizontal threaded sleeve is threadedly arranged on the horizontal screw rod, and the horizontal threaded sleeve is rotatably arranged on the bearing seat; Drive shaft, the drive shaft is rotatably arranged on the bearing seat; Horizontal clutch gear box, the horizontal clutch gear box is fixedly arranged on the bearing seat, one end of the drive shaft is drivingly connected with the input shaft of the horizontal clutch gear box, and the output shaft of the horizontal clutch gear box is drivingly connected with the horizontal threaded sleeve through a chain wheel and chain group; Driving motor, the driving motor is fixedly arranged on the bearing seat, the output shaft of the driving motor is drivingly connected with one end of the drive shaft away from the horizontal clutch gear box; Vertical screw rod, the vertical screw rod is rotatably arranged on the vertical support through a bearing, and the vertical screw rod is rotatably arranged on the connecting seat through a threaded sleeve; Vertical clutch gear box, the vertical clutch gear box is fixedly arranged on the bearing seat, and the input shaft of the vertical clutch gear box is drivingly connected with the drive shaft through a bevel gear group; Multi-gear transmission gear box, the multi-gear transmission gear box is fixedly arranged on the bearing seat, the input shaft of the multi-gear transmission gear box is drivingly connected with the output shaft of the vertical clutch gear box, and the output shaft of the multi-gear transmission gear box is drivingly connected with the lower end of the vertical screw rod.
2. The wall automatic positioning slotter according to claim 1, characterized in that: The supporting assembly further contains a horizontal slide rail pair and a lifting slide rail, the horizontal slide rail pair is fixedly arranged on the base, the bearing seat is arranged on the horizontal slide rail pair, the vertical support is fixedly arranged on the bearing seat, the lifting slide rail is fixedly arranged on the vertical support, and the connecting seat is arranged on the lifting slide rail.
3. The wall automatic positioning slotter according to claim 2, characterized in that: The top support is provided with a horizontal support, the top support is fixedly provided with a guide slide rail, the end of the horizontal support is arranged on the guide slide rail, the horizontal support is fixedly provided with a supporting slide rail, and the connecting seat is arranged on the supporting slide rail.
4. The wall automatic positioning slotter according to claim 3, characterized in that: The mounting assembly contains: Mounting seat, the mounting seat is fixedly arranged on the connecting seat; Rotary arm, the rotary arm is rotatably arranged on the mounting seat through a rotating shaft, a plurality of work position pin holes are formed in the mounting seat, a pin rod is rotatably arranged on the rotary arm through a threaded sleeve, and the pin rod on the rotary arm is rotatably arranged in one of the work position pin holes; Rotary table, the rotary table is rotatably arranged on the rotary arm through a rotating shaft away from the end of the rotary arm and the threaded sleeve, a plurality of angle pin holes are formed in the rotary table, a pin rod is rotatably arranged in one of the angle pin holes, the pin rod in the angle pin hole is rotatably arranged on the rotary arm through a threaded sleeve, and the slotting equipment is fixedly arranged on the rotary table.
5. The wall automatic positioning slotter according to claim 4, characterized in that: The top support is rotatably provided with a plug sleeve through a rotating shaft, a jack is movably arranged in the plug sleeve, and the jack is obliquely arranged, and a plow is arranged at the lower end of the jack.
Citation Information
Patent Citations
Wall surface grooving device for building construction
CN213137347U