An automatic device for a grooving machine
Patent Information
- Application Number
- CN202522278065.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-28
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-10-28
AI Technical Summary
[0003]但在实际操作中,上述装置存在以下问题:1、需要人工长时间手持操作,增加了劳动强度及劳动风险;2、近距离操作,粉尘和泥浆等对施工人员造成了健康危害
[0007]与现有技术相比,本实用新型的优点在于:通过电机输出轴驱动齿轮一起沿着导轨槽移动,携带开槽机自动进行切割开槽,替代了人工手持操作,一方面是提高工作效率,减少劳动强度及劳动风险,另一方面是减少了粉尘和泥浆等造成的健康危害。
Smart Images

Figure CN224796033U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of building decoration equipment, and in particular to an automatic device for a grooving machine. Background Technology
[0002] Wall grooving machines are mainly used for grooving and cutting hard walls such as concrete, granite, and brick walls to lay electrical wires, water pipes, and other pipelines, meeting the needs of concealed works in home decoration or old house renovation. They can cut a variety of hard materials and are widely used in concealed pipe laying scenarios in water and electricity installation projects on various wall structures.
[0003] However, in actual operation, the above-mentioned device has the following problems: 1. It requires manual operation for a long time, which increases labor intensity and labor risks; 2. Close-range operation causes health hazards to construction workers due to dust and mud. Summary of the Invention
[0004] To address the shortcomings of the existing technology, this utility model provides an automatic grooving machine device, which is easy to operate and uses a mechanically carried grooving machine to automatically cut and groove, replacing manual hand operation.
[0005] The technical solution adopted by this utility model to solve the above-mentioned technical problems is as follows: an automatic grooving machine device, including a vertical rod, a first fixed pipe, a first bolt, a second bolt, a second fixed pipe, and a third bolt. The vertical rod is a bidirectional screw structure that can be extended or shortened. The first fixed pipe is a "T"-shaped pipe, and the main pipe slides on the vertical rod. The first bolt is lockable. The second bolt is provided on the branch pipe. The second fixed pipe is a "T"-shaped pipe. The main pipe adopts a split structure, consisting of a fixed half-pipe and an openable half-pipe connected by a hinge shaft. The fixed half-pipe extends to a connecting ear and is fixedly connected to the branch pipe. The openable half-pipe can rotate around the hinge shaft to realize the lateral opening or closing of the main pipe. The third bolt is provided on the opening side to lock it closed. The branch pipe can be inserted into the branch pipe of the first fixed pipe. The second bolt is lockable. The automatic grooving machine device also includes a fixed rod, a guide rail groove, a gear, a motor, a fixed cylinder, a fourth bolt, a straight arm, and an "L"-shaped arm. Both the guide rail and the guide rail groove are L-shaped and are fixed at both ends by a bridge connection. The fixing rod and the guide rail groove can be flipped up and down or reversed horizontally as a whole. The fixing rod can be inserted into the main pipe of the second fixing tube from either direction. The third bolt can lock it. The guide rail groove is a U-shaped cross-section profile with a strip-shaped flat guide rail on the bottom surface. The two sides of the inner wall of the groove are symmetrically provided with guide grooves, which are parallel to the guide rail. The gear meshes with the guide rail of the guide rail groove, and the two ends of the central shaft of the gear can be inserted into the guide grooves on the two sides of the inner wall of the groove and can move. The motor can be locked on any side wall of the guide rail groove, and the output shaft of the motor can drive the gear to move along the guide rail groove together. The fixing cylinder is set on the motor. The fourth bolt is set on the fixing cylinder. The straight arm and the L-shaped arm can be inserted into the fixing cylinder. The fourth bolt can lock it. The straight arm and the L-shaped arm can be fixedly connected to the grooving machine.
[0006] The upright further includes a screw cylinder, a long rod, a short rod, a top plate, and a base. The screw cylinder is a bidirectional inner nut tube. One end of the long rod is screw-shaped and can be screwed into one end of the screw cylinder for connection, while the other end is an inner nut tube. One end of the short rod is screw-shaped and can be screwed into the other end of the screw cylinder for connection. The long rod and the short rod are fixed in place and do not rotate. The upright can be extended or shortened by rotating the screw cylinder in different directions. The top plate is a central concave plate with a screw rod at the center of the convex surface, which can be screwed into the inner nut tube end of the long rod for connection. The base has a hole in the center, into which the other end of the short rod can be inserted and fixed.
[0007] Compared with the prior art, the advantages of this utility model are: the motor output shaft drives the gears to move along the guide rail groove, carrying the grooving machine to automatically cut and groove, replacing manual hand operation. On the one hand, it improves work efficiency and reduces labor intensity and labor risks, and on the other hand, it reduces health hazards caused by dust and mud. Attached Figure Description
[0008] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a three-dimensional structural diagram of the cross-section of one end of the guide rail groove in this utility model; Figure 3 This is a three-dimensional structural diagram of the "L"-shaped arm in this utility model; Figure 4 This is a three-dimensional structural diagram of the disassembled state of this utility model. Detailed Implementation
[0009] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments, but this is not intended to limit the present invention.
[0010] Example 1: As shown in the figure, an automatic grooving machine includes a vertical rod 1, a first fixed pipe 2, a first bolt 17, a second bolt 18, a second fixed pipe 3, and a third bolt 19. The vertical rod 1 is a bidirectional screw structure that can be extended or shortened. The first fixed pipe 2 is a "T"-shaped pipe, with the main pipe sliding on the vertical rod 1 and locked by the first bolt 17. The branch pipe is equipped with the second bolt 18. The second fixed pipe 3 is a "T"-shaped pipe, with the main pipe having a split structure, consisting of a fixed half-pipe and an openable half-pipe connected by a hinge shaft. The fixed half-pipe extends to a connecting ear and is fixedly connected to the branch pipe. The openable half-pipe can rotate around the hinge shaft to achieve lateral opening or closing of the main pipe, and is locked closed by the third bolt 19 on the opening side. The branch pipe can be inserted into the branch pipe of the first fixed pipe 2 and locked by the second bolt 18. The automatic grooving machine also includes a fixed rod 4, a guide rail groove 5, a gear 10, a motor 6, a fixed cylinder 7, a fourth bolt 8, and a straight arm. 9 and "L"-shaped arm 16, fixing rod 4 and guide rail groove 5 are all "L" shaped, and the two are fixed by bridge connection at both ends. Fixing rod 4 and guide rail groove 5 can be flipped up and down or reversed horizontally as a whole. Fixing rod 4 can be inserted into the main pipe of second fixing tube 3 from either direction. The third bolt 19 can lock it. Guide rail groove 5 is a "U" shaped cross section profile. The bottom surface of the groove is provided with strip flat guide rail. The two sides of the inner side wall of the groove are symmetrically provided with guide grooves, which are parallel to the guide rail. Gear 10 meshes with the guide rail of guide rail groove 5. The two ends of the central shaft of gear 10 are respectively inserted into the guide grooves on the two sides of the inner side wall of the groove and can move. Motor 6 can be locked on any side wall of guide rail groove 5. The output shaft of motor 6 can drive gear 10 to move along guide rail groove 5 together. Fixing cylinder 7 is provided on motor 6. Fourth bolt 8 is provided on fixing cylinder 7. Straight arm 9 and "L"-shaped arm 16 can be inserted into fixing cylinder 7. Fourth bolt 8 can lock it. The other end of straight arm 9 and "L"-shaped arm 16 can be fixedly connected to grooving machine.
[0011] Example 2: As shown in the figure, the other structures are the same as in Example 1, except that the upright 1 further includes a screw cylinder 12, a long rod 11, a short rod 13, a top plate 14, and a base 15. The screw cylinder 12 is a bidirectional inner nut tube. One end of the long rod 11 is screw-shaped and can be screwed into one end of the screw cylinder 12 for connection, while the other end is an inner nut tube. One end of the short rod 13 is screw-shaped and can be screwed into the other end of the screw cylinder 12 for connection. The long rod 11 and the short rod 13 are fixed and do not rotate. The upright 1 can be extended or shortened by rotating the screw cylinder 12 in different directions. The top plate 14 is a central concave plate, and a screw rod is provided at the center of the convex surface, which can be screwed into the inner nut tube end of the long rod 11 for connection. The base 15 has a hole in the center, into which the other end of the short rod 13 can be inserted and fixed.
[0012] Example 3: As shown in the figure, the other structures are the same as in Example 1, except that the upright 1 is placed upright in the room, the long rod 11 and the short rod 13 are fixed and do not rotate, the screw 12 is rotated to extend the upright 1, the top plate 14 is pressed against the ceiling, the upright 1 is firmly fixed between the floor and the ceiling, the first bolt 17 is tightened to lock the first fixing tube 2 on the upright 1 and prevent it from moving, the second fixing tube 3 branch is inserted into the first fixing tube 2 branch, the second bolt 18 is tightened to lock it, the guide rail groove 5 is pressed against the wall, the fixing rod 4 is inserted into the second fixing tube 3 main tube, the third bolt 19 is tightened to lock it, the motor 6 is locked on the corresponding side wall of the guide rail groove 5 and outputs... The shaft is connected to the gear 10. The straight arm 9 is inserted into the fixed cylinder 7 and the fourth bolt 8 is tightened to lock it. The grooving machine is fixed on the straight arm 9. The power of the grooving machine and the motor 6 is turned on. The motor 6 drives the gear 10 to move together along the guide rail groove 5. The grooving machine automatically grooves the wall. As needed, the fixed rod 4 and the guide rail groove 5 can be flipped up and down or reversed horizontally. The motor 6 is locked on the corresponding side wall of the guide rail groove 5, and the output shaft is connected to the gear 10. The gear 10 is driven to move together along the guide rail groove 5. Multi-directional grooving can be performed. The straight arm 9 is replaced with an "L" shaped arm 16. The grooving machine can automatically perform grooving operations on horizontal surfaces such as roofs or floors.
[0013] It is worth noting that the above description is only a preferred embodiment of this utility model and does not limit the scope of patent protection of this utility model. This utility model can also improve the materials and structure of the above-mentioned components, or replace them with technical equivalents. Therefore, all equivalent structural changes made based on the description and drawings of this utility model, or direct or indirect applications to other related technical fields, are similarly included within the scope of this utility model.
Claims
1. An automatic device for a grooving machine, comprising a vertical pole, a first fixed pipe, a first bolt, a second bolt, a second fixed pipe, and a third bolt, wherein the vertical pole is a bidirectional screw structure, the first fixed pipe is a "T"-shaped pipe, the main pipe slides on the vertical pole, and the first bolt is lockable, the second bolt is provided on the branch pipe, the second fixed pipe is a "T"-shaped pipe, the main pipe adopts a split structure, consisting of a fixed half-pipe and an openable half-pipe connected by a hinge shaft, the fixed half-pipe extends to a connecting lug and is fixedly connected to the branch pipe, the openable half-pipe can rotate around the hinge shaft to realize the lateral opening or closing of the main pipe, and the third bolt is provided on the opening side to lock it closed, the branch pipe can be inserted into the branch pipe of the first fixed pipe, and the second bolt is lockable, characterized in that: The automatic grooving machine further includes a fixed rod, a guide rail groove, a gear, a motor, a fixed cylinder, a fourth bolt, a straight arm, and an "L"-shaped arm. Both the fixed rod and the guide rail groove are "L"-shaped and are fixed at both ends by a bridge connection. The fixed rod and the guide rail groove can be rotated vertically or horizontally as a single unit. The fixed rod can be inserted into the second fixed main pipe from either direction. The guide rail groove is a "U"-shaped cross-section profile with a strip-shaped flat guide rail on the bottom surface. Symmetrical guide grooves are provided on both sides of the groove, parallel to the guide rail. The gear meshes with the guide rail groove, and the two ends of the gear's central shaft are respectively inserted into the guide grooves on both sides of the groove, allowing movement. The motor can be locked onto any side wall of the guide rail groove, and the motor's output shaft can drive the gear to move along the guide rail groove. The fixed cylinder is located on the motor, and the fourth bolt is located on the fixed cylinder. Both the straight arm and the "L"-shaped arm can be inserted into the fixed cylinder.
2. The automatic grooving machine device according to claim 1, characterized in that... The upright further includes a screw cylinder, a long rod, a short rod, a top plate, and a base. The screw cylinder is a bidirectional inner nut tube. One end of the long rod is screw-shaped and can be screwed into one end of the screw cylinder for connection, while the other end is an inner nut tube. One end of the short rod is screw-shaped and can be screwed into the other end of the screw cylinder for connection. The top plate is a central concave plate with a screw rod at the center of the convex surface, which can be screwed into the inner nut tube end of the long rod for connection. The base has a hole in the center, into which the other end of the short rod can be inserted and fixed.