Wall strip groove broaching machine and groove broaching method
By designing a wall groove puller including a workbench, operating plate and processing device, the problem of complex structure and low efficiency of the wall groove puller device in the prior art is solved, and the effect of simplifying installation and improving production efficiency is achieved.
Patent Information
- Application Number
- CN202311751995.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-19
- Publication Date
- 2025-06-20
AI Technical Summary
In the prior art, the wall groove pulling device has a complex structure, is inconvenient to install, is cumbersome to use, and the groove pulling time is long, resulting in low efficiency.
A wall groove puller is designed, including a workbench, operating plate and processing device. The machining device consists of an extension frame, a mounting frame, a motor, a vertical sliding assembly and a horizontal sliding assembly. The wall is fixed by a cylinder and the groove is pulled by a motor-driven milling cutter.
The installation and use process of wall strips is simplified, the groove pulling time is shortened, and the production efficiency is improved. The groove pulling is completed and the material is quickly unloaded by only three steps: fixing the wall strip, feeding and pushing and pulling the operating plate.
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Figure CN120170136A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of wall strip processing, and specifically relates to a wall strip grooving machine and a grooving method. Background Art
[0002] A wall strip, also known as a wall panel, is a decorative material laid on the wall surface in a specific manner and is commonly used for wall decoration and protection.
[0003] During interior decoration, various furniture needs to be placed against the wall. Therefore, wall strips need to be installed at the corner positions of the wall, and then the furniture is placed close to the wall strips so that the furniture is installed and the wall surface is protected at the same time. However, in the prior art, the furniture is prone to move after being placed and cannot form a limit with the wall. Although adhesion can temporarily limit the position between the furniture and the wall, the adhesive medium will damage the surfaces of the furniture and the wall strip when moving the furniture. Therefore, it is necessary to groove the wall strip and cooperate with the limit protrusions on the furniture to fix the position of the furniture.
[0004] The invention patent with the application number: CN202211049694.9 and the publication number: CN115213989A (hereinafter referred to as "Prior Art 1") discloses a numerical control grooving device for custom furniture board processing, which relates to the technical field of furniture board processing; and the present invention includes a workbench, a feeding tray is arranged on the upper surface of the workbench, and a U-shaped frame is fixedly installed on one side of the workbench close to the feeding tray, and a connecting rod is arranged inside the U-shaped frame; by driving the push rod to operate, the push rod makes the second guide block slide horizontally through the fixed sleeve, the rotating shaft and the U-shaped sleeve, and the second guide block makes the grooving machine move horizontally through the connecting rod, so that the grooving machine horizontally moves to the other side. When the feeding tray moves in the reverse direction, the board moves synchronously in the reverse direction. With the switching of the horizontal position of the grooving machine, the reverse movement of the board and the action of the grooving machine complete the grooving processing of two notches on the upper surface of the board.
[0005] The specification of Prior Art 1 discloses a numerical control grooving device for custom furniture board processing. By driving the feeding tray to move horizontally, the boards in the feeding tray move horizontally synchronously, and in cooperation with the operation of the grooving machine, the cutter head at the lower end of the grooving machine contacts the upper surface of the board, and the grooving processing of a single notch on the upper surface of the board is completed, thus conveniently realizing the grooving processing of a single notch on the upper surface of the board; however, in actual application, the structure of the grooving machine is relatively complex, not easy to install, and the use process is cumbersome, and the grooving time is long, so the grooving efficiency is low. Summary of the Invention
[0006] The present invention provides a wall strip grooving machine and a grooving method, aiming to solve the problems of the existing plate grooving device, which has a relatively complex structure, is not convenient for installation, and has a cumbersome use process, a long grooving time, and thus a low grooving efficiency.
[0007] To solve the above technical problems, the technical solution adopted by the present invention is:
[0008] A wall strip grooving machine includes: a workbench, on which an operation board and a processing device are arranged. The operation board is slidably matched with the workbench, and a pressing device is arranged on the operation board;
[0009] The processing device includes an extension frame, a mounting frame, and a motor. The extension frame is arranged on the workbench, the mounting frame is arranged on the extension frame, a vertical sliding component is arranged on the mounting frame, a horizontal moving component is installed on the vertical sliding component, the motor is installed on the horizontal moving component. The vertical moving component is used to drive the horizontal moving component to perform reciprocating up and down movement on the mounting frame, and the horizontal moving component is used to drive the motor to perform reciprocating movement in the horizontal direction. A milling cutter is arranged at the output end of the motor;
[0010] The fixing component includes a bracket, a baffle, and a cylinder. The bracket is arranged on the operation board, the cylinder is installed on the bracket, the baffle is installed on the workbench, and a milling groove is arranged on the baffle; The installation position of the bracket corresponds to the position of the milling groove.
[0011] Further, the operation board is slidably matched with the workbench through a sliding component.
[0012] Further, the sliding component includes a slide rail and a slider. The slide rail is arranged on the workbench, there are several sliders, and several sliders are all arranged at the bottom of the operation table. The slider is slidably matched with the slide rail.
[0013] Further, the vertical sliding component includes a fixed mounting plate, a guide rod, a U-shaped mounting plate, and a telescopic component. The fixed mounting plate is arranged on the mounting frame, there are two guide rods, one end of the guide rod is connected to the mounting frame, and the other end is connected to the fixed mounting plate. The U-shaped mounting plate is slidably installed on the two guide rods. The telescopic component is arranged on the mounting frame and is connected to the U-shaped mounting plate. The telescopic component is used to drive the U-shaped mounting plate to slide on the guide rod, and the horizontal sliding component is installed on the U-shaped mounting plate.
[0014] Further, the horizontal sliding component includes a slide rod, a slide plate, and a connecting plate. There are two slide rods, and the two slide rods are slidably arranged on the U-shaped mounting plate. Push plates are arranged at the ends of the two slide plates; The slide plate is fixedly installed on the two slide rods, and the slide plate is used to slide on the U-shaped mounting plate. The motor is installed on the slide plate; The connecting plate is arranged on the side of the slide plate, and a telescopic rod is arranged on the connecting plate. The end of the telescopic rod is connected to the push plate.
[0015] Further, a moving plate is provided on the extension frame. The mounting frame is slidably arranged on the moving plate. A plurality of waist-shaped slots are provided below the mounting frame, and threaded rods corresponding to the number of waist-shaped slots are provided on the moving plate. When the mounting frame moves, the screw rod is used to slide inside the waist-shaped slot, and the mounting frame is used to fix its position by cooperating with a nut and the threaded rod.
[0016] Further, a push cylinder is also provided on the support, and the position where the push cylinder is arranged is perpendicular to the position where the air cylinder is arranged.
[0017] Further, a spare processing component is also designed on the mounting frame, and the structure of the spare processing component is the same as that of the fixed processing device.
[0018] A grooving method for wall strips includes the following steps:
[0019] Step 1: First, place the wall strip to be processed on the operation board;
[0020] Step 2: At this time, the wall strip is located between the baffle and the support, and the driving air cylinder extends to fix the wall strip on the operation board;
[0021] Step 3: Adjust the vertical sliding component so that the vertical position of the motor corresponds to the vertical position of the milling groove;
[0022] Step 4: Start the motor to rotate, and the motor drives the milling cutter to rotate after rotation;
[0023] Step 5: Adjust the position of the horizontal sliding component so that the motor moves towards the direction close to the wall strip;
[0024] Step 6: After the milling cutter feeds, a circular groove is first milled on the wall strip;
[0025] Step 7: Push the operation board so that the operation board reciprocates on the workbench. At this time, the milling cutter grooving on the wall strip;
[0026] Step 8: Adjust the position of the horizontal sliding component so that the motor moves towards the direction away from the wall strip;
[0027] Step 9: Control the motor to stop rotating;
[0028] Step 10: Control the air cylinder to contract and remove the wall strip.
[0029] Compared with the prior art, the present invention has the following beneficial effects:
[0030] The present invention mainly includes a workbench, on which an operation panel and a processing device are provided. The operation panel is slidably matched with the workbench, and a pressing device is arranged on the operation panel. During actual use, the staff first place the wall strip to be processed on the operation panel. At this time, the wall strip is located between the baffle and the bracket. The driving cylinder extends to fix the wall strip on the operation panel. Then, the vertical sliding component is adjusted so that the vertical position of the motor corresponds to the vertical position of the milling groove. At the same time, the motor is started to rotate, and the milling cutter rotates after the motor rotates. Then, the position of the horizontal sliding component is adjusted so that the motor moves towards the wall strip. At this time, after the milling cutter feeds, a circular groove is first milled on the wall strip. When grooving is required, the staff push and pull the operation panel back and forth, so that the operation panel reciprocates on the workbench. At this time, the milling cutter grooves on the wall strip. After grooving, the position of the horizontal sliding component is adjusted so that the motor moves away from the wall strip. At the same time, the motor is controlled to stop rotating. Finally, the cylinder is controlled to contract, and the wall strip is removed. The advantage of this setting is that only three steps, namely fixing the wall strip, feeding, and pushing and pulling the operation panel, are required during grooving, and the wall strip can be quickly unloaded after grooving, improving production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the embodiments. It should be understood that the following drawings only show some embodiments of the present invention, and therefore should not be regarded as limiting the scope. For those of ordinary skill in the art, other related drawings can be obtained based on these drawings without creative efforts.
[0032] Figure 1 It is one of the structural schematic diagrams of the present invention.
[0033] Figure 2 It is the second structural schematic diagram of the present invention.
[0034] Figure 3 It is the schematic diagram of the connection relationship between the vertical sliding component and the horizontal moving component in the present invention.
[0035] In the figure, 101 - workbench, 102 - operation panel, 103 - extension frame, 104 - mounting frame, 105 - motor, 106 - vertical sliding component, 107 - horizontal moving component, 108 - milling cutter, 109 - bracket, 110 - baffle, 111 - cylinder, 112 - milling groove, 113 - slide rail, 114 - slider, 115 - fixed mounting plate, 116 - guide rod, 117 - U-shaped mounting plate, 118 - telescopic component, 119 - slide rod, 120 - slide plate, 121 - connecting plate, 122 - push plate, 123 - telescopic rod, 124 - moving plate, 125 - waist-shaped groove, 126 - threaded rod, 127 - push cylinder, 128 - spare processing component, 129 - screw rod, 130 - connecting part, 131 - stabilizing part. Detailed implementation mode
[0036] The present invention will be further described below in conjunction with embodiments. The described embodiments are only a part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts fall within the protection scope of the present invention.
[0037] Please refer to Figures 1-3 As shown, this embodiment discloses a wall strip grooving machine, including: a workbench 101, an operation board 102 and a processing device are arranged on the workbench 101. The operation board 102 is slidably matched with the workbench 101, and a pressing device is arranged on the operation board 102;
[0038] The processing device includes an extension frame 103, a mounting frame 104 and a motor 105. The extension frame 103 is arranged on the workbench 101, the mounting frame 104 is arranged on the extension frame 103, a vertical sliding component 106 is arranged on the mounting frame 104, a horizontal moving component 107 is installed on the vertical sliding component 106, the motor 105 is installed on the horizontal moving component 107. The vertical moving component is used to drive the horizontal moving component 107 to perform reciprocating up and down movements on the mounting frame 104, the horizontal moving component 107 is used to drive the motor 105 to perform reciprocating movements in the horizontal direction, and a milling cutter 108 is arranged at the output end of the motor 105;
[0039] The fixing component includes a bracket 109, a baffle 110 and a cylinder 111. The bracket 109 is arranged on the operation board 102, the cylinder 111 is installed on the bracket 109, the baffle 110 is installed on the workbench, and a milling groove 112 is arranged on the baffle 110; The installation position of the bracket 109 corresponds to the position of the milling groove 112;
[0040] Please refer to Figures 1-3As shown in the figure, the present invention mainly includes a workbench 101, an operation board 102 and a processing device are arranged on the workbench 101. The operation board 102 is slidably matched with the workbench 101, and a pressing device is arranged on the operation board 102. During actual use, the staff first places the wall strip to be processed on the operation board 102. At this time, the wall strip is located between the baffle 110 and the bracket 109. The driving cylinder 111 extends to fix the wall strip on the operation board 102. Then, the vertical sliding assembly 106 is adjusted so that the vertical position of the motor 105 corresponds to the vertical position of the milling groove 112. At the same time, the motor 105 is started to rotate. After the motor 105 rotates, the milling cutter 108 is driven to rotate. Then, the position of the horizontal sliding assembly is adjusted so that the motor 105 moves towards the wall strip. At this time, after the milling cutter 108 feeds, a circular groove is first milled on the wall strip. When grooving is required, the staff pushes and pulls the operation board 102 back and forth, so that the operation board 102 reciprocates on the workbench 101. At this time, the milling cutter 108 grooves on the wall strip. After grooving is completed, the position of the horizontal sliding assembly is adjusted so that the motor 105 moves away from the wall strip. At the same time, the motor 105 is controlled to stop rotating. Finally, the cylinder 111 is controlled to contract, and the wall strip is taken off. The advantage of this setting is that only three steps, namely fixing the wall strip, feeding, and pushing and pulling the operation board 102, are required during grooving, and the wall strip is quickly unloaded after grooving, improving production efficiency.
[0041] Please refer to Figures 1-3 As shown in the figure, in some embodiments, the operation board 102 is slidably matched with the workbench 101 through a sliding assembly.
[0042] During actual use, the purpose of using the sliding assembly is to make the sliding between the operation board 102 and the workbench 101 smoother.
[0043] In some embodiments, the sliding assembly includes a slide rail 113 and a slider 114. The slide rail 113 is arranged on the workbench 101. There are several sliders 114, and several sliders 114 are all arranged at the bottom of the operation table. The slider 114 is slidably matched with the slide rail 113.
[0044] During actual use, the purpose of using the slide rail 113 and the slider 114 is to improve the sliding stability of the operation board 102 on the workbench 101.
[0045] Please refer to Figures 1-3As shown, in some embodiments, the vertical sliding assembly 106 includes a fixed mounting plate 115, guide rods 116, a U-shaped mounting plate 117, and a telescopic assembly 118. The fixed mounting plate 115 is provided on the mounting frame 104. There are two guide rods 116. One end of each guide rod 116 is connected to the mounting frame 104, and the other end is connected to the fixed mounting plate 115. The U-shaped mounting plate 117 is slidably mounted on the two guide rods 116. The telescopic assembly 118 is provided on the mounting frame 104 and is connected to the U-shaped mounting plate 117. The telescopic assembly 118 is used to drive the U-shaped mounting plate 117 to slide on the guide rods. The horizontal sliding assembly is mounted on the U-shaped mounting plate 117.
[0046] As an alternative implementation, the telescopic assembly 118 can be a telescopic rod 123, an electric cylinder, a hydraulic cylinder, or other components that can extend and contract. In this embodiment, the telescopic assembly 118 includes a screw 129, a connecting portion 130, and a stabilizing portion 131. Threaded holes are provided on both the stabilizing portion 131 and the mounting frame 104. The screw 129 is in threaded engagement with the threaded holes. One end of the threaded rod 126 is connected to the connecting portion 130, and the other end is connected with a torsion portion. The stabilizing portion 131 is provided on the mounting frame 104; the connecting portion 130 is also connected to the U-shaped mounting plate 117.
[0047] During actual use, when it is necessary to adjust the vertical sliding assembly 106, the staff needs to hold the torsion portion by hand and rotate the screw 129 so that after the screw 129 engages with the threaded hole, it drives the entire U-shaped mounting plate 117 to slide on the guide rods, thereby realizing the adjustment of the vertical position of the motor 105.
[0048] Please refer to Figures 1-3 As shown, in some embodiments, the horizontal sliding assembly includes slide rods 119, a slide plate 120, and a connecting plate 121. There are two slide rods 119. The two slide rods 119 are slidably arranged on the U-shaped mounting plate 117. Push plates 122 are provided at the ends of the two slide plates 120; the slide plates 120 are fixedly mounted on the two slide rods 119. The slide plates 120 are used to slide on the U-shaped mounting plate 117. The motor 105 is mounted on the slide plates 120; the connecting plate 121 is provided on the side of the slide plates 120. A telescopic rod 123 is provided on the connecting plate 121. The end of the telescopic rod 123 is connected to the push plate 122.
[0049] During actual use, the staff needs to drive the telescopic rod 123 to extend. After the telescopic rod 123 extends, it pushes the integrated structure formed by the slide plate 120 and the slide rods 119 to slide inside the U-shaped mounting plate 117, thereby realizing the sliding of the horizontal position of the motor 105.
[0050] Please refer to Figures 1-3As shown, in some embodiments, a moving plate 124 is provided on the extension frame 103. The mounting frame 104 is slidably arranged on the moving plate 124. A plurality of waist-shaped slots 125 are provided below the mounting frame 104, and threaded rods 126 corresponding to the number of the waist-shaped slots 125 are provided on the moving plate 124. When the mounting frame 104 moves, the threaded rods 126 are used to slide inside the waist-shaped slots 125, and the mounting frame 104 is used to fix the position of the mounting frame 104 by cooperating with a nut and the threaded rods 126.
[0051] During the actual use process, when installing the mounting frame 104, the front and rear positions of the mounting frame 104 can be finely adjusted, and finally the position of the mounting frame 104 is fixed by cooperating with a nut and the threaded rods 126.
[0052] Please refer to Figures 1-3 As shown, in some embodiments, a push cylinder 127 is further provided on the support frame 109, and the position where the push cylinder 127 is arranged is perpendicular to the position where the cylinder 111 is arranged.
[0053] During the actual use process, the purpose of setting the push cylinder 127 is to further fix the wall strip and increase the stability of the wall strip during grooving.
[0054] Please refer to Figures 1-3 As shown, in some embodiments, a spare processing component 128 is further designed on the mounting frame 104, and the structure of the spare processing component 128 is the same as that of the fixed processing device.
[0055] During the actual use process, the structure of the spare processing component 128 is exactly the same as that of the fixed processing device. The spare processing component 128 is installed below the mounting frame 104. When in use, when the fixed processing device fails, the fixed processing device can be quickly disassembled, and then the spare processing component 128 is installed at the original position of the fixed processing device to work. The advantage of such a setting is that the fixed processing device can be quickly disassembled after a failure and replaced with the spare processing component 128, which can minimize the loss caused by the damage of the fixed processing device.
[0056] A grooving method for a wall strip includes the following steps:
[0057] Step 1: First, place the wall strip to be processed on the operation plate 102;
[0058] Step 2: At this time, the wall strip is located between the baffle 110 and the support frame 109, and the driving cylinder 111 is extended to fix the wall strip on the operation plate 102;
[0059] Step 3: Adjust the vertical sliding component 106 so that the vertical position of the motor 105 corresponds to the vertical position of the milling groove 112;
[0060] Step Four: Start the motor 105 to rotate. After the motor 105 rotates, it drives the milling cutter 108 to rotate.
[0061] Step Five: Adjust the position of the horizontal sliding component so that the motor 105 moves towards the wall strip.
[0062] Step Six: After the milling cutter 108 feeds, first mill a circular groove on the wall strip.
[0063] Step Seven: Push the operation board 102 so that the operation board 102 reciprocates on the workbench 101. At this time, the milling cutter 108 performs grooving on the wall strip.
[0064] Step Eight: Adjust the position of the horizontal sliding component so that the motor 105 moves away from the wall strip.
[0065] Step Nine: Control the motor 105 to stop rotating.
[0066] Step Ten: Control the cylinder 111 to contract and remove the wall strip.
[0067] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "coaxial", "bottom", "one end", "top", "middle", "the other end", "upper", "one side", "top", "inner", "front", "center", "both ends", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.
[0068] In addition, the terms "first", "second", "third", "fourth" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first", "second", "third", "fourth" may explicitly or implicitly include at least one such feature.
[0069] In the present invention, unless otherwise clearly defined and limited, the terms "installed", "set", "connected", "fixed", "swiveling connection", etc. should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication of two components or the interaction relationship between two components. Unless otherwise clearly limited, for those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0070] Although embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A wall strip grooving machine, characterized in that, Including: A workbench (101) is provided with an operation panel (102) and a processing device thereon. The operation panel (102) is slidably engaged with the workbench (101), and a pressing device is provided on the operation panel (102). The processing device includes an extension frame (103), a mounting frame (104), and a motor (105). The extension frame (103) is provided on the workbench (101). The mounting frame (104) is provided on the extension frame (103). A vertical sliding component (106) is provided on the mounting frame (104). A horizontal moving component (107) is mounted on the vertical sliding component (106). The motor (105) is mounted on the horizontal moving component (107). The vertical moving component is used to drive the horizontal moving component (107) to reciprocate up and down on the mounting frame (104). The horizontal moving component (107) is used to drive the motor (105) to reciprocate in the horizontal direction. A milling cutter (108) is provided at the output end of the motor (105). The fixing component includes a bracket (109), a baffle (110), and a cylinder (111). The bracket (109) is provided on the operation panel (102). The cylinder (111) is mounted on the bracket (109). The baffle (110) is mounted on the workbench. A milling groove (112) is provided on the baffle (110). The position where the bracket (109) is mounted corresponds to the position of the milling groove (112).
2. The wall strip grooving machine according to claim 1, characterized in that: The operation panel (102) is slidably engaged with the workbench (101) through a sliding component.
3. The wall strip grooving machine according to claim 2, characterized in that: The sliding component includes a slide rail (113) and a slider (114). The slide rail (113) is provided on the workbench (101). There are several sliders (114), and several sliders (114) are all provided at the bottom of the operation table. The slider (114) is slidably engaged with the slide rail (113).
4. The wall strip grooving machine according to claim 1, characterized in that: The vertical sliding component (106) includes a fixed mounting plate (115), a guide rod (116), a U-shaped mounting plate (117), and a telescopic component (118). The fixed mounting plate (115) is provided on the mounting frame (104). There are two guide rods (116). One end of the guide rod (116) is connected to the mounting frame (104), and the other end is connected to the fixed mounting plate (115). The U-shaped mounting plate (117) is slidably mounted on the two guide rods (116). The telescopic component (118) is provided on the mounting frame (104). The telescopic component (118) is connected to the U-shaped mounting plate (117). The telescopic component (118) is used to drive the U-shaped mounting plate (117) to slide on the guide rod. The horizontal sliding component is mounted on the U-shaped mounting plate (117).
5. The wall strip grooving machine according to claim 4, characterized in that: The horizontal sliding component includes a slide rod (119), a slide plate (120), and a connecting plate (121). There are two slide rods (119). The two slide rods (119) are slidably arranged on the U-shaped mounting plate (117). Above, push plates (122) are provided at the ends of two sliding plates (120); the sliding plates (120) are fixedly installed on two sliding rods (119), and the sliding plates (120) are used to slide on the U-shaped mounting plate (117), and the motor (105) is installed on the sliding plates (120); a connecting plate (121) is arranged on the side of the sliding plates (120), a telescopic rod (123) is arranged on the connecting plate (121), and the end of the telescopic rod (123) is connected to the push plate (122).
6. The wall strip grooving machine according to claim 2, characterized in that: A moving plate (124) is provided on the extension frame (103), the mounting frame (104) is slidably arranged on the moving plate (124), a plurality of waist-shaped grooves (125) are arranged below the mounting frame (104), threaded rods (126) corresponding to the number of the waist-shaped grooves (125) are arranged on the moving plate (124), when the mounting frame (104) moves, the screw rod (129) is used to slide inside the waist-shaped grooves (125), and the mounting frame (104) is used to fix the position of the mounting frame (104) after being matched with the threaded rod (126) through a nut.
7. The wall strip grooving machine according to claim 1, characterized in that: A push cylinder (127) is further arranged on the bracket (109), and the position where the push cylinder (127) is arranged is perpendicular to the position where the cylinder (111) is arranged.
8. The wall strip grooving machine according to claim 1, characterized in that: A spare processing component (128) is further designed on the mounting frame (104), and the structure of the spare processing component (128) is the same as that of the fixed processing device.
9. A grooving method for wall strips, based on the wall strip grooving machine according to any one of claims 1 - 9, characterized in that, It includes the following steps: Step 1: First, place the wall strip to be processed on the operation board (102); Step 2: At this time, the wall strip is located between the baffle (110) and the bracket (109), and the driving cylinder (111) is extended to fix the wall strip on the operation board (102); Step 3: Adjust the vertical sliding component (106) so that the vertical position of the motor (105) corresponds to the vertical position of the milling groove (112); Step 4: Start the motor (105) to rotate, and the motor (105) drives the milling cutter (108) to rotate after rotating; Step 5: Adjust the position of the horizontal sliding component so that the motor (105) moves towards the direction close to the wall strip; Step 6: After the milling cutter (108) feeds, a circular groove is first milled on the wall strip; Step 7: Push the operation board (102) so that the operation board (102) reciprocates on the workbench (101), and at this time, the milling cutter (108) performs grooving on the wall strip; Step 8: Adjust the position of the horizontal sliding component so that the motor (105) moves towards the direction away from the wall strip; Step 9: Control the motor (105) to stop rotating; Step 10: Control the cylinder (111) to contract and remove the wall strip.
Citation Information
Patent Citations
Numerical control groove broaching equipment for processing customized furniture plates
CN115213989A