A tilted denture engraving machine

Through the combination of tilting design, rotating angle adjustment and fixing device, the low efficiency and resource waste problems of existing denture engraving machines in multi-angle processing are solved, and high efficiency, stability and environmental conservation of multi-angle processing are achieved.

CN116214218BActive Publication Date: 2025-09-05JIANGSU SHANGHE STOMATOLOGICAL TECH CO LTD
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Patent Information

Application Number
CN202211441404.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-17
Publication Date
2025-09-05
Estimated Expiration
2042-11-17

AI Technical Summary

Technical Problem

Existing denture engraving machines have limitations in the processing process, especially in multi-angle processing, where the efficiency is low, the processing is unstable, the cooling effect is poor, and resources are seriously wasted.

Method used

The engraving machine adopts a tilting design, combined with a rotary angle adjustment device, a rotary fixing device and a side panel cleaning device, to achieve multi-angle processing and constant clamping force, and dissipate heat and cool down through water circulation.

Benefits of technology

It achieves efficient multi-angle processing, avoids processing dislocation and collapse, ensures processing quality, and reduces resource waste through water recycling, thereby improving processing efficiency and environmental conservation.

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Abstract

The present invention relates to the technical field of engraving machines, and more specifically discloses an inclined denture engraving machine, including an engraving machine base, the engraving machine base including an engraving base body, a water flow buffer groove is provided on the top of the engraving base body, a rotation positioning groove is provided at the bottom of the water flow buffer groove, horizontal positioning grooves are provided at the bottoms of both sides of the rotation positioning groove, a gear fixing groove is provided on one side of the horizontal positioning groove, a motor fixing groove is provided on one side of the gear fixing groove, and a bottom collecting groove is provided at the bottom of the rotation positioning groove; the present invention is conducive to the transmission gear driving the rotation control gear to rotate by providing a rotation angle adjustment device, so that the overall longitudinal angle of the angle adjustment transmission device can be adjusted to a certain extent, thereby realizing the change of the processing angle of the engraved workpiece, avoiding the disadvantage that the existing engraving machine can only perform processing from above, and has a better processing effect for processing methods such as horizontal grooving.
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Description

Technical Field

[0001] The present invention relates to the technical field of engraving machines, and more particularly to an inclined denture engraving machine. Background Art

[0002] Dentures are commonly referred to as "false teeth." Just like we call "artificial legs" or "artificial limbs" prosthetics, "dentures" simply refer to teeth that fulfill a "duty" for humans. In medicine, it's a general term for restorations made after partial or complete tooth loss in the upper or lower jaw. Dentures are categorized as removable and fixed. Fixed dentures (commonly known as "fixed dentures") cannot be removed by the patient, while removable dentures (commonly known as "removable dentures") can be easily removed and put on by the patient.

[0003] The existing denture processing method is usually a horizontal or vertical processing method, which realizes the processing of the denture by utilizing the cooperation of the horizontal and vertical movement of the processing tool. However, this processing method can only achieve a good processing effect on the top of the denture. When processing the side and the bottom of the root, the existing denture engraving machine usually uses side grinding and replaces the larger bottom grinding disc for processing. This processing method belongs to the type of longitudinal processing. For the flexible operation of multiple angles, this linear processing method undoubtedly has certain limitations. Secondly, during the processing of the denture, due to the gradual wear of the denture, the existing fixing method is usually bolt fastening. During the processing, it is easy for the denture to have a reduced cross-sectional area, resulting in excessive pressure, or a reduced lateral distance, resulting in reduced pressure. The unstable pressure makes it easy for the denture to break or be misaligned during processing. This requires the existing processing methods to constantly pause the processing to adjust the pressure, which wastes time and has low processing efficiency. In addition, during the processing of the denture, fine cutting chips are easily generated due to wear and tear, which affects the equipment. At the same time, the processing friction will also generate a lot of heat. The existing equipment has limited cooling effect, the cooling effect is not obvious, and the wastewater generated cannot be recycled, resulting in a waste of resources. Summary of the Invention

[0004] In order to overcome the above-mentioned defects of the prior art, the present invention provides a tilting denture engraving machine to solve the problems existing in the above-mentioned background technology.

[0005] The present invention provides the following technical solution: a tilted denture engraving machine, comprising an engraving machine base, the engraving machine base comprising an engraving base body, a water flow buffer groove being provided on the top of the engraving base body, a rotation positioning groove being provided on the bottom of the water flow buffer groove, horizontal positioning grooves being provided on the bottoms of both sides of the rotation positioning groove, a gear fixing groove being provided on one side of the horizontal positioning groove, a motor fixing groove being provided on one side of the gear fixing groove, a bottom collecting groove being provided on the bottom of the rotation positioning groove, a side support frame being fixedly connected to the front and back sides of the top of the engraving base body, and the side support frame comprising a support The support plate main frame is fixedly connected to a transverse sliding guide rail on one side of the support plate main frame close to the water flow buffer tank, and a mobile engraving device is fixedly connected to the front of the transverse sliding guide rail. The mobile engraving device includes a mobile transverse bracket, and both sides of the mobile transverse bracket are fixedly connected to a sliding control plate. The bottom of the mobile transverse bracket is fixedly connected to a transverse sliding box, and the bottom of the transverse sliding box is fixedly connected to a telescopic control box. The bottom of the telescopic control box is fixedly connected to a rotary engraving cutter head. Both sides of the top of the water flow buffer tank are fixedly connected to a rotary angle adjustment device, and the rotary angle adjustment device includes an angle adjustment fixed body , both sides of the angle adjustment fixing body are fixedly connected with a rotation control gear, one side of the rotation control gear is fixedly connected with a rotation transmission rod, the bottom of the rotation transmission rod is fixedly connected with a rotation support frame, the angle adjustment fixing body health care department angle adjustment rotating body, the top of the angle adjustment rotating body is provided with a longitudinal fixing hole, the bottom of the longitudinal fixing hole is provided with a motor longitudinal groove, water flow output holes are provided on both sides of the top of the angle adjustment rotating body, the top of the angle adjustment fixing body is located at the top of the water flow output hole and is fixedly connected with a side plate cleaning device, the top of the longitudinal fixing hole is fixedly connected with a rotating fixing device, the rotating The fixing device includes a rotary transmission motor, the top of the rotary transmission motor is movably connected to a rotary positioning disk, the top of the rotary positioning disk is movably connected to a rotary fixing piece, the rotary fixing piece includes a rotary platform body, the bottom of the rotary platform body is fixedly connected to a positioning connecting block, the bottom of the positioning connecting block is fixedly connected to a transmission connecting rod, the top of the rotary fixing piece is fixedly connected to two horizontal support frames, the inner sides of the horizontal support frames are fixedly connected to horizontal clamping blocks, the engraving workpiece is fixedly connected between the horizontal clamping blocks, and the bottom of the rotary control gear is movably connected to an angle adjustment transmission device;

[0006] Furthermore, the angle adjustment transmission device includes an angle adjustment transmission motor, one side of the angle adjustment transmission motor is fixedly connected to a horizontal transmission rod, one side of the horizontal transmission rod is fixedly connected to a transmission action gear, a fixing hole for the horizontal transmission rod is opened inside the transmission action gear, and the horizontal transmission rod and the transmission action gear are fixedly connected by a positioning pin.

[0007] Furthermore, the side panel cleaning device includes a cleaning water tank, one side of the cleaning water tank is fixedly connected to a boost control box, one side of the boost control box is fixedly connected to a plurality of water nozzles, a water pump is installed inside the cleaning water tank, the bottom of the cleaning water tank is at the same position as the water output hole, a boost device is installed inside the boost control box, and the height of the water nozzle is slightly higher than the height of the horizontal support frame.

[0008] Furthermore, the rotating support frame is fixedly connected to the edge of the water flow buffer groove, the inside of the transmission rod fixing groove is installed with bearings and water stop rings, the rotating positioning plate is fixedly connected to the top of the angle adjustment fixing body, and a water stop rubber sleeve is installed between the rotating positioning plate and the angle adjustment fixing body.

[0009] Furthermore, a water flow hole is provided at the bottom of the water output hole, and the bottom collecting trough is fixedly connected to the water output hole via a water flow pipe.

[0010] Furthermore, the horizontal support frame and the horizontal clamping block are fixedly connected via a telescopic rod, a control device for the telescopic rod is installed inside the horizontal support frame, and a carving workpiece clamping groove is provided on the inner side of the horizontal clamping block.

[0011] Furthermore, the horizontal transmission rod is fixedly connected to the inside of the transmission rod fixing groove, the angle adjustment transmission motor is installed inside the motor fixing groove, the transmission action gear is fixedly connected to the inside of the transmission rod fixing groove, and the transmission action gear is movably connected to the rotation control gear through the meshing of edge teeth.

[0012] Furthermore, the bottom of the transmission connecting rod is fixedly connected to the rotary transmission motor through a transmission sleeve, the positioning connecting block is fixedly connected to the inside of the rotary positioning disk, and a positioning pin mounting hole is provided on the outside of the transmission connecting rod.

[0013] Furthermore, a sliding guide rail is installed on the top of the horizontal sliding box, the sliding control plate is movably connected to the horizontal sliding guide rail, a moving controller is installed inside the movable horizontal bracket, and a telescopic controller of the rotating engraving tool head is installed inside the telescopic control box.

[0014] Technical effects and advantages of the present invention:

[0015] 1. The present invention is provided with a rotary angle adjustment device, which is conducive to the transmission gear driving the rotary control gear to rotate, so that the overall longitudinal angle of the angle adjustment transmission device can be adjusted to a certain extent, thereby realizing the change of the processing angle of the engraved workpiece, avoiding the disadvantage of the existing engraving machine that it can only process from above, and has a better processing effect for processing methods such as horizontal grooving.

[0016] 2. The present invention is provided with a rotating fixing device, which is conducive to the interaction between the telescopic rod on the horizontal support frame and the pressure sensing device installed therein, so that the engraved workpiece always maintains a constant clamping force during the processing process, avoiding the engraved workpiece from falling off, excessive pressure and the cutter from acting together to cause the engraved workpiece to break, ensuring its processing quality during the processing and achieving a better fixing effect.

[0017] 3. The present invention is provided with a side plate cleaning device, which is beneficial because a pipe is installed between the bottom collection tank and the cleaning water tank and a water pump and a filter device are installed inside the cleaning water tank. The water flow inside the bottom collection tank is gradually sucked up and moved upward to be reused, thereby maximizing the heat dissipation and cooling effect, which is beneficial to the recycling of water flow, ensures the environment and saves water resources. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0019] Figure 2 It is a structural schematic diagram of the engraving machine base of the present invention.

[0020] Figure 3 It is a structural schematic diagram of the mobile engraving device of the present invention.

[0021] Figure 4 Schematic diagram of the structure of the rotation control device of the present invention.

[0022] Figure 5 It is a structural schematic diagram of the rotary angle adjustment device of the present invention.

[0023] Figure 6 It is a structural schematic diagram of the rotating fixing device of the present invention.

[0024] Figure 7 It is a structural schematic diagram of the angle adjustment transmission device of the present invention.

[0025] Figure 8 It is a structural schematic diagram of the rotary positioning disk of the present invention.

[0026] Figure 9 It is a structural schematic diagram of the side plate cleaning device of the present invention.

[0027] The accompanying drawings are marked as follows: 1. engraving machine base; 101. engraving base body; 102. water flow buffer groove; 103. rotation positioning groove; 104. horizontal positioning groove; 105. bottom collecting groove; 106. gear fixing groove; 107. transmission rod fixing groove; 108. motor fixing groove; 2. side support frame; 201. support plate main frame; 202. horizontal sliding guide rail; 3. mobile engraving device; 301. mobile horizontal bracket; 302. sliding control panel; 303. horizontal sliding box; 304. telescopic control box; 305. rotary engraving tool head; 4. rotating angle adjustment device; 401. angle adjustment fixing body; 4011. angle adjustment rotating body; 4012. water flow output hole; 401 3. Longitudinal fixing hole; 4014. Motor longitudinal slot; 402. Rotation control gear; 403. Rotation transmission rod; 404. Rotation support frame; 5. Angle adjustment transmission device; 501. Angle adjustment transmission motor; 502. Horizontal transmission rod; 503. Transmission action gear; 6. Side panel cleaning device; 601. Cleaning water tank; 602. Boost control box; 603. Water flow nozzle; 7. Rotation fixing device; 701. Rotation transmission motor; 702. Rotation positioning disk; 703. Rotation fixing piece; 7031. Rotation platform body; 7032. Positioning connecting block; 7033. Transmission connecting rod; 704. Horizontal clamping block; 705. Engraving workpiece; 706. Horizontal support frame. DETAILED DESCRIPTION

[0028] The technical solutions of the present invention will be described clearly and completely below in conjunction with the accompanying drawings of the present invention. In addition, the forms of the various structures described in the following embodiments are merely examples. The inclined denture engraving machine involved in the present invention is not limited to the various structures described in the following embodiments. All other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0029] Reference Figure 1 and Figure 2The present invention provides a tilted denture engraving machine, including an engraving machine base 1, which includes an engraving base body 101. A water flow buffer groove 102 is provided on the top of the engraving base body 101, a rotation positioning groove 103 is provided on the bottom of the water flow buffer groove 102, and horizontal positioning grooves 104 are provided on the bottoms of both sides of the rotation positioning groove 103. A gear fixing groove 106 is provided on one side of the horizontal positioning groove 104, a transmission rod fixing groove 107 is provided on one side of the gear fixing groove 106, a motor fixing groove 108 is provided on one side of the transmission rod fixing groove 107, and a bottom collecting groove 105 is provided on the bottom of the rotation positioning groove 103. The front and back sides of the top of the engraving base body 101 are fixedly connected to the side support frame 2. The side support frame 2 includes a support plate main frame 201, a side of the support plate main frame 201 close to the water flow buffer tank 102 is fixedly connected to a transverse sliding guide rail 202, the front of the transverse sliding guide rail 202 is fixedly connected to a mobile engraving device 3, the mobile engraving device 3 includes a mobile transverse bracket 301, both sides of the mobile transverse bracket 301 are fixedly connected to a sliding control plate 302, the bottom of the mobile transverse bracket 301 is fixedly connected to a transverse sliding box 303, the bottom of the transverse sliding box 303 is fixedly connected to a telescopic control box 304, the bottom of the telescopic control box 304 is fixedly connected to a rotary engraving cutter head 305, and both sides of the top of the water flow buffer tank 102 are fixedly connected to a rotating angle adjustment device 4, the rotating angle adjustment device 4 includes an angle adjustment fixed body 401, an angle adjustment fixed body The two sides of 401 are fixedly connected with rotation control gears 402, one side of the rotation control gear 402 is fixedly connected with a rotation transmission rod 403, the bottom of the rotation transmission rod 403 is fixedly connected with a rotation support frame 404, the angle adjustment fixing body 401 is an angle adjustment rotating body 4011, the top of the angle adjustment rotating body 4011 is provided with a longitudinal fixing hole 4013, the bottom of the longitudinal fixing hole 4013 is provided with a motor longitudinal groove 4014, water output holes 4012 are provided on both sides of the top of the angle adjustment rotating body 4011, the top of the angle adjustment fixing body 401 is located at the top of the water output hole 4012 and is fixedly connected with a side plate cleaning device 6, the top of the longitudinal fixing hole 4013 is fixedly connected with a rotation fixing device 7, and the rotation fixing device 7 includes a rotation transmission The top of the rotating transmission motor 701 is movably connected to a rotating positioning disk 702, and the top of the rotating positioning disk 702 is movably connected to a rotating fixed part 703. The rotating fixed part 703 includes a rotating platform body 7031, and the bottom of the rotating platform body 7031 is fixedly connected to a positioning connection block 7032. The bottom of the positioning connection block 7032 is fixedly connected to a transmission connecting rod 7033. The top of the rotating fixed part 703 is fixedly connected to two horizontal support frames 706. The inner side of the horizontal support frame 706 is fixedly connected to a horizontal clamping block 704. The engraving workpiece 705 is fixedly connected between the horizontal clamping blocks 704. The bottom of the rotation control gear 402 is movably connected to the angle adjustment transmission device 5. During the use of the engraving machine,The engraving workpiece 705 is clamped between two horizontal clamping blocks 704 and fixed by extending the telescopic rod. The rotary transmission motor 701 is started, and the rotary fixing member 703 drives the engraving workpiece 705 to rotate and adjust the horizontal angle.

[0030] Reference Figure 2 The angle adjustment transmission device 5 includes an angle adjustment transmission motor 501, one side of the angle adjustment transmission motor 501 is fixedly connected to a horizontal transmission rod 502, one side of the horizontal transmission rod 502 is fixedly connected to a transmission gear 503, a fixing hole for the horizontal transmission rod 502 is opened inside the transmission gear 503, the horizontal transmission rod 502 and the transmission gear 503 are fixedly connected by a positioning pin, the angle adjustment transmission motor 501 is started, and the transmission gear 503 drives the rotation control gear 402 to rotate, so that the overall longitudinal angle of the angle adjustment transmission device 5 is adjusted to a certain extent, thereby realizing the change of the processing angle of the engraved workpiece 705, avoiding the disadvantage that the existing engraving machine can only process from above, and has a better processing effect for processing methods such as horizontal grooving.

[0031] Reference Figure 3 The side plate cleaning device 6 includes a cleaning water tank 601, one side of the cleaning water tank 601 is fixedly connected to a boost control box 602, one side of the boost control box 602 is fixedly connected to a plurality of water nozzles 603, a water pump is installed inside the cleaning water tank 601, the bottom of the cleaning water tank 601 is at the same position as the water output hole 4012, a boost device is installed inside the boost control box 602, the height of the water nozzle 603 is slightly higher than the height of the horizontal support frame 706, since a pipe is installed between the bottom collecting tank 105 and the cleaning water tank 601 and a water pump and a filtering device are installed inside the cleaning water tank 601, the water flow inside the bottom collecting tank 105 is gradually absorbed and moved upward to be reused, thereby maximizing the heat dissipation and cooling effect, which is beneficial to the recycling of water flow, ensuring the environment and saving water resources.

[0032] Reference Figure 4 The rotating support frame 404 is fixedly connected to the edge of the water flow buffer groove 102, the bearing and the water stop ring are installed inside the transmission rod fixing groove 107, the rotating positioning plate 702 is fixedly connected to the top of the angle adjustment fixing body 401, and a water stop rubber sleeve is installed between the rotating positioning plate 702 and the angle adjustment fixing body 401, which is beneficial to protect the internal motor.

[0033] Reference Figure 5 A water flow hole is opened at the bottom of the water output hole 4012, and the bottom collecting tank 105 is fixedly connected to the water output hole 4012 through a water flow pipe. The water flow inside the bottom collecting tank 105 is gradually absorbed and moved upward to be reused, thereby maximizing the heat dissipation and cooling effect, which is conducive to the recycling of water.

[0034] Reference Figure 6 The horizontal support frame 706 and the horizontal clamping block 704 are fixedly connected by a telescopic rod. A control device of the telescopic rod is installed inside the horizontal support frame 706. A clamping groove for the engraving workpiece 705 is opened on the inner side of the horizontal clamping block 704. The telescopic rod on 706 interacts with the pressure sensing device installed inside it, so that the engraving workpiece 705 always maintains a constant clamping force during the processing to prevent it from falling off or excessive pressure.

[0035] Reference Figure 7 The horizontal transmission rod 502 is fixedly connected to the inside of the transmission rod fixing groove 107, the angle adjustment transmission motor 501 is installed in the inside of the motor fixing groove 108, the transmission action gear 503 is fixedly connected to the inside of the transmission rod fixing groove 107, and the transmission action gear 503 is movably connected to the rotation control gear 402 through the meshing of edge teeth. The telescopic rod on the horizontal support frame 706 interacts with the pressure sensing device installed inside it, so that the engraving workpiece 705 always maintains a constant clamping force during the processing process.

[0036] Reference Figure 8 The bottom of the transmission connecting rod 7033 is fixedly connected to the rotary transmission motor 701 through a transmission sleeve, the positioning connecting block 7032 is fixedly connected to the inside of the rotary positioning disk 702, and a positioning pin mounting hole is opened on the outside of the transmission connecting rod 7033, which is conducive to the stability of the transmission.

[0037] Reference Figure 9 A sliding guide rail is installed on the top of the horizontal sliding box 303, the sliding control panel 302 is movably connected to the horizontal sliding guide rail 202, a mobile controller is installed inside the movable horizontal bracket 301, and a telescopic controller of the rotary engraving tool head 305 is installed inside the telescopic control box 304, which is conducive to controlling the telescopic movement of the tool.

[0038] The working principle of the present invention is as follows: first, during the use of the engraving machine, the engraving workpiece 705 is clamped between the two horizontal clamping blocks 704 and fixed by the extension of the telescopic rod, the rotation transmission motor 701 is started, and the rotating fixing member 703 drives the engraving workpiece 705 to rotate and adjust the horizontal angle, the angle adjustment transmission motor 501 is started, and the transmission action gear 503 drives the rotation control gear 402 to rotate, so that the overall longitudinal angle of the angle adjustment transmission device 5 is adjusted to a certain extent, thereby realizing the change of the processing angle of the engraving workpiece 705, avoiding the disadvantage that the existing engraving machine can only process from above, and has a better processing effect for processing methods such as horizontal grooving. Secondly, during the processing, the horizontal clamping block 704 can achieve a better fixing effect on the engraving workpiece 705. While the engraving workpiece 705 is gradually processed and becomes smaller, the telescopic rod on the horizontal support frame 706 and the pressure sensing device installed therein interact with each other, so that the engraving workpiece 705 is adjusted during the processing. During the process, a constant clamping force is always maintained to prevent it from falling off, excessive pressure and the tool from causing the engraved workpiece 705 to break, thereby ensuring its processing quality during the processing and achieving a better fixing effect. In addition, during the processing, due to the continuous heat generated by the engraving process, the water nozzle 603 continuously uses the pressure generated inside the boost control box 602 to spray water onto the surface of the engraved workpiece 705. After splashing, the water will pass through the surface of each component into the water flow buffer tank 102 for buffering. Under the action of sufficient water flow, it enters the bottom collection tank 105 through the transmission rod fixing groove 107. Since a pipe is installed between the bottom collection tank 105 and the dust cleaning water tank 601 and a water pump and a filter device are installed inside the dust cleaning water tank 601, the water flow inside the bottom collection tank 105 is gradually absorbed and moved upward for reuse, thereby maximizing the heat dissipation and cooling effect, which is beneficial to the recycling of water flow and ensures the environment and saves water resources.

[0039] Finally, a few points should be explained: First, in the description of this application, it should be noted that, unless otherwise specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense, and may refer to mechanical or electrical connections, internal communication between two components, or direct connection. "Up," "down," "left," and "right" are only used to indicate relative positional relationships. When the absolute positions of the objects being described change, the relative positional relationships may also change.

[0040] Secondly: The drawings of the embodiments disclosed in the present invention only involve structures related to the embodiments disclosed in the present invention. Other structures may refer to conventional designs. The same embodiment and different embodiments of the present invention may be combined with each other without conflict.

[0041] Finally: The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A tilted denture engraving machine, comprising an engraving machine base (1), characterized in that: The engraving machine base (1) comprises an engraving base body (101), a water flow buffer groove (102) is provided on the top of the engraving base body (101), a rotation positioning groove (103) is provided on the bottom of the water flow buffer groove (102), horizontal positioning grooves (104) are provided on the bottoms of both sides of the rotation positioning groove (103), a gear fixing groove (106) is provided on one side of the horizontal positioning groove (104), a transmission rod fixing groove (107) is provided on one side of the gear fixing groove (106), a motor fixing groove (108) is provided on one side of the transmission rod fixing groove (107), a bottom collecting groove (105) is provided on the bottom of the rotation positioning groove (103), and the top of the engraving base body (101) is provided. The front and back sides of the side support frame (2) are fixedly connected, the side support frame (2) comprises a support plate main frame (201), a side of the support plate main frame (201) close to the water flow buffer tank (102) is fixedly connected to a transverse sliding guide rail (202), the front side of the transverse sliding guide rail (202) is fixedly connected to a mobile engraving device (3), the mobile engraving device (3) comprises a mobile transverse bracket (301), both sides of the mobile transverse bracket (301) are fixedly connected to sliding control plates (302), the bottom of the mobile transverse bracket (301) is fixedly connected to a transverse sliding box (303), the bottom of the transverse sliding box (303) is fixedly connected to a telescopic control box (304), the telescopic control box The bottom of (304) is fixedly connected with a rotating engraving cutter head (305), and the two sides of the top of the water flow buffer tank (102) are fixedly connected with a rotating angle adjustment device (4), and the rotating angle adjustment device (4) includes an angle adjustment fixed body (401), and the two sides of the angle adjustment fixed body (401) are fixedly connected with a rotating control gear (402), and one side of the rotating control gear (402) is fixedly connected with a rotating transmission rod (403), and the bottom of the rotating transmission rod (403) is fixedly connected with a rotating support frame (404), and the angle adjustment fixed body (401) is a health care angle adjustment rotating body (4011), and the top of the angle adjustment rotating body (4011) is provided with a longitudinal fixing hole (4013), and the longitudinal fixing hole (4013) is provided with a rotating support frame (404). 013) is provided with a motor longitudinal groove (4014), water flow output holes (4012) are provided on both sides of the top of the angle adjustment rotating body (4011), the top of the angle adjustment fixing body (401) is located at the top of the water flow output hole (4012) and is fixedly connected to a side plate cleaning device (6), the top of the longitudinal fixing hole (4013) is fixedly connected to a rotating fixing device (7), the rotating fixing device (7) includes a rotating transmission motor (701), the top of the rotating transmission motor (701) is movably connected to a rotating positioning disk (702), the top of the rotating positioning disk (702) is movably connected to a rotating fixing member (703), and the rotating fixing member (703) includes a rotating platform body (7031).The bottom of the rotating platform body (7031) is fixedly connected to a positioning connection block (7032), the bottom of the positioning connection block (7032) is fixedly connected to a transmission connection rod (7033), the top of the rotating fixed member (703) is fixedly connected to two horizontal support frames (706), the inner sides of the horizontal support frames (706) are fixedly connected to horizontal clamping blocks (704), and the engraving workpiece (705) is fixedly connected between the horizontal clamping blocks (704). The bottom of the rotating control gear (402) is movably connected to an angle adjustment transmission device (5).

2. The inclined denture engraving machine according to claim 1, characterized in that: The angle adjustment transmission device (5) comprises an angle adjustment transmission motor (501), one side of the angle adjustment transmission motor (501) is fixedly connected to a horizontal transmission rod (502), one side of the horizontal transmission rod (502) is fixedly connected to a transmission action gear (503), a fixing hole for the horizontal transmission rod (502) is provided inside the transmission action gear (503), and the horizontal transmission rod (502) and the transmission action gear (503) are fixedly connected via a positioning pin.

3. The inclined denture engraving machine according to claim 1, characterized in that: The side plate cleaning device (6) comprises a cleaning water tank (601), one side of the cleaning water tank (601) is fixedly connected to a boost control box (602), one side of the boost control box (602) is fixedly connected to a plurality of water flow nozzles (603), a water pump is installed inside the cleaning water tank (601), the bottom of the cleaning water tank (601) is at the same position as the water flow output hole (4012), a boost device is installed inside the boost control box (602), and the height of the water flow nozzles (603) is slightly higher than the height of the horizontal support frame (706).

4. The inclined denture engraving machine according to claim 1, characterized in that: The rotating support frame (404) is fixedly connected to the edge of the water flow buffer groove (102), a bearing and a water stop ring are installed inside the transmission rod fixing groove (107), the rotating positioning plate (702) is fixedly connected to the top of the angle adjustment fixing body (401), and a water stop rubber sleeve is installed between the rotating positioning plate (702) and the angle adjustment fixing body (401).

5. The inclined denture engraving machine according to claim 1, characterized in that: A water flow hole is provided at the bottom of the water output hole (4012), and the bottom collecting tank (105) is fixedly connected to the water output hole (4012) via a water flow pipe.

6. The inclined denture engraving machine according to claim 1, characterized in that: The horizontal support frame (706) and the horizontal clamping block (704) are fixedly connected via a telescopic rod. A control device for the telescopic rod is installed inside the horizontal support frame (706). A clamping groove for the engraved workpiece (705) is provided on the inner side of the horizontal clamping block (704).

7. The inclined denture engraving machine according to claim 2, characterized in that: The horizontal transmission rod (502) is fixedly connected to the inside of the transmission rod fixing groove (107), the angle adjustment transmission motor (501) is installed in the inside of the motor fixing groove (108), the transmission action gear (503) is fixedly connected to the inside of the transmission rod fixing groove (107), and the transmission action gear (503) is movably connected to the rotation control gear (402) through the meshing of edge teeth.

8. The inclined denture engraving machine according to claim 1, characterized in that: The bottom of the transmission connecting rod (7033) is fixedly connected to the rotary transmission motor (701) via a transmission sleeve, the positioning connecting block (7032) is fixedly connected to the inside of the rotary positioning disk (702), and a positioning pin mounting hole is provided on the outside of the transmission connecting rod (7033).

9. The inclined denture engraving machine according to claim 1, characterized in that: A sliding guide rail is installed on the top of the transverse sliding box (303), the sliding control panel (302) is movably connected to the transverse sliding guide rail (202), a mobile controller is installed inside the movable transverse bracket (301), and a telescopic controller of the rotary engraving tool head (305) is installed inside the telescopic control box (304).

Citation Information

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