Nail planting machine capable of conducting gluing treatment after punching and nail planting method

Through the nail machine with integrated drilling and glue coating functions, automatic glue application after drilling is achieved using the lifting body and suction structure, the problems of complex operation and high labor intensity caused by manual glue coating in the prior art are solved, and the effect of simplifying the process and reducing labor intensity is achieved.

CN120241302AActive Publication Date: 2025-07-04SUZHOU ZHONGREN MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202510422412.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2025-07-04
Estimated Expiration
2045-04-07

AI Technical Summary

Technical Problem

The existing nail machines require manual glue application after punching, resulting in many processing steps, long time and high labor intensity for workers.

Method used

Design a nail machine with integrated drilling and glue coating functions, and automatically apply glue after drilling through the lifting body and suction structure, and use the negative pressure and extrusion principles to suck and spray glue during the drilling process.

Benefits of technology

The processing process is simplified, the operating steps are reduced, the labor intensity of workers is reduced, and the quality of glue is ensured.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of false tooth processing, in particular to a nail implanting machine capable of conducting gluing treatment after punching and a nail implanting method. The device comprises a drilling assembly and a gluing assembly on the drilling assembly. According to the device, when the first circular ring moves downwards from an upper dead center, the punching drill makes contact with and punches a false tooth model, in the process, the back plate stretches the inner bag through the connecting plate, the size of the inner bag is increased, a negative pressure area is formed in the inner bag, and then glue is sucked from the glue tank through the glue suction pipe, and when the first circular ring moves upwards from a lower dead center, the punching drill makes contact with the false tooth model and punches the false tooth model. The punching drill is separated from the false tooth model, and the back plate extrudes the inner bag through the connecting plate, so that glue in the inner bag is sprayed out of the glue outlet pipe to the punching position of the false tooth model for gluing treatment, and the punching position can be automatically glued after punching, so that the working procedure is simplified, the operation steps are reduced, and the labor intensity of workers is reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of denture processing, and specifically, to a stud machine capable of performing glue application treatment after drilling and a studding method. Background Art

[0002] A stud machine is a device used for drilling holes in a false tooth plaster model for denture production. After drilling holes in the denture through the stud machine, the denture is fixed in the oral cavity by cooperating with the nail-shaped objects implanted in the alveolar bone through the opened holes. For example, a dental stud drilling machine described in CN209360952U includes a frame body, which includes a support and a fixed frame. A drill bit is disposed on the fixed frame opposite to the support. A lifting table moving in the vertical direction is provided on the support. A support plate is fixedly connected to the lifting table. A sliding seat is slidably connected to the support plate. A workbench is rotatably connected to the sliding seat, and a positioning device for fixing the denture model is provided on the workbench.

[0003] For the above-mentioned dental stud drilling machine in the patent, the denture model is positioned on the workbench by designing a positioning device, and then the rotation and sliding of the workbench are coordinated with other components to achieve one-time positioning, and multiple holes can be drilled. The movement of the denture model is simple, the drilling operation is simple and time-saving. However, due to the gaps existing between the contact surfaces of the denture model and the nail-shaped objects, the combination between the denture model and the nail-shaped objects will become loose. The existing solution is to apply glue to the drilled holes of the denture model to fill the gaps, so as to ensure the stable structure between the denture model and the nail-shaped objects. However, the above-mentioned dental stud drilling machine lacks a structure for applying glue, and manual glue application is still required after the drilling of the denture model is completed, resulting in multiple processing operation steps, long time, and high labor intensity of workers.

[0004] In order to be able to have the capabilities of drilling and glue application simultaneously to simplify the processing procedure, a stud machine capable of performing glue application treatment after drilling and a studding method are proposed. Summary of the Invention

[0005] The purpose of the present invention is to provide a stud machine capable of performing glue application treatment after drilling and a studding method to solve the problems raised in the above background art.

[0006] To achieve the above purpose, one of the purposes of the present invention is to provide a stud machine capable of performing glue application treatment after drilling, including a drilling component and a glue application component on the drilling component; The drilling component includes a drilling body and a lifting body disposed on the drilling body. The lifting body is used for fixing the denture model. The drilling body is in transmission connection with the lifting body, and the drilling body is used for driving the lifting body to move up and down and drilling holes in the denture model; The glue - applying assembly includes a glue tank and a suction structure communicated with the glue tank. Both the glue tank and the suction structure are arranged on the punching body. The suction structure is connected to one side of the lifting body. The suction structure is used to suck the glue in the glue tank and spray it onto the punching position on the denture model. The punching body drives the lifting body to move up and down. When the lifting body moves down, the punching body contacts the denture model and punches holes, and the downward movement of the lifting body will drive the suction structure to suck glue from the glue tank. Then when the lifting body moves up, the denture model disengages from the punching body, and the suction structure sprays the sucked glue onto the punching position on the denture model.

[0007] As a further improvement of this technical solution, the punching body includes a support and a back frame arranged on the back of the support. One end of the top of the back frame is provided with a laser for projecting laser points. A motor is arranged in the support, and the top end of the motor is connected with a punching drill for punching holes. The punching drill and the laser point projected by the laser are on the same vertical line. The lifting body includes a first ring located above the support and a second ring located at the top of the first ring. The bottom of the first ring is inserted and matched with the top of the support. The upper surface of the second ring is symmetrically thread - connected with second screws, and a fixer for pressing the denture model is sleeved on the surface of the second screws.

[0008] As a further improvement of this technical solution, a side groove penetrating through its surface is opened on the side wall of the first ring. A side panel is slidably connected in the side groove, and the side panel is rotatably connected with a first screw. One end of the first screw is thread - connected with the second ring.

[0009] As a further improvement of this technical solution, the punching drill is coaxially connected with a main gear, the main gear meshes with a sub - gear, and bottom columns are symmetrically arranged at the bottom of the first ring. The bottom end of the bottom column is thread - connected with the sub - gear.

[0010] As a further improvement of this technical solution, the suction structure includes a semi - enclosed shell fixedly arranged at one end of the back frame away from the laser. A glue - sucking pipe and a glue - discharging pipe are arranged at the top end of the semi - enclosed shell. An inner bladder is arranged in the semi - enclosed shell. One end of each of the glue - sucking pipe and the glue - discharging pipe is communicated with the inner bladder. The end of the glue - sucking pipe away from the inner bladder is communicated with the glue tank. Among them, a first one - way valve for restricting the fluid to flow into the inner bladder unidirectionally is arranged at the connection between the glue - sucking pipe and the inner bladder, and a second one - way valve for restricting the fluid to flow out of the inner bladder unidirectionally is arranged at the connection between the glue - discharging pipe and the inner bladder. A back plate is arranged at one end of the first ring close to the semi - enclosed shell. The bottom of the inner bladder is connected with a connecting plate, and the bottom end of the connecting plate is connected with the back plate.

[0011] As a further improvement of this technical solution, the glue tank is thread - connected with the surface of the glue - sucking pipe.

[0012] As a further improvement of this technical solution, the glue application assembly further includes a nozzle adjusting body arranged at the top end of the back frame. The nozzle adjusting body includes an angle adjusting shaft and a sliding rod inserted and matched with the angle adjusting shaft. Both ends of the angle adjusting shaft are rotatably connected to the inner wall of the back frame. A collar is provided at the bottom end of the sliding rod, and the end of the glue outlet pipe away from the inner bladder is fixedly connected to the collar.

[0013] As a further improvement of this technical solution, the nozzle adjusting body further includes a pressing block slidably connected to the back frame up and down. One end of the glue outlet pipe passes through the bottom of the pressing block. Insertion rods are provided at both ends of the bottom of the pressing block. The bottom ends of the insertion rods are inserted and matched with the back frame. A second spring is provided at the bottom end of the insertion rod, and the insertion rod is connected to the inner wall of the back frame through the provided second spring.

[0014] As a further improvement of this technical solution, the bottom end of the connecting plate is inserted and matched with one end of the back plate. A first spring is provided on the surface of the connecting plate, and the connecting plate is connected to the surface of the back plate through the provided first spring.

[0015] The second object of this embodiment is to further provide a method for planting nails using the above-mentioned nail planter that can perform glue application treatment after punching, including the following steps: S1. Place the denture model on the second ring, and rotate the second screw rod to drive the fixator to move downwards to press both ends of the denture model; S2. According to the laser points projected by the laser on the denture model, slide the side panel in the side groove and rotate the first screw rod correspondingly to drive the second ring to move until the position where the laser points are projected on the denture model coincides with the position to be punched; S3. When the motor drives the punching drill to rotate, the punching drill drives the driven gear meshing with the main gear through the provided main gear, and then drives the first ring to move up or down through the driven gear; S4. When the first ring moves downward from the top dead center, the punching drill contacts and punches the denture model, and the back plate stretches the inner bladder to form a negative pressure area inside the inner bladder. Then, glue is sucked from the glue tank through the glue suction pipe. When the first ring moves upward from the bottom dead center, the punching drill disengages from the denture model, and the back plate squeezes the inner bladder, so that the glue in the inner bladder is ejected from the glue outlet pipe to the punched position of the denture model for glue application treatment. Then, the nail-like object is placed into the hole, and the excess overflowing glue is removed.

[0016] Compared with the prior art, the beneficial effects of the present invention: 1. In the stud planting machine and stud planting method capable of performing glue sticking treatment after punching, when the first ring moves downward from the top dead center, the punching drill contacts and punches the denture model. During this process, the back plate stretches the inner bladder through the connecting plate, the volume of the inner bladder increases, a negative pressure area is formed inside the inner bladder, and then glue is sucked from the glue tank through the glue suction pipe. When the first ring moves upward from the bottom dead center, the punching drill disengages from the denture model, and the back plate squeezes the inner bladder through the connecting plate, so that the glue in the inner bladder is ejected through the glue outlet pipe to the punching position of the denture model for glue coating treatment. It can automatically perform glue coating treatment on the punching position after punching, thus simplifying the process, reducing the operation steps, and reducing the labor intensity of workers.

[0017] 2. In the stud planting machine and stud planting method capable of performing glue sticking treatment after punching, by providing a pressure block, when the first ring has not reached the top dead center, the pressure block presses on the glue outlet pipe to block it. When the first ring is about to reach the top dead center position, the back plate contacts the bottom end of the insertion rod and drives the pressure block to move upward. Under the elastic force of the first spring, the inner bladder is squeezed, and the glue in the inner bladder can be ejected through the glue outlet pipe to the punching position on the denture model for glue coating treatment, which can ensure that the ejected glue accurately falls into the punching position on the denture model, thus ensuring the glue coating quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a schematic diagram of the overall structure of the present invention; Figure 2 is a schematic diagram of the structure of the drilling assembly of the present invention; Figure 3 is a sectional structure diagram of the punching body of the present invention; Figure 4 is a sectional structure diagram of the lifting body of the present invention; Figure 5 is a schematic diagram of the structure of the glue coating assembly of the present invention; Figure 6 is a sectional view of the suction structure of the present invention; Figure 7 is a schematic diagram of the structure of the pipe orifice adjusting body of the present invention Figure 1 ; Figure 8 is a schematic diagram of the structure of the pipe orifice adjusting body of the present invention Figure 2 ; Figure 9 is a schematic diagram of the active state of the drilling assembly and the glue coating assembly of the present invention; Figure 10 is a schematic diagram of the active state of the pipe orifice adjusting body of the present invention.

[0019] The meanings of the various reference numerals in the figures are as follows: 1. Drilling assembly; 11. Punching body; 111. Support; 112. Motor; 113. Punching drill; 1131. Main gear; 1132. Sub gear; 114. Back frame; 115. Laser; 12. Lifting body; 121. First ring; 1211. Side groove; 1212. Side panel; 1213. First screw; 1214. Bottom column; 1215. Back panel; 122. Second ring; 1221. Second screw; 1222. Fixer; 2. Glue coating assembly; 21. Glue tank; 22. Suction structure; 221. Semi-enclosed shell; 222. Glue suction tube; 223. Glue outlet tube; 224. Inner capsule; 225. Connecting plate; 226. First spring; 23. Nozzle adjustment body; 231. Angle adjustment shaft; 232. Sliding rod; 233. Ring; 234. Press block; 235. Insert rod; 236. Second spring. DETAILED DESCRIPTION

[0020] The following will be combined with the accompanying drawings in the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0021] See also Figure 1 , Figure 2 , Figure 3 , Figure 5 As shown, one of the purposes of this embodiment is to provide a nailing machine that can be glued after drilling, including a drilling component 1 and a gluing component 2 on the drilling component 1, the drilling component 1 includes a punching body 11 and a lifting body 12 arranged on the punching body 11, the lifting body 12 is used to fix the denture model, the punching body 11 is connected with the lifting body 12 by transmission, and the punching body 11 is used to drive the lifting body 12 to move up and down and punch holes in the denture model.

[0022] The glue coating component 2 includes a glue tank 21 and a suction structure 22 connected to the glue tank 21. The glue tank 21 and the suction structure 22 are both arranged on the punching body 11. The suction structure 22 is connected to one side of the lifting body 12. The suction structure 22 is used to suck out the glue in the glue tank 21 and spray it to the punching position on the denture model. After the denture model is placed on the lifting body 12 and fixed, the lifting body 12 is driven by the punching body 11 to move up and down. When the lifting body 12 moves downward, the punching body 11 contacts and punches holes in the denture model, and the downward movement of the lifting body 12 will drive the suction structure 22 to suck glue from the glue tank 21. When the lifting body 12 moves upward, the denture model is separated from the punching body 11, and the suction structure 22 sprays the sucked glue to the punching position on the denture model.

[0023] The above structure is disclosed as follows: As Figure 3 , Figure 4 shown, the punching body 11 includes a support 111 and a back frame 114 provided on the back of the support 111. One end of the top of the back frame 114 is provided with a laser 115 for projecting laser points. A motor 112 is provided in the support 111. The top end of the motor 112 is connected with a punching drill 113 for punching. The punching drill 113 and the laser point projected by the laser 115 are on the same vertical line, so that the laser point on the denture model is the punching position of the punching drill 113. The lifting body 12 includes a first ring 121 above the support 111 and a second ring 122 on the top of the first ring 121. The bottom of the first ring 121 is inserted and matched with the top of the support 111. The upper surface of the second ring 122 is symmetrically threadedly connected with second screws 1221. A fixator 1222 for pressing the denture model is sleeved on the surface of the second screws 1221. A side groove 1211 penetrating the surface is opened on the side wall of the first ring 121. A side panel 1212 is slidably connected in the side groove 1211. The side panel 1212 is rotatably connected with a first screw 1213. One end of the first screw 1213 is inserted into the side wall of the second ring 122 and threadedly connected with the second ring 122. After the denture model is placed on the second ring 122, by rotating the second screws 1221 threadedly connected with the second ring 122, the second screws 1221 drive the fixator 1222 to move downward to press both ends of the denture model, so as to fix the denture model. Then, according to the laser points projected by the laser 115 on the denture model, the side panel 1212 is slid in the side groove 1211 and the first screw 1213 is rotated to drive the second ring 122 to move on the first ring 121 until the projected position of the laser point on the denture model coincides with the position to be punched, completing the fixation and position adjustment of the denture model.

[0024] After the fixation and position adjustment of the denture model are completed, the denture model can be punched. The punching drill 113 is coaxially connected with a main gear 1131. The main gear 1131 meshes with a sub-gear 1132. The bottom of the first ring 121 is symmetrically provided with bottom columns 1214. The bottom ends of the bottom columns 1214 pass through the middle of the sub-gear 1132 and are threadedly connected with the sub-gear 1132. When the motor 112 drives the punching drill 113 to rotate, the punching drill 113 drives the sub-gear 1132 meshing with the main gear 1131 through the provided main gear 1131, and then drives the first ring 121 to move up or down through the sub-gear 1132, as Figure 9 , Figure 10 shown by the double-headed arrow a in. When the first ring 121 moves downward, the top end of the punching drill 113 contacts the bottom of the denture model through the first ring 121 and the bottom of the second ring 122, and punches the denture model.

[0025] After punching, it is necessary to apply glue to the punched position of the denture model to facilitate filling the gap between the punched position and the nail-like object. For example, Figure 5 , Figure 6 As shown, the suction structure 22 includes a semi-closed shell 221 fixedly arranged at one end of the back frame 114 away from the laser 115. A glue suction pipe 222 and a glue outlet pipe 223 are arranged at the top end of the semi-closed shell 221. An inner bladder 224 is arranged inside the semi-closed shell 221. One end of each of the glue suction pipe 222 and the glue outlet pipe 223 is communicated with the inner bladder 224. The end of the glue suction pipe 222 away from the inner bladder 224 is communicated with the glue tank 21. Among them, a first one-way valve for restricting the one-way inflow of fluid into the inner bladder 224 is arranged at the connection between the glue suction pipe 222 and the inner bladder 224, and a second one-way valve for restricting the one-way outflow of fluid from the inner bladder 224 is arranged at the connection between the glue outlet pipe 223 and the inner bladder 224. A back plate 1215 is arranged at one end of the first ring 121 close to the semi-closed shell 221. The bottom of the inner bladder 224 is connected with a connecting plate 225, and the bottom end of the connecting plate 225 is connected with the back plate 1215. When the first ring 121 moves up and down, the inner bladder 224 will be squeezed or stretched through the back plate 1215 and the connecting plate 225. Specifically, when the first ring 121 moves downward from the upper dead center, the punching drill 113 contacts and punches the denture model. During this process, the back plate 1215 stretches the inner bladder 224 through the connecting plate 225, the volume of the inner bladder 224 increases, a negative pressure area is formed inside the inner bladder 224, and then glue is sucked from the glue tank 21 through the glue suction pipe 222. The flow direction of the glue is as shown by the arrow b in Figure 9 , Figure 10 . When the first ring 121 moves upward from the lower dead center, the punching drill 113 disengages from the denture model, and the back plate 1215 squeezes the inner bladder 224 through the connecting plate 225, so that the glue in the inner bladder 224 is sprayed out through the glue outlet pipe 223 to the punched position of the denture model. The flow direction of the glue is as shown by the arrow c in Figure 9 , Figure 10 for glue application treatment. Further, the glue tank 21 is threadedly connected to the surface of the glue suction pipe 222. By means of threaded connection, it is convenient to replace the glue tank 21 when the glue in the glue tank 21 is used up.

[0026] When spraying glue, in order to ensure that the glue can be sprayed onto the punched position on the denture model, such as Figure 7As shown, the glue application assembly 2 further includes a nozzle adjusting body 23 disposed at the top end of the back frame 114. The nozzle adjusting body 23 includes an angle adjusting shaft 231 and a sliding rod 232 inserted and cooperated with the angle adjusting shaft 231. Both ends of the angle adjusting shaft 231 are rotatably connected to the inner wall of the back frame 114. A collar 233 is provided at the bottom end of the sliding rod 232. One end of the glue outlet tube 223 away from the inner bladder 224 passes through the collar 233 and is fixedly connected to the collar 233. When the first ring 121 is at the initial position of the upper dead center, the sliding rod 232 is rotated about the angle adjusting shaft 231, and the collar 233 at the end of the sliding rod 232 drives one end of the glue outlet tube 223 toward the punching position on the denture model, so that when the first ring 121 moves upward from the lower dead center, the glue in the inner bladder 224 can be sprayed onto the punching position on the denture model through the glue outlet tube 223.

[0027] Considering that when the first ring 121 moves upward from the lower dead center, the back plate 1215 drives the connecting plate 225 to squeeze the inner bladder 224, which may cause the glue to be sprayed from the glue outlet tube 223 before the first ring 121 reaches the upper dead center, and the glue cannot accurately fall into the punching position on the denture model, thus affecting the glue application quality. As Figure 8 As shown, the nozzle adjusting body 23 further includes a pressing block 234 slidably connected to the back frame 114 up and down. One end of the glue outlet tube 223 passes through the bottom of the pressing block 234. Insertion rods 235 are provided at both ends of the bottom of the pressing block 234. The bottom ends of the insertion rods 235 pass through the back frame 114 and are inserted and cooperated with the back frame 114. A second spring 236 is provided at the bottom end of the insertion rod 235. The insertion rod 235 is connected to the inner wall of the back frame 114 through the second spring 236 provided. When the first ring 121 is at the lower dead center or near the lower dead center position, the back plate 1215 does not contact the insertion rod 235. Under the elastic force of the second spring 236, the pressing block 234 moves downward to press the glue outlet tube 223, so that the glue outlet tube 223 is closed and the glue in the inner bladder 224 cannot be sprayed through the glue outlet tube 223. The bottom end of the connecting plate 225 is inserted and cooperated with one end of the back plate 1215. A first spring 226 is provided on the surface of the connecting plate 225. The connecting plate 225 is connected to the surface of the back plate 1215 through the first spring 226 provided. As Figure 10As shown by arrow d, the pressing block 234 slides up and down along the backrest 114. When the first ring 121 is in the state of moving upward from the lower dead center but has not reached the upper dead center, the back plate 1215 does not contact the inserting rod 235. At this time, under the elastic force of the second spring 236, the pressing block 234 presses on the glue outlet tube 223, so that the glue outlet tube 223 is blocked. Since the glue in the inner capsule 224 cannot be sprayed out through the glue outlet tube 223, that is, the volume of the inner capsule 224 cannot be reduced, the first spring 226 is compressed by the back plate 1215. When the first ring 121 is about to reach the upper dead center position, the back plate 1215 contacts the bottom end of the inserting rod 235 and drives the pressing block 234 to move upward. Under the elastic force of the first spring 226, the inner capsule 224 is squeezed, and the glue in the inner capsule 224 can be sprayed through the glue outlet tube 223 onto the punched position on the denture model for glue application. Then, the nail-shaped object is placed into the hole, and after removing the excess overflowing glue, the firm combination of the denture model and the nail-shaped object can be completed.

[0028] The second object of this embodiment is also to provide a method for implanting nails using the above-described nail implanting machine that can perform glue bonding treatment after punching. The specific steps are as follows: S1. After placing the denture model on the second ring 122, by rotating the second screw rod 1221 threadedly connected to the second ring 122, the second screw rod 1221 drives the fixator 1222 to move downward to press both ends of the denture model, thereby achieving the fixation of the denture model. S2. According to the laser points projected by the laser 115 on the denture model, slide the side panel 1212 in the side groove 1211 and rotate the first screw rod 1213 correspondingly to drive the second ring 122 to move on the first ring 121 until the projected position of the laser point on the denture model coincides with the position to be punched, completing the fixation and position adjustment of the denture model. S3. When the motor 112 drives the punching drill 113 to rotate, the punching drill 113 drives the secondary gear 1132 meshing with the main gear 1131 through the provided main gear 1131, and further drives the first ring 121 to move up or down through the secondary gear 1132. S4. When the first ring 121 moves downward from the upper dead center, the punching drill 113 contacts and punches the denture model. During this process, the back plate 1215 stretches the inner capsule 224 through the connecting plate 225, the volume of the inner capsule 224 increases, a negative pressure area is formed inside the inner capsule 224, and then glue is sucked from the glue tank 21 through the glue suction tube 222. When the first ring 121 moves upward from the lower dead center, the punching drill 113 disengages from the denture model, and the back plate 1215 squeezes the inner capsule 224 through the connecting plate 225, so that the glue in the inner capsule 224 is sprayed out through the glue outlet tube 223 onto the punched position of the denture model for glue application. Then, the nail-shaped object is placed into the hole, and after removing the excess overflowing glue, the firm combination of the denture model and the nail-shaped object can be completed.

[0029] The foregoing has shown and described the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments, and the above embodiments and the descriptions in the specification are only preferred examples of the present invention, which are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and all these changes and improvements fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.

Claims

1. A seed nail machine capable of performing glue treatment after punching, characterized in that: It includes a drilling assembly (1) and an adhesive applying assembly (2) on the drilling assembly (1); The drilling assembly (1) includes a drilling body (11) and a lifting body (12) arranged on the drilling body (11). The lifting body (12) is used to fix the denture model. The drilling body (11) is in transmission connection with the lifting body (12). The drilling body (11) is used to drive the lifting body (12) to move up and down and drill holes in the denture model; The adhesive applying assembly (2) includes an adhesive tank (21) and a suction structure (22) communicated with the adhesive tank (21). The adhesive tank (21) and the suction structure (22) are both arranged on the drilling body (11). The suction structure (22) is connected to one side of the lifting body (12). The suction structure (22) is used to suck out the adhesive in the adhesive tank (21) and spray it onto the drilled position on the denture model. The drilling body (11) drives the lifting body (12) to move up and down. When the lifting body (12) moves down, the drilling body (11) contacts the denture model and drills holes. And the downward movement of the lifting body (12) will drive the suction structure (22) to suck the adhesive from the adhesive tank (21). Then when the lifting body (12) moves up, the denture model separates from the drilling body (11), and the suction structure (22) sprays the sucked adhesive onto the drilled position on the denture model.

2. The stud machine capable of glue application after punching according to claim 1, characterized in that: The drilling body (11) includes a support (111) and a back frame (114) arranged on the back of the support (111). One end of the top of the back frame (114) is provided with a laser (115) for projecting laser points. A motor (112) is arranged in the support (111). The top end of the motor (112) is connected with a drilling bit (113) for drilling holes. The drilling bit (113) and the laser point projected by the laser (115) are on the same vertical line. The lifting body (12) includes a first ring (121) above the support (111) and a second ring (122) on the top of the first ring (121). The bottom of the first ring (121) is inserted and matched with the top of the support (111). The upper surface of the second ring (122) is symmetrically threadedly connected with second screws (1221). A fixer (1222) for pressing the denture model is sleeved on the surface of the second screws (1221).

3. The nail planting machine capable of glue sticking treatment after punching according to claim 2, wherein: A side groove (1211) penetrating through its surface is opened on the side wall of the first ring (121). A side panel (1212) is slidably connected in the side groove (1211). The side panel (1212) is rotatably connected with a first screw (1213). One end of the first screw (1213) is threadedly connected with the second ring (122).

4. The seed nailer capable of glue treatment after punching according to claim 3, wherein: The drilling bit (113) is coaxially connected with a main gear (1131). The main gear (1131) meshes with a sub-gear (1132). The bottom of the first ring (121) is symmetrically provided with bottom columns (1214). The bottom ends of the bottom columns (1214) are threadedly connected with the sub-gear (1132).

5. The nail planting machine capable of glue application after punching according to claim 4, wherein: The suction structure (22) includes a semi-closed shell (221) fixedly arranged at one end of the back frame (114) away from the laser (115). A glue suction pipe (222) and a glue outlet pipe (223) are arranged at the top end of the semi-closed shell (221). An inner bladder (224) is arranged inside the semi-closed shell (221). One end of each of the glue suction pipe (222) and the glue outlet pipe (223) is communicated with the inner bladder (224). One end of the glue suction pipe (222) away from the inner bladder (224) is communicated with the glue tank (21). Wherein, a first one-way valve for restricting the one-way inflow of fluid into the inner bladder (224) is arranged at the connection between the glue suction pipe (222) and the inner bladder (224), and a second one-way valve for restricting the one-way outflow of fluid from the inner bladder (224) is arranged at the connection between the glue outlet pipe (223) and the inner bladder (224). A back plate (1215) is arranged at one end of the first ring (121) close to the semi-closed shell (221). A connecting plate (225) is connected to the bottom of the inner bladder (224), and the bottom end of the connecting plate (225) is connected to the back plate (1215).

6. The nail planting machine capable of performing glue sticking treatment after punching according to claim 5, wherein: The glue tank (21) is threadedly connected to the surface of the glue suction pipe (222).

7. The nail planting machine capable of performing glue sticking treatment after punching according to claim 5, wherein: The glue application assembly (2) further includes a pipe orifice adjusting body (23) arranged at the top end of the back frame (114). The pipe orifice adjusting body (23) includes an angle adjusting shaft (231) and a sliding rod (232) inserted and matched with the angle adjusting shaft (231). Both ends of the angle adjusting shaft (231) are rotatably connected to the inner wall of the back frame (114). A collar (233) is arranged at the bottom end of the sliding rod (232). One end of the glue outlet pipe (223) away from the inner bladder (224) is fixedly connected to the collar (233).

8. The nail planting machine capable of glue application after punching according to claim 7, characterized in that: The pipe orifice adjusting body (23) further includes a pressing block (234) slidably connected to the back frame (114) up and down. One end of the glue outlet pipe (223) passes through the bottom of the pressing block (234). Plug rods (235) are arranged at both ends of the bottom of the pressing block (234). The bottom ends of the plug rods (235) are inserted and matched with the back frame (114). A second spring (236) is arranged at the bottom ends of the plug rods (235). The plug rods (235) are connected to the inner wall of the back frame (114) through the arranged second spring (236).

9. The kind of nail machine capable of gluing treatment after punching according to claim 8, characterized in that: The bottom end of the connecting plate (225) is inserted and matched with one end of the back plate (1215). A first spring (226) is arranged on the surface of the connecting plate (225). The connecting plate (225) is connected to the surface of the back plate (1215) through the arranged first spring (226).

10. A seeding nail method using a seeding nail machine capable of gluing treatment after punching as described in any one of claims 5-9, characterized in that, Including the following steps: S1. Place the denture model on the second ring (122), and rotate the second screw rod (1221) to drive the fixator (1222) to move downwards to press both ends of the denture model; S2. According to the laser points projected by the laser (115) on the denture model, slide the side panel (1212) in the side groove (1211) and rotate the first screw (1213) accordingly to drive the second ring (122) to move until the projected position of the laser point on the denture model coincides with the position to be drilled. S3. When the motor (112) drives the drilling bit (113) to rotate, the drilling bit (113) drives the secondary gear (1132) meshing with the primary gear (1131) through the provided primary gear (1131), and then drives the first ring (121) to move up or down through the secondary gear (1132). S4. When the first ring (121) moves downward from the top dead center, the drilling bit (113) contacts and drills the denture model, and the back plate (1215) stretches the inner bladder (224) to form a negative pressure area inside the inner bladder (224), and then sucks glue from the glue tank (21) through the glue suction tube (222). When the first ring (121) moves upward from the bottom dead center, the drilling bit (113) disengages from the denture model, and the back plate (1215) squeezes the inner bladder (224), so that the glue in the inner bladder (224) is ejected through the glue outlet tube (223) to the drilled position of the denture model for glue application treatment. Then, the nail-like object is placed into the hole, and the excess overflowing glue is removed.

Citation Information

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