Sintering disc with sintering nail structure

By designing a structure with inserts, sliding cavities, and threaded sleeves on the sintering disc, the problem of uncontrollable sintering pin spacing was solved, achieving stable connection and efficient processing, and improving the fixation effect of ceramic teeth.

CN224094930UActive Publication Date: 2026-04-07SUZHOU ZHONGREN MEDICAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

In the use of existing sintering discs, the spacing between two adjacent sintering pins is uncontrollable, which makes it impossible for the sintering pins to be accurately inserted into the socket, affecting connection stability and processing efficiency.

Method used

A sintered nail structure with a plug rod, a sliding cavity, a circular block, and a threaded sleeve was designed. The spacing between adjacent sintered nails can be finely adjusted through the cooperation of the sliding cavity and the connecting rod, and the screw connection is used for fixation to ensure that the plug rod is accurately inserted into the socket.

Benefits of technology

It enables precise adjustment of the spacing between adjacent sintering pins, improves the connection stability and processing efficiency between the sintering pins and the sintering disc, and simplifies the fixing process of ceramic teeth.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a sintering tray with a sintering nail structure, which comprises a sintering tray body, the top of the sintering tray body is provided with uniformly distributed insertion holes, two insertion rods are arranged above the sintering tray body, the bottom ends of the two insertion rods are respectively connected with the inner walls of the two insertion holes in a sliding manner, and the sintering nail structure is arranged on the sintering tray body. Sintering nail bodies are fixedly connected to the top ends of the two inserting rods correspondingly, and sliding cavities are formed in the tops of the two sintering nail bodies correspondingly. According to the sintering nail, the distance between every two adjacent sintering nail bodies can be finely adjusted, and then the inserting rods on the sintering nail bodies can be smoothly inserted into the inserting holes, so that the stability and efficiency of connection of the sintering nail bodies are improved; a user can fix the porcelain teeth on the mounting blocks at the tops of the sintering nail bodies without considering the distance between the two sintering nail bodies, so that the processing efficiency is effectively improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to sintering disc technical field more specifically, relate to a kind of sintering disc with sintering peg structure. BACKGROUND

[0002] Sintering disc with sintering peg structure is a key equipment specially used for dental material sintering process, it is usually made of high-temperature-resistant, corrosion-resistant materials, such as ceramics or special alloy, to ensure stability and durability during high-temperature sintering process. Sintering pegs on sintering disc are evenly distributed to support and fix porcelain tooth material, ensuring the material maintains correct shape and position during sintering process.

[0003] When processing and producing ceramic teeth, sintering disc is needed. During use, first connect the ceramic teeth to two or more sintering pegs, then fix the sintering pegs on the sintering disc to complete the support and fixation of the ceramic teeth. The connection between the sintering pegs and the sintering disc mainly adopts the plug-in method. The sintering disc has evenly distributed insertion holes that match the bottom ends of the sintering pegs, thereby connecting the sintering pegs. However, in actual use, after multiple sintering pegs are connected to the ceramic teeth, the spacing between two sintering pegs cannot be controlled. Even if the insertion holes on the sintering disc are evenly distributed, there may still be some drawbacks. If the spacing between two adjacent sintering pegs is greater than or less than the multiple of the spacing between two adjacent insertion holes, some of the multiple sintering pegs cannot be inserted into the insertion holes on the sintering disc. SUMMARY

[0004] To solve the problems in the prior art, the utility model aims to provide a sintering disc with sintering peg structure to solve the above background technical problems.

[0005] To achieve the above-mentioned purpose, the utility model adopts the following technical solutions:

[0006] A sintering disc with sintering peg structure includes a sintering disc body. The top of the sintering disc body has evenly distributed insertion holes. Two insertion rods are arranged above the sintering disc body. The bottom ends of the two insertion rods are slidably connected to the inner walls of two insertion holes. The top ends of the two insertion rods are fixedly connected to sintering peg bodies. The top of each sintering peg body has a sliding cavity. The inner walls of the two sliding cavities are slidably connected to circular blocks. The inner top walls of the two sliding cavities have through holes. The top of each circular block is fixedly connected to a connecting rod. The top ends of the two connecting rods are fixedly connected to mounting blocks. Threaded sleeves are sleeved on the two sintering peg bodies and are threadedly connected thereto. Circular discs are fixedly connected to the two mounting blocks.

[0007] Further description of the above technical solutions:

[0008] The bottom end of the insertion rod is provided with a guide surface, which is in a semicircular shape.

[0009] As a further description of the above technical solution:

[0010] The surface of the threaded sleeve is fixedly connected with anti-skid rods distributed in a ring shape, which are in a square shape.

[0011] As a further description of the above technical solution:

[0012] The inner bottom wall of the insertion hole is fixedly connected with a positioning rod, and the bottom of the insertion rod is provided with a positioning hole matched with the positioning rod.

[0013] As a further description of the above technical solution:

[0014] The bottom of the sintering nail body is fixedly connected with a horizontal plate, the horizontal plate is penetrated with a threaded cylinder movably connected therewith, the bottom of the threaded cylinder is sleeved on the positioning rod and is threadedly connected with the positioning rod.

[0015] As a further description of the above technical solution:

[0016] The top end of the threaded cylinder is fixedly connected with an operation disc, which is in a circular shape.

[0017] Compared with the prior art, the present application has the following advantages:

[0018] The present application can finely adjust the spacing between two adjacent sintering nail bodies, so that the insertion rod on the sintering nail body can be smoothly inserted into the insertion hole, thereby improving the stability and efficiency of the connection of the sintering nail body. The user does not need to consider the spacing between the two sintering nail bodies to fix the porcelain tooth on the mounting block on the top of the sintering nail body, thereby effectively improving the processing efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a perspective view of the present application;

[0020] Figure 2 It is a perspective view of the present application;

[0021] Figure 3 It is a sectional view of the present application;

[0022] Figure 4 It is a perspective view of the present application Figure 3 It is an enlarged view of the middle A part of the present application.

[0023] Explanation of reference numerals in the drawing:

[0024] 1, sintering disc body; 2, jack; 3, plug rod; 4, sintering nail body; 5, sliding cavity; 6, round block; 7, through hole; 8, connecting rod; 9, mounting block; 10, threaded sleeve; 11, disc; 12, guide surface; 13, anti-skid rod; 14, positioning rod; 15, positioning hole; 16, cross plate; 17, threaded cylinder; 18, operation disc. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model;

[0026] Please refer to Figures 1-4 In the utility model: a sintering disc with sintering nail structure, including sintering disc body 1, the top of sintering disc body 1 is equipped with the evenly distributed jack 2, the top of sintering disc body 1 is provided with two plug rods 3, the bottom of two plug rods 3 is respectively with the inner wall of two jacks 2 slidingly connected, the top of two plug rods 3 is all fixedly connected with sintering nail body 4, the top of two sintering nail bodies 4 is all equipped with sliding cavity 5, the inner wall of two sliding cavities 5 is all slidingly connected with round block 6, the inner top wall of two sliding cavities 5 is all equipped with through hole 7, the top of two round blocks 6 is all fixedly connected with connecting rod 8, the top of two connecting rods 8 is all fixedly connected with mounting block 9, two sintering nail bodies 4 are all equipped with the threaded sleeve 10 of screw connection with it, two mounting blocks 9 are all equipped with the disc 11 of fixed connection with it.

[0027] In the utility model, when using, sintering nail body 4 has multiple, when processing ceramic tooth, first sintering nail body 4 is pulled out from sintering disc body 1, then user fixes ceramic tooth on the mounting block 9 of two or multiple sintering nail bodies 4, after completing the connection of ceramic tooth with sintering nail body 4, user can aim at appropriate jack 2 with the plug rod 3 on sintering nail body 4 and insert, can complete the connection of sintering nail body 4 with sintering disc body 1, need not consider the interval of adjacent two sintering nail bodies 4 in the process, since mounting block 9 is connected by the cooperation of connecting rod 8, round block 6 and sliding cavity 5, so round block 6 can slide in sliding cavity 5, can change the interval of adjacent two sintering nail bodies 4, realizes the fine adjustment of the interval of adjacent two sintering nail bodies 4, then makes the plug rod 3 on sintering nail body 4 can accurately insert into jack 2, then improves the practicability of device, since the diameter of round block 6 is greater than through hole 7 and less than sliding cavity 5 in the process, so round block 6 can only slide in sliding cavity 5 and cannot slide out, after inserting the plug rod 3 on sintering nail body 4 into jack 2, user can realize the fixation of mounting block 9 by rotating the threaded sleeve 10 on each sintering nail body 4, threaded sleeve 10 will rise along sintering nail body 4 after rotating, until threaded sleeve 10 is close to disc 11, then realizes the locking of mounting block 9, then improves the stability of the connection between porcelain tooth and sintering nail body 4.

[0028] Please refer to Figure 4 Wherein: the bottom end of the plug rod 3 is provided with a guide surface 12, and the guide surface 12 is in a semicircular shape.

[0029] Please refer to Figures 1-3 Wherein: the surface of the threaded sleeve 10 is fixedly connected with anti-skid rods 13 distributed in a ring shape, and the anti-skid rods 13 are in a square shape.

[0030] In the utility model, the setting of the anti-skid rods 13 can facilitate the rotation of the threaded sleeve 10 by the user, thereby improving the practicability of the device.

[0031] Please refer to Figure 4 Wherein: the inner bottom wall of the insertion hole 2 is fixedly connected with a positioning rod 14, and the bottom of the plug rod 3 is provided with a positioning hole 15 matched with the positioning rod 14.

[0032] In the utility model, the cooperation of the positioning rod 14 and the positioning hole 15 can position the plug rod 3, thereby improving the positioning effect of the sintering nail body 4.

[0033] Please refer to Figures 1-4 Wherein: the bottom of the sintering nail body 4 is fixedly connected with a horizontal plate 16, the horizontal plate 16 is penetrated with a threaded cylinder 17 movably connected therewith, and the bottom of the threaded cylinder 17 is sleeved on the positioning rod 14 and is threadedly connected therewith.

[0034] In the utility model, after the sintering nail body 4 is connected with the sintering disc body 1, the user can align the threaded cylinder 17 with the positioning rod 14 in the adjacent insertion hole 2 by rotating the sintering nail body 4, and the user can rotate the threaded cylinder 17 to the positioning rod 14, thereby avoiding the rotation of the sintering nail body 4.

[0035] Please refer to Figures 1-3 Wherein: the top end of the threaded cylinder 17 is fixedly connected with an operation disc 18, and the operation disc 18 is in a circular shape.

[0036] In the utility model, the setting of the operation disc 18 can facilitate the rotation of the threaded cylinder 17 by the user, and can limit the up-down position of the sintering nail body 4, thereby improving the practicability of the device.

[0037] The above is only a preferred specific embodiment of the utility model; however, the protection scope of the utility model is not limited to this. Any skilled person in the art can make equivalent replacement or change according to the technical scheme and improvement concept of the utility model within the technical range disclosed by the utility model, which should be covered in the protection scope of the utility model.

Claims

1. A sintered disk with a sintered nail structure, comprising a sintered disk body (1), characterized in that: The top of the sintering disc (1) is provided with evenly distributed insertion holes (2). Two insertion rods (3) are provided above the sintering disc (1). The bottom ends of the two insertion rods (3) are slidably connected to the inner walls of the two insertion holes (2). The top ends of the two insertion rods (3) are fixedly connected to the sintering nail bodies (4). The top of the two sintering nail bodies (4) is provided with sliding cavities (5). The inner walls of the two sliding cavities (5) are slidably connected with round blocks (6). The inner top walls of the two sliding cavities (5) are provided with through holes (7). The tops of the two round blocks (6) are fixedly connected with connecting rods (8). The tops of the two connecting rods (8) are fixedly connected with mounting blocks (9). The two sintering nail bodies (4) are each fitted with threaded sleeves (10) that are threadedly connected to them. The two mounting blocks (9) are each fitted with round discs (11) that are fixedly connected to them.

2. A sintered disk with a sintered nail structure according to claim 1, characterized in that: The bottom end of the insertion rod (3) is provided with a guide surface (12), and the guide surface (12) is semi-circular in shape.

3. A sintered disk with a sintered nail structure according to claim 1, characterized in that: The threaded sleeve (10) is fixedly connected to annularly distributed anti-slip rods (13), which are square in shape.

4. A sintered disk with a sintered nail structure according to claim 1, characterized in that: The inner bottom wall of the insertion hole (2) is fixedly connected to a positioning rod (14), and the bottom of the insertion rod (3) is provided with a positioning hole (15) that is compatible with the positioning rod (14).

5. A sintering disk with a sintering nail structure according to claim 4, characterized in that: The bottom of the sintered nail body (4) is fixedly connected to a horizontal plate (16), and a threaded cylinder (17) is inserted through the horizontal plate (16) and movably connected thereto. The bottom of the threaded cylinder (17) is sleeved on the positioning rod (14) and threadedly connected thereto.

6. A sintered disk with a sintered nail structure according to claim 5, characterized in that: The top end of the threaded cylinder (17) is fixedly connected to an operating disc (18), which is circular in shape.