一种氧化锆制品的低温加工设备

By designing an automated reciprocating drive and cooling mechanism, the problems of high labor intensity and low efficiency caused by manual grinding in existing equipment have been solved, enabling efficient and flexible processing of the inner holes of zirconia products.

CN224509201UActive Publication Date: 2026-07-17TAICANG HONGDA JUNMENG NEW MATERIAL

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TAICANG HONGDA JUNMENG NEW MATERIAL
Filing Date
2025-08-13
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

When grinding the inner hole of cylindrical zirconia products, existing grinding equipment requires manual operation to drive the grinding structure to move back and forth, resulting in high labor intensity and low efficiency, making it difficult to meet the needs of high-efficiency production.

Method used

A low-temperature processing device for zirconia products was designed. It adopts a reciprocating drive mechanism and a height adjustment mechanism. The grinding wheel is driven by a motor to achieve automated reciprocating movement. It is equipped with a cooling mechanism to prevent overheating. Combined with the driving and pressing mechanism, it achieves stable positioning and grinding of cylindrical zirconia products.

Benefits of technology

It effectively reduces manpower consumption, lowers the labor intensity of operators, improves processing efficiency, meets the needs of high-efficiency production, and can adapt to the processing needs of workpieces of different specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型提供一种氧化锆制品的低温加工设备,涉及氧化锆制品加工领域,包括:加工机床,所述加工机床上端面左侧安装有龙门架和带动机构,且龙门架上安装有下压机构;所述加工机床上安装有高度调节机构,且高度调节机构顶部设置有往复驱动机构。通过往复驱动机构的设置,可代替人工手动驱动磨削轮往复移动,不仅节省了大量人力体力,降低了操作人员的劳动强度,更能有效突破人工操作速度的限制,从而充分满足现代化高效生产的需求;解决了现有磨削加工设备在对筒状氧化锆制品内孔进行打磨时,需人工手动驱动磨削结构往复移动来实现均匀打磨,不仅费力、劳动强度大,而且加工效率低下,难以满足高效生产的需求的问题。
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Claims

1. A low temperature processing apparatus for a zirconia article, comprising: A processing machine tool (1), on the left side of the upper end face of the processing machine tool (1), a gantry (103) and a driving mechanism (2) are installed, and a pressing mechanism (4) is installed on the gantry (103); characterized in that a height adjustment mechanism (5) is installed on the processing machine tool (1), and a reciprocating driving mechanism (6) is arranged at the top of the height adjustment mechanism (5); the reciprocating driving mechanism (6) includes a driving motor (601) and a sliding box body (603), the upper end of the rotating shaft of the driving motor (601) is installed with a driving disc (602), the right end face of the sliding box body (603) is fixedly connected with a connecting column (607), the upper part of the driving disc (602) is installed with a rectangular shell (605), and the top of the rectangular shell (605) is rotatably connected with a connecting rod (606) through a rotating shaft, the other end of the connecting rod (606) is rotatably connected with the connecting column (607), and the bottom of the sliding box body (603) is fixedly connected with a sliding cylinder (604); a grinding motor (8) is installed inside the sliding box body (603), and the rotating shaft of the grinding motor (8) penetrates through the left side wall of the sliding box body (603), and a grinding wheel (801) is installed at the left end of the rotating shaft of the grinding motor (8); a cooling mechanism (7) is arranged on the processing machine tool (1).

2. A low temperature processing apparatus for zirconia articles as claimed in claim 1, wherein: A water leakage hole (101) is opened on the upper end face of the processing machine tool (1), and a flow blocking frame (102) is arranged at the edge of the upper end face of the processing machine tool (1), a funnel (105) is installed on the inner top end face of the processing machine tool (1), and the funnel (105) is located outside the water leakage hole (101), a water collecting bucket (106) is placed below the funnel (105) on the inner bottom end face of the processing machine tool (1); a control box (104) is installed on the front side of the gantry (103).

3. The apparatus of claim 1, wherein: [[ID= 4. A low temperature processing apparatus for zirconia articles as claimed in claim 3, wherein: The pressing-down mechanism (4) includes a pressing-down electric cylinder (401). The pressing-down electric cylinder (401) is installed on the top of the gantry (103), and the telescopic rod of the pressing-down electric cylinder (401) penetrates through the top of the gantry (103). The lower end of the telescopic rod of the pressing-down electric cylinder (401) is fixedly connected with a lifting plate (402), and a pressing-down wheel (403) is rotatably connected to the bottom of the lifting plate (402). A tubular zirconia product (3) is clamped between the pressing-down wheel (403) and the second roller (205). The upper end surface of the lifting plate (402) is fixedly connected with a vertical guide rod (404) that penetrates through the top of the gantry (103), and a sliding sleeve fixed on the top end surface of the gantry (103) is slidably connected to the outside of the vertical guide rod (404).

5. The apparatus of claim 1, wherein: The height-adjusting mechanism (5) includes a lifting electric cylinder (501). The lifting electric cylinder (501) is installed on the inner top end surface of the processing machine tool (1), and the telescopic rod of the lifting electric cylinder (501) penetrates through the top of the processing machine tool (1). The upper end of the telescopic rod of the lifting electric cylinder (501) is fixedly connected with a lifting support plate (502), and a guide rod (503) that penetrates through the top of the processing machine tool (1) is fixedly connected to the bottom end surface of the lifting support plate (502). A guide cylinder (504) fixed on the upper end surface of the processing machine tool (1) is slidably connected to the outside of the guide rod (503).

6. The apparatus of claim 1, wherein: A T-shaped chute is formed on the upper end surface of the driving disc (602). A T-shaped slider is arranged at the bottom of the rectangular shell (605), and the T-shaped slider is slidably connected with the T-shaped chute; a rectangular slider (608) is slidably connected inside the rectangular shell (605), and an adjusting insertion rod (609) that penetrates through the bottom of the rectangular shell (605) is fixedly connected to the bottom end surface of the rectangular slider (608). A spring is installed inside the rectangular shell (605) above the rectangular slider (608). Adjusting insertion holes (6010) are uniformly formed on the upper end surface of the driving disc (602), and the adjusting insertion rod (609) is inserted into one of the adjusting insertion holes (6010).

7. The apparatus of claim 1, wherein: The cooling mechanism (7) includes a coolant storage box body (701). The coolant storage box body (701) is installed on the inner bottom end surface of the processing machine tool (1), and a liquid extraction pipe (702) is connected to the bottom liquid outlet of the coolant storage box body (701). The other end of the liquid extraction pipe (702) is connected to the liquid extraction port of a water pump (703), and the water pump (703) is installed on the inner bottom end surface of the processing machine tool (1). A liquid infusion pipe (704) is connected to the liquid outlet of the water pump (703), and the other end of the liquid infusion pipe (704) is connected to a metal shaping hose (705). The liquid infusion pipe (704) penetrates through the top of the processing machine tool (1), and the upper end of the liquid infusion pipe (704) is fixedly connected to the right side of the gantry (103); a spray head is arranged at the liquid spraying end of the metal shaping hose (705).