修湿坯打孔装置
By designing a wet blank drilling device that includes a frame, a drill, and a mud remover, and using a robot and a pneumatic motor for drive, the problems of laborious hand-held drilling and waste mud retention in the robot's cutting tool are solved. This achieves efficient and precise round hole processing and waste mud removal, thereby reducing costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- TANGSHAN LINGXUN PRECISION SPECIAL EQUIP CO LTD
- Filing Date
- 2025-08-12
- Publication Date
- 2026-07-17
AI Technical Summary
In the existing process of repairing wet toilet blanks, hand-held drilling is laborious and inaccurate, while robotic drilling leaves waste mud inside the tool, requiring a vacuum system, which results in high costs and low utilization.
Design a wet blank drilling device that includes a frame, a punch, and a mud discharger. The punch is driven by a robot to process round holes. Combined with a pneumatic motor and a mud discharge pressure plate structure, the waste mud can be automatically discharged, avoiding the need for a vacuum system.
It reduced the labor intensity of workers, improved the accuracy of hole drilling, reduced costs, and achieved efficient discharge of waste sludge.
Smart Images

Figure CN224510014U_ABST
Abstract
Claims
1. A device for drilling holes in wet blanks, characterized in that: The system includes a frame, a punch, and a mud discharge device. The punch includes a support frame, a quick-change disc, a rotating flange, a connecting flange, and a punching blade. The quick-change disc is located at the upper end of the support frame, and a motor is located in the middle of the support frame. The output shaft of the motor is connected to the rotating flange, which in turn is connected to the connecting flange. The rod of the punching blade is connected to the connecting flange. The mud discharge device includes a mud discharge pressure plate, a return spring, and a mud-topping structure. The mud discharge pressure plate is fitted onto the rod of the punching blade, and the return spring is fitted onto the rod of the punching blade at a position between the mud discharge pressure plate and the punching blade. A connecting rod is located at the bottom of the mud discharge pressure plate. A limiting hole adapted to the connecting rod is opened on the punching blade, and the connecting rod passes through the limiting hole into the cavity of the punching blade. The mud-topping structure is located inside the punching blade and connected to the connecting rod. A snap-fit plate with a U-shaped opening is provided on the frame, and the mud discharge pressure plate is snapped onto the bottom of the snap-fit plate.
2. The green conditioning and perforating apparatus of claim 1 wherein: The mud-coating structure is either a mud-coating plate or a mud-coating rod.
3. The green conditioning and perforating apparatus of claim 2 wherein: Both the mudguard and mudguard rod are made of PMMA.
4. The green conditioning and perforating apparatus of claim 1 wherein: The motor in the middle of the support frame is a pneumatic motor. The air inlet for driving the pneumatic motor is located at the quick-change plate, and the air inlet is connected to the pneumatic motor through an air pipe.
5. The green conditioning and perforating apparatus of claim 4 wherein: A throttle valve is installed at the air inlet, and the throttle valve is connected to the pneumatic motor through an air pipe.
6. The green conditioning and perforating apparatus of claim 1 wherein: The bottom of the mud press plate has two connecting rods arranged symmetrically.
7. The green conditioning and perforating apparatus of claim 1 wherein: Waste mud buckets are installed at the lower part of the frame, below the snap-fit plate.