Plastic Notch Prototype Machine Automatic Notch Sample Making Machine
Product use:
The notch prototype machine is a standard notch specimen for simply supported beam and cantilever beam impact test of non-metallic materials such as plastics and plexiglass prepared by mechanical processing.
Material science research: Researchers can use the electric notch prototype machine to prepare notch specimens of metals, ceramics, polymers and other materials for studying the structure, mechanical properties and fracture behavior of materials.
Metal processing: It can be used to prepare notches of metal sheets, pipes and other samples for subsequent processing.
Plastic engineering: In the plastics industry, the electric notch prototype machine can be used to prepare notches of plastic sheets, pipes and other samples for performance tests such as impact tests.
Product Features:
1. High efficiency: Automatic feeding and automatic positioning functions make the preparation process more efficient and reduce the tediousness of manual operation.
2. High precision: High-precision cutting tools ensure the quality of sample preparation, making the test results more accurate and reliable.
3. Versatility: Notched samples of different shapes and sizes can be prepared according to different test requirements.
4. Easy to operate: The equipment is simple and convenient to operate, and is usually equipped with a touch screen or button control panel, making the operation more intuitive and easy to understand.
| Table travel | >9OMM | Feed speed | 0-30MM/MIN |
| Sampling efficiency | More than 100 pieces/10MIN | Feed amount | 0-2.5MM optional |
| Notch type | Type A, Type B (optional), Type C (optional) | Feed stroke | 10MM |
| Dimensions | Length 450MM*Width 390MM*Height 360MM | ||
| Adjustable sample type | Type 1, Type 2, Type 3 | ||
| Type A tool | 45±1 degree R=0.25±0.025 | ||
| Type B tool | 45±1R=1.0±0.025 | ||
| Type C1 tool | 45±1 R=0.1±0.02 | ||
| Type C2 tool | Thickness 1=2±0.1 R<=0.1 | ||
| Type C3 tool | Thickness 2=0.8±0.1 R=0.2±0.05 | ||


















