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The heavy-duty reciprocating friction and wear testing machine adopts the crankshaft slider mechanism rod to realize the reciprocating linear motion of the dynamic sample block. The dynamic and static sample blocks adopt the form of plane contact sliding friction. After setting the load, reciprocating work frequency and lubrication conditions, The friction and wear properties of the tested samples were tested and tested. This testing machine is especially suitable for evaluating the anti-friction and wear-resisting characteristics and comprehensive performance of composite self-lubricating materials, powder metallurgy materials and bimetallic materials.
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Return to compound friction and wear test machine
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The heavy-duty reciprocating friction and wear testing machine adopts the crankshaft slider mechanism rod to realize the reciprocating linear motion of the dynamic sample block. The dynamic and static sample blocks adopt the form of plane contact sliding friction. After setting the load, reciprocating work frequency and lubrication conditions, The friction and wear properties of the tested samples were tested and tested. This testing machine is especially suitable for evaluating the anti-friction and wear-resisting characteristics and comprehensive performance of composite self-lubricating materials, powder metallurgy materials and bimetallic materials.
The main technical parameters
1. Test load: 10~500kN (control accuracy ±1.0﹪);
2. Maximum traction force (that is, friction force): 4~200 kN (set according to the maximum load friction coefficient of 0.2, double-sided loading), force sensor, Accuracy ±0.3%;
3. Test load measurement error: ±1.0%;
4. Motor power: main engine: (YYF2-225M-4) 45kW (three-phase 380V);
oil source: (YYB-90S-6N) 0.75kW ( Three-phase 380V);
5. Main motor speed: 180~2700 r/min;
6. Power supply: Three-phase 380V, 50A;
7. Temperature measurement range: room temperature to 300°C;
8. Temperature indication accuracy: ±1°C;
9. Friction measurement range: ±200kN;
10. Friction indication error: ±1 %FS;
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