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A Study on the Effect of physico-chemical Factors in Wear Mechanism in a Lubricated Concentrated Contact (II)

윤활시스템에서 마모메카니즘에 미치는 물리화학적 영향에 관한 연구(II)

  • 최웅수 (한국과학기술원 기계공학부) ;
  • 권오관 (한국과학기술원 기계공학부) ;
  • 문탁진 (고려대학교 재료공학과) ;
  • 유영흥 (고려대학교 화학공학과)
  • Published : 1988.04.01

Abstract

A Study on the effect of the additives in lubricating oil was investigated on the basis of the thermal activated wear theory in terms of their wear behaviours, using four ballwear machine. The sample oils, which included diethyl-3, 5-di-t-butyi-4-hydroxy-benzyl phosphonate (DEP), ZDDP and TCP additives respectively, showed distinct wear characteristics depending upon the bulk oil temperature and the sliding velocity. The newly synthesized additive, viz., DEP showed excellent antiwear performance cornpared with the conventional additives, ZDDP and TCP. On the basis of the experimental results, it is reduced that the wear mechanism of the conventional additives, viz., ZDDP and TCP is the protective film formation and their antiwear capability is depending upon the shearing strength of the film formed. On the other hand, the new additive, DEP showed that the secondary activation energy was much eliminated and so, the thermal instability was reduced by the hydrogen scavenging reaction of the new additive, which was virtually an endothermic reaction process.In conclusion, a new concept of antiwear mechanism is estabilished and testified. And new chemical, which showed the function of hydrogen and free radical scavenging role, is synthesized and introduced as the new, highly antiwear effective lubricating oil additive.

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