会议论文详细信息
International Conference on Mechanical Engineering and Applied Composite Materials
Determination on Damage Mechanism of the Planet Gear of Heavy Vehicle Final Drive
机械制造;材料科学
Ramdan, R.D.^1 ; Setiawan, R.^1 ; Sasmita, F.^1 ; Suratman, R.^1 ; Taufiqulloh^2
Faculty of Mechanical and Aerospace Engineering, InstitutTeknologi Bandung, Bandung, Indonesia^1
Komatsu Indonesia, Jakarta, Indonesia^2
关键词: Contact fatigues;    Damage mechanism;    Initial damage;    Initiation sites;    Laboratory work;    Micro Vickers hardness;    Remaining life;    Visual observations;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/307/1/012055/pdf
DOI  :  10.1088/1757-899X/307/1/012055
学科分类:材料科学(综合)
来源: IOP
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【 摘 要 】

The works focus on the investigation of damage mechanism of fractured in the form of spalling of the planet gears from the final drive assembly of 160-ton heavy vehicles. The objective of this work is to clearly understand the mechanism of damage. The work is the first stage of the on-going research on the remaining life estimation of such gears. The understanding of the damage mechanism is critical in order to provide accurate estimate of the gear's remaining life with observed initial damage. The analysis was performed based on the metallurgy laboratory works, including visual observation, macro-micro fractography by optical stereo and optical microscope and micro-vickers hardness test. From visual observation it was observed pitting that form lining defect at common position, which is at gear flank position. From spalling sample it was observed ratchet mark at the boundary between macro pitting and the edge of fractured parts. Further observation on the cross-section of the samples by optical microscope confirm that initial micro pitting occur without spalling of the case hardened surface. Spalling occur when pitting achieve certain critical size, and occur at multiple initiation site of crack propagation. From the present research it was concluded that pitting was resulted due to repeated contact fatigue. In addition, development of micro to macro pitting as well as spalling occur at certain direction towards the top of the gear teeth.

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