Friction and Wear Properties of Wheat Straw Powder Third Body on Steel-Steel Friction Pair

Third body plant fibers have an important influence on the friction and wear properties of metal friction pairs. In this study, wheat straw powder with different particle sizes was prepared, and a pin-on-disk friction tester was employed to evaluate the friction and wear properties of the wheat stra...

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Main Authors: Chenglong Lian, Wei Zhao, Shumei Wang, Peng Zhang, Xiaoying Dong, Yongfeng Li
Format: Article
Language:English
Published: MDPI AG 2022-06-01
Series:Agriculture
Subjects:
Online Access:https://www.mdpi.com/2077-0472/12/6/882
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author Chenglong Lian
Wei Zhao
Shumei Wang
Peng Zhang
Xiaoying Dong
Yongfeng Li
author_facet Chenglong Lian
Wei Zhao
Shumei Wang
Peng Zhang
Xiaoying Dong
Yongfeng Li
author_sort Chenglong Lian
collection DOAJ
description Third body plant fibers have an important influence on the friction and wear properties of metal friction pairs. In this study, wheat straw powder with different particle sizes was prepared, and a pin-on-disk friction tester was employed to evaluate the friction and wear properties of the wheat straw powder third body on steel friction pairs under various conditions. The results show that the straw powder played an isolation role in the steel–steel friction pair, which reduced the contact area between the pin and the disc and thus reduced the friction coefficient. Compared with the large particle size powder, the small particle size powder became embedded in the friction interface or in the groove caused by wear, buffered the friction stress, and reduced the friction coefficient and wear. When lubricants such as lubricating oil or lubricating grease were added, the friction coefficient was significantly reduced. Under the influence of lubricant, the particle size of straw powder had no significant effect on the wear. The results of this study can provide a reference for the third body friction and wear properties of straw powder and the design of friction pairs for metal parts.
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spelling doaj.art-4ce24c12b9974730b0c14482ec4236042023-11-23T15:08:12ZengMDPI AGAgriculture2077-04722022-06-0112688210.3390/agriculture12060882Friction and Wear Properties of Wheat Straw Powder Third Body on Steel-Steel Friction PairChenglong Lian0Wei Zhao1Shumei Wang2Peng Zhang3Xiaoying Dong4Yongfeng Li5State Forestry and Grassland Administration Key Laboratory of Silviculture in Downstream Areas of the Yellow River, Forestry College, Shandong Agricultural University, Taian 271018, ChinaForestry College, Northwest Agricultural and Forestry University, Xianyang 712199, ChinaState Forestry and Grassland Administration Key Laboratory of Silviculture in Downstream Areas of the Yellow River, Forestry College, Shandong Agricultural University, Taian 271018, ChinaNanjing Institute of Agricultural Mechanization, Ministry of Agriculture and Rural Affairs, Nanjing 210014, ChinaState Forestry and Grassland Administration Key Laboratory of Silviculture in Downstream Areas of the Yellow River, Forestry College, Shandong Agricultural University, Taian 271018, ChinaState Forestry and Grassland Administration Key Laboratory of Silviculture in Downstream Areas of the Yellow River, Forestry College, Shandong Agricultural University, Taian 271018, ChinaThird body plant fibers have an important influence on the friction and wear properties of metal friction pairs. In this study, wheat straw powder with different particle sizes was prepared, and a pin-on-disk friction tester was employed to evaluate the friction and wear properties of the wheat straw powder third body on steel friction pairs under various conditions. The results show that the straw powder played an isolation role in the steel–steel friction pair, which reduced the contact area between the pin and the disc and thus reduced the friction coefficient. Compared with the large particle size powder, the small particle size powder became embedded in the friction interface or in the groove caused by wear, buffered the friction stress, and reduced the friction coefficient and wear. When lubricants such as lubricating oil or lubricating grease were added, the friction coefficient was significantly reduced. Under the influence of lubricant, the particle size of straw powder had no significant effect on the wear. The results of this study can provide a reference for the third body friction and wear properties of straw powder and the design of friction pairs for metal parts.https://www.mdpi.com/2077-0472/12/6/882frictionwearwheat straw powderthird body friction
spellingShingle Chenglong Lian
Wei Zhao
Shumei Wang
Peng Zhang
Xiaoying Dong
Yongfeng Li
Friction and Wear Properties of Wheat Straw Powder Third Body on Steel-Steel Friction Pair
Agriculture
friction
wear
wheat straw powder
third body friction
title Friction and Wear Properties of Wheat Straw Powder Third Body on Steel-Steel Friction Pair
title_full Friction and Wear Properties of Wheat Straw Powder Third Body on Steel-Steel Friction Pair
title_fullStr Friction and Wear Properties of Wheat Straw Powder Third Body on Steel-Steel Friction Pair
title_full_unstemmed Friction and Wear Properties of Wheat Straw Powder Third Body on Steel-Steel Friction Pair
title_short Friction and Wear Properties of Wheat Straw Powder Third Body on Steel-Steel Friction Pair
title_sort friction and wear properties of wheat straw powder third body on steel steel friction pair
topic friction
wear
wheat straw powder
third body friction
url https://www.mdpi.com/2077-0472/12/6/882
work_keys_str_mv AT chenglonglian frictionandwearpropertiesofwheatstrawpowderthirdbodyonsteelsteelfrictionpair
AT weizhao frictionandwearpropertiesofwheatstrawpowderthirdbodyonsteelsteelfrictionpair
AT shumeiwang frictionandwearpropertiesofwheatstrawpowderthirdbodyonsteelsteelfrictionpair
AT pengzhang frictionandwearpropertiesofwheatstrawpowderthirdbodyonsteelsteelfrictionpair
AT xiaoyingdong frictionandwearpropertiesofwheatstrawpowderthirdbodyonsteelsteelfrictionpair
AT yongfengli frictionandwearpropertiesofwheatstrawpowderthirdbodyonsteelsteelfrictionpair