Influence of Additives on Grease Decomposition and Hydrogen Generation Caused by Nascent Clean Steel Surface

Bibliographic Details
Title: Influence of Additives on Grease Decomposition and Hydrogen Generation Caused by Nascent Clean Steel Surface
Authors: Toshiaki Wakabayashi, Kazumi Sakai, Toru Izumi, Go Tatsumi
Source: Tribology Online, Vol 20, Iss 1, Pp 26-35 (2025)
Publisher Information: Japanese Society of Tribologists, 2025.
Publication Year: 2025
Collection: LCC:Physics
LCC:Engineering (General). Civil engineering (General)
LCC:Mechanical engineering and machinery
LCC:Chemistry
Subject Terms: grease, bearing, additive, polysulfide, hydrogen, grease decomposition, hydrogen generation, nascent clean metal surface, white structure flaking, Physics, QC1-999, Engineering (General). Civil engineering (General), TA1-2040, Mechanical engineering and machinery, TJ1-1570, Chemistry, QD1-999
More Details: Using a controlled atmosphere cutting apparatus equipped with a mass spectrometer, this study investigated the influence of several additive compounds on grease decomposition and hydrogen generation caused by a nascent clean steel surface. The decomposing behavior of greases was found to be evaluated by examining the changes in the generation amount ratios, which were the ratios of ion intensity values during cutting to those before cutting, for the individual mass numbers. In base greases with no additive, fairly sharp and high generation amount ratios appeared in the vicinity of such periodical mass numbers corresponding to alkyl groups. Compared with the base urea grease, every additive could suppress the hydrogen generation and, in particular, polysulfide reduced the hydrogen generation most. Polysulfide also had the highest capability in providing thick reaction films on chip contact surfaces in both urea and PTFE greases. Further, unlike the others, the greases including polysulfide delivered unique decomposition behavior where most generation amount ratios increased in the nearly whole range of the mass numbers and there disappeared the features of high generation amount ratios at periodical mass numbers. Such unique behavior could possibly connect with the thick reaction film formation contributing to reduce the hydrogen generation.
Document Type: article
File Description: electronic resource
Language: English
ISSN: 1881-2198
Relation: https://www.jstage.jst.go.jp/article/trol/20/1/20_26/_pdf/-char/en; https://doaj.org/toc/1881-2198
DOI: 10.2474/trol.20.26
Access URL: https://doaj.org/article/38eb3e349c234459992755bfe0d58311
Accession Number: edsdoj.38eb3e349c234459992755bfe0d58311
Database: Directory of Open Access Journals
More Details
ISSN:18812198
DOI:10.2474/trol.20.26
Published in:Tribology Online
Language:English