Abstract
Purpose: Babbitt bush is easy to cause severe adhesive wear due to unexpected journal fall. This paper aims to improve wear resistance of Babbitt bush. Design/methodology/approach: A soft/hard hybrid surface mircoprofile of Babbitt alloy/steel was fabricated by a technology of laser texture combined with hot-pressing. The friction and wear performances of bare steel (steel-h), Babbitt bush on steel (steel-s) and Babbitt filled in dimples of steel (steel-hs) were conducted on a ball-on-disc tester under dry and lubricated conditions. Findings: The results showed that wettability of steel-hs was enhanced by forming soft/hard hybrid surface. Compared with steel-s, the stability of friction coefficient curve of steel-hs was improved without increasing coefficient friction. The wear resistance of steel-hs was remarkably enhanced under dry and lubricated conditions. Originality/value: The originality of this paper is as following: to improve the tribological properties and to prolong service life of steel-s, soft/hard hybrid surface of Babbitt filled in dimples of steel substrate was successfully fabricated by laser texturing combined with hot-pressing. This paper showed that the lipophilicity of steel-hs was best among those of steel-s and steel-h. Babbitt alloy as a soft filler on dimples of steel substrate improved anti-wear of steel-s remarkably. It provides a new way to fabricate Babbitt as bushing on steel substrate.
| Original language | English |
|---|---|
| Pages (from-to) | 439-447 |
| Number of pages | 9 |
| Journal | Industrial Lubrication and Tribology |
| Volume | 72 |
| Issue number | 3 |
| DOIs | |
| State | Published - 6 Apr 2020 |
Keywords
- Anti-wear
- Babbitt bush
- Hybrid metal matrix composite
- Soft/hard hybrid surface
- Steel
- Wear resistance
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