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Sammanfattning
Legislations demand low lead content in drinking water and low lead leaching from the water supply facilities. Lead-free brass (LFB) can fit in. The benefits of such alloy are acknowledged in both functional and environmental points of view. The relatively high strength of LFB means that the process condition and residual stress generation can be different as compared to the conventional brass. In this study, residual stress generation for a LFB (CuZn21Si3P) and a lead-containing brass (CuZn39Pb3) in a face-turning experiment is studied. Besides stress analysis, structural characterisation is also conducted. Stress generation in the feed and cutting directions of two brasses is depicted. Machined topography is measured to evaluate the surface integrity in connection with the machining conditions.
| Originalspråk | engelska |
|---|---|
| Sidor (från-till) | 1789-1793 |
| Antal sidor | 4 |
| Tidskrift | Materials Science and Technology |
| Volym | 32 |
| Nummer | 17 |
| DOI | |
| Status | Published - 2016 aug. 22 |
| Evenemang | Brass Alloys 2016 - Radisson Blu Royal Viking Hotel, Stockholm, Sverige Varaktighet: 2016 maj 25 → 2016 maj 27 |
Ämnesklassifikation (UKÄ)
- Metallurgi och metalliska material
- Produktionsteknik, arbetsvetenskap och ergonomi
Fingeravtryck
Utforska forskningsämnen för ”Residual stress analysis of machined lead-free and lead-containing brasses”. Tillsammans bildar de ett unikt fingeravtryck.Projekt
- 2 Avslutade
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LFB: Lead-free brass
Nilsson, K. (PI), Schultheiss, F. (PI), Rosén, B.-G. (Forskare), Nyborg, L. (Forskare) & Wedefelt Lindgren, S. (Forskare)
2014/01/01 → 2016/12/31
Projekt: Forskning
-
Blyfria kopparlegeringar i produkter och komponenter
Schultheiss, F. (PI)
2013/09/01 → 2016/08/31
Projekt: Forskning
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