Influence of Cold work on aging response of C17200-Beryllium Copper Alloy C17200
-
Add time:07/20/2019 Source:sciencedirect.com
Progress in materials science requires deeper understanding of the correlation of properties to internal structure and how they get altered to tailor the required properties. The paper aims to explore the variation in the mechanical properties on the degree of cold work in Beryllium copper. Hardness increased with the increase in the degree of cold working and was observed that the hardness saturated beyond 40% cold work. The samples of various percentages of cold work were subjected to ageing treatment at 330°C for one hour and the trend of hardness is explained. The microstructures revealed the evolution of precipitates during aging that attributed to increase in the hardness. Dislocation density is predicted to increase during cold work and thus improving the kinetics of precipitation. Results show a very good agreement between reported experimental observations and predictions.
We also recommend Trading Suppliers and Manufacturers of COPPER BERYLLIUM (cas 11108-64-8). Pls Click Website Link as below: cas 11108-64-8 suppliers
Prev:Microstructure, mechanical properties and aging behaviour of nanocrystalline copper–beryllium alloy
Next:Micro-EDM drilling of high aspect ratio micro-holes and in situ surface improvement in C17200 beryllium copper alloy) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- One-step fabrication of superhydrophobic surface on beryllium copper alloys and corrosion protection application07/23/2019
- Micro-EDM drilling of high aspect ratio micro-holes and in situ surface improvement in C17200 beryllium copper alloy07/22/2019
- Microstructure, mechanical properties and aging behaviour of nanocrystalline copper–beryllium alloy07/21/2019
- Production and tribological characterization of a textured diamond-reinforced copper-beryllium alloy07/19/2019
- The effects of heat treatment upon the shock response of a copper-beryllium alloy07/18/2019
-
Health and Chemical more >


