Influence of process parameters on the sizes,structure and mechanical properties of glass-coated Fe-based alloy microwires
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摘要:
以玻璃包覆Fe69Co10Si8B13合金微絲為研究對象,研究了拉絲速率及冷卻條件對微絲尺寸、結構及力學性能的影響;分析了不同冷卻條件下微絲的拉伸斷裂機制.結果表明:當拉絲速率由5m·min-1增加到400m·min-1時,微絲及芯絲直徑分別由95.2μm和26.9μm減小到14.5μm和7.2μm;拉絲速率由50m·min-1增加到400m·min-1時,芯絲抗拉強度由1305MPa增大到5842MPa;冷卻距離小于20mm時,微絲尺寸和抗拉強度均隨冷卻距離的增大而顯著減小;冷卻距離大于20mm時,冷卻距離對微絲尺寸和抗拉強度的影響很小;采用水冷方式且拉絲速率大于5m·min-1時所獲得的微絲均為非晶態結構,而采用空冷方式制備的非晶態微絲的拉絲速率應大于或等于20m·min-1;芯絲的斷裂方式為伴隨不均勻塑性流變的脆性斷裂,且脆性斷裂傾向隨冷卻距離的增加而增大.
Abstract:Taking glass-coated Fe69Co10Si8B13 alloy microwires as an example, the dependences of sizes, microstructure and mechanical properties of microwires on drawing speed and cooling condition were analyzed, and the tensile fracture mechanism of the microwires under different cooling conditions was discussed. The results show that, with the drawing speed increasing from 5 m· min-1 to 400 m· min-1, the diameters of microwires and core-wires decrease from 95.2 μm and 22.7 μm to 14.5 μm and 7.2 μm respectively, and the tensile strength of core-wire increases from 1305 MPa to 5 842 MPa. As the cooling distance is less than 20 mm, the sizes and mechanical properties of microwires decrease drastically with the cooling distance increasing, but the influences of cooling distance on them are not obvious as the distance exceeding 20 mm. As water cooling is applied and the drawing speed exceeds 5 m· min-1, all the core-wires are amorphous. Applying air cooling, the drawing speed should exceed 20 m· min-1 to obtain amorphous core-wires. The core-wires exhibit brittle fracture mode accompanied by uneven plastic flow and the brittle tendency increases with the cooling distance increasing.
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Key words:
- glass-coated microwires /
- size /
- mechanical properties
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