首页> 外文期刊>Materials Science and Engineering >Effects Of Changes In Notch Radius And Test Temperature On The Toughness Of A Nano-crystalline Aluminum Alloy Composite Produced Via Extrusion Of Amorphous Aluminum Alloy Powders
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Effects Of Changes In Notch Radius And Test Temperature On The Toughness Of A Nano-crystalline Aluminum Alloy Composite Produced Via Extrusion Of Amorphous Aluminum Alloy Powders

机译:缺口半径和试验温度的变化对非晶态铝合金粉末挤压制备纳米晶铝合金复合材料韧性的影响

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摘要

Amorphous aluminum alloy powders were extruded to produce a nano-crystalline aluminum alloy composite-containing nano-sized particles. Significant increases to the hardness/strength were obtained via the processing-induced evolution of 35 vol.% of nano-sized particles in the aluminum matrix. Acoustic measurements of the elastic constants revealed elastic modulus (E) in the range of 86-89 GPa. The fracture toughness of these nano-structured composite materials were evaluated at room temperature and 225 ℃ (498 K) on fatigue-precracked samples as well as on notched samples containing different root radii. The effects of changes in the root radius and test temperature on the toughness are compared to the behavior of conventional aluminum alloys and metal-matrix composites (MMCs).
机译:挤出非晶态铝合金粉末以产生包含纳米级颗粒的纳米晶体铝合金复合材料。通过加工诱导的铝基体中35%(体积)的纳米级颗粒的析出,硬度/强度得到了显着提高。弹性常数的声学测量显示,弹性模量(E)在86-89 GPa的范围内。在室温下和225℃(498 K)下对疲劳裂纹的样品以及含不同根半径的带缺口样品在室温和225℃(498 K)下评估了这些纳米结构复合材料的断裂韧性。将根部半径和测试温度的变化对韧性的影响与常规铝合金和金属基复合材料(MMC)的行为进行了比较。

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