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作 者:李明[1] 王永瑞[1] 戎咏华[1] 胡赓祥[1] 陆明炯[2]
机构地区:[1]上海交通大学材料科学系 [2]机械工业部上海材料研究所
出 处:《上海交通大学学报》1998年第2期69-72,共4页Journal of Shanghai Jiaotong University
基 金:上海市科技启明星计划;机械工业部科研项目资助
摘 要:测定了沉淀硬化型模具钢10Ni3MnCuAl在不同加载速率v0下动态断裂韧性K1d.试验结果表明,随着v0的提高,K1d降低.SEM断口观察揭示,随冲击加载速率的提高,断口形式由韧窝准解理逐渐转变为沿晶准解理形貌.理论研究结果表明,K1d与裂纹尖端塑性区内参与微裂纹形核的第二相粒子有关.被激活而参与微观断裂的沉淀析出物越多,K1d越小.透射电镜的微结构分析显示,标准时效(4h)或初时效(10min)状态下,其沉淀析出物为大量弥散的金属间化合物Al3Ni.沉淀析出物的数量、形态及尺寸分布是影响动态断裂韧性的主要原因.The dynamic fracture toughness K 1d of the precipitation hardening die steel 10Ni3MnCuAl is tested under different impact velocities v 0.The test results show that the K 1d value decreases with the increase of v 0 and the SEM fractographs change gradually from dimple plus quasi cleavage to intergranular morphology.The theoretical analysis shows that the dynamic fracture toughness K 1d is rela ted to the number of the precipitate which takes part in the nucleation of microcracks in the plastic region of the crack tip.The decrease of the K 1d is associated with the increase of the activated precipitates amount.The dispersed precipitates are identified as Al 3Ni intermetallic by means of TEM analysis under standard aging condition (4 h) or initial (10 min).The dynamic fracture toughness K 1d is mainly affected by the amount,morphology and size of the precipitates.
分 类 号:TG142.45[一般工业技术—材料科学与工程]
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