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青藏高原东北缘岩石层结构:高原横向生长的机制
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作者 X.Z.Shen M.Liu +8 位作者 Y.Gao W.J.Wang Y.T.Shi M.J.An y.s.zhang X.Z.Liu 钱银苹(译) 李敏娟(译) 沈旭章(校) 《世界地震译丛》 2018年第2期144-161,共18页
青藏高原东北缘及其周边亚洲板块(北部到阿拉善块体,东部到鄂尔多斯块体)岩石层结构的探测对了解青藏高原的抬升和横向生长具有重要的意义。本研究利用布设在青藏高原东北缘和周边区域的高密度地震台阵所记录的波形,计算S波和P波接收函... 青藏高原东北缘及其周边亚洲板块(北部到阿拉善块体,东部到鄂尔多斯块体)岩石层结构的探测对了解青藏高原的抬升和横向生长具有重要的意义。本研究利用布设在青藏高原东北缘和周边区域的高密度地震台阵所记录的波形,计算S波和P波接收函数,研究岩石层结构。结果表明,鄂尔多斯块体和阿拉善块体下方的地幔岩石层中存在较强、相对稳定的负速度梯度,其深度范围在70~150km,这与典型稳定的大陆岩石层类似;相比之下,在青藏高原东北部下方地幔岩石层的速度梯度相对较弱和较模糊,这可能是由于地幔岩石层高温和存在部分熔融物质造成的;青藏高原与鄂尔多斯块体和阿拉善块体边界之间的岩石层结构变化剧烈,这两个块体作为刚性边界限制了青藏高原的横向变化。此外,在青藏高原东北角到银川地堑区域的地幔岩石层结构是相似的,这可能意味着从青藏高原东北角到鄂尔多斯块体和阿拉善块体之间的过渡间隔区内存在横向地幔流。这个过渡带的地壳结构为青藏高原横向生长提供了证据。特别是,在海原断裂和天景山断裂之间出现了地壳增厚和双地壳的证据,该区域可能是青藏高原在东北缘横向生长的前沿。 展开更多
关键词 青藏高原东北缘 岩石层变形 P波和S波接收函数 海原和六盘山断裂地幔流
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Comparison of microstructure and mechanical behavior of Ti-35Nb manufactured by laser powder bed fusion from elemental powder mixture and prealloyed powder 被引量:6
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作者 J.C.Wang Y.J.Liu +4 位作者 S.X.Liang y.s.zhang L.Q.Wang T.B.Sercombe L.C.Zhang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第10期1-16,共16页
Although different types of powder feedstock are used for additive manufacturing via laser powder bed fusion(L-PBF),limited work has attempted to directly compare the microstructure and mechanical behavior of componen... Although different types of powder feedstock are used for additive manufacturing via laser powder bed fusion(L-PBF),limited work has attempted to directly compare the microstructure and mechanical behavior of components manufactured from those powder feedstock.This work investigated the microstructure,phase composition,melt pool morphology,and mechanical properties of a prealloyed Ti-35Nb alloy manufactured using L-PBF and compared these to their counterparts produced from elemental powder mixture.The samples manufactured from the powder mixture are composed of randomly distributed undissolved Nb in theα/βmatrix,resulting from the unstable melt pool during the melting of the powder mixture.By contrast,parts produced from prealloyed powder display a homogeneous microstructure withβandαphases,owing to the full melting of prealloyed powder,therefore,a more stable melt pool to achieve a homogeneous microstructure.The Ti-35Nb manufactured from prealloyed powder exhibits large tensile ductility(about 10 times that of the counterparts using mixed powder),attributed to the high homogeneity in microstructure and chemical composition,strong interface bonding,relatively low oxygen content,and the existence of a large amount ofβphase.This work sheds insights into understanding the effect of powder feedstock on the melt pool stability therefore the microstructure and mechanical behavior of the resultant parts. 展开更多
关键词 Titanium-niobium Powder bed fusion Additive manufacturing Melt pool stability MICROSTRUCTURE Mechanical properties
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