Better understanding of shoshonitic rocks is vital to unravel the formation process and spatial distribution of their associated ore deposits.Here,we conducted analyses on the shoshonitic granodiorite and its mafic mi...Better understanding of shoshonitic rocks is vital to unravel the formation process and spatial distribution of their associated ore deposits.Here,we conducted analyses on the shoshonitic granodiorite and its mafic microgranular enclaves(MMEs)from the Chadi Cu-Pb-Zn polymetallic deposit(South China),with the aim to investigate their petrogenesis and tectonic setting.Zircon U-Pb age of the MMEs(165.0±1.2 Ma)is coeval with that of the host granodiorite(164.8±0.63 Ma).The Chadi granitoids are enriched in large ion lithophile elements and light rare earth elements,but depleted in high-field-strength elements.The granodiorite displays low(^(87)Sr/^(86)Sr)_(i)(0.7069-0.7072),and negative ε_(Nd)(t)(−5.8 to−5.5)and zircon ε_(Hf)(t)(−3.6 to−0.4)values.These isotopic characteristics of the granodiorite and MMEs indicate the mixing of a mafic magma(formed from the subduction-related,metasomatically-enriched lithospheric mantle)and a felsic magma(formed from the partial melting of crustal materials),which is closely related to the Paleo-Pacific subduction.The Chadi granodioritic magma has likely low oxygen fugacity(<ΔFMQ+1),low whole-rock Sr/Y ratio(mostly<30),and low S(0.04±0.02 wt%)and Cl(0.23±0.04 wt%)contents,suggesting that the potential of forming large-scale Cu mineralization is low.展开更多
基于有限元软件,采用高斯面-高斯旋转体复合热源深入研究了Ti2Al Nb钛合金电子束焊接头的温度场和残余应力场。结果表明:当电子束流为10 m A,焊接速度为360 mm/min时焊接接头成型较好,优先采用较大电子束流易形成熔宽较大的焊缝。焊缝...基于有限元软件,采用高斯面-高斯旋转体复合热源深入研究了Ti2Al Nb钛合金电子束焊接头的温度场和残余应力场。结果表明:当电子束流为10 m A,焊接速度为360 mm/min时焊接接头成型较好,优先采用较大电子束流易形成熔宽较大的焊缝。焊缝内部应力为复杂三向应力状态,残余应力以纵向拉应力为主,集中分布于距焊缝中心3.5mm范围内。焊后最大等效应力为635 MPa,小于材料屈服强度,较为安全。展开更多
基金granted by the Basic Scientific Research Fund of Chinese Academy of Geological Sciences[Grant No.JKY202505,JYYWF20180601,KK2207]the National Natural Science Foundation of China(Grant No.41702083,41820104010)China Scholarship Council(Grant No.CSC 201908110163)。
文摘Better understanding of shoshonitic rocks is vital to unravel the formation process and spatial distribution of their associated ore deposits.Here,we conducted analyses on the shoshonitic granodiorite and its mafic microgranular enclaves(MMEs)from the Chadi Cu-Pb-Zn polymetallic deposit(South China),with the aim to investigate their petrogenesis and tectonic setting.Zircon U-Pb age of the MMEs(165.0±1.2 Ma)is coeval with that of the host granodiorite(164.8±0.63 Ma).The Chadi granitoids are enriched in large ion lithophile elements and light rare earth elements,but depleted in high-field-strength elements.The granodiorite displays low(^(87)Sr/^(86)Sr)_(i)(0.7069-0.7072),and negative ε_(Nd)(t)(−5.8 to−5.5)and zircon ε_(Hf)(t)(−3.6 to−0.4)values.These isotopic characteristics of the granodiorite and MMEs indicate the mixing of a mafic magma(formed from the subduction-related,metasomatically-enriched lithospheric mantle)and a felsic magma(formed from the partial melting of crustal materials),which is closely related to the Paleo-Pacific subduction.The Chadi granodioritic magma has likely low oxygen fugacity(<ΔFMQ+1),low whole-rock Sr/Y ratio(mostly<30),and low S(0.04±0.02 wt%)and Cl(0.23±0.04 wt%)contents,suggesting that the potential of forming large-scale Cu mineralization is low.