16MnR
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Welding method of 16MnR ( HIC ) using in petro-chemical device
石化装置用16MnR(HIC)钢的焊接
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Butt Joint Welding Technique of 1Cr18Ni9Ti / 16MnR Compound Steel Plate
1Cr18Ni9Ti/16MnR复合钢板对接焊工艺研究
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Research and Development of Lamellar Tearing Resistant Steel 16MnR & Z25
抗层状撕裂钢16MnR&Z25的研制
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The Application of High Toughness 16MnR ( WH510 ) Steel on Spherical Tanks
高韧性16MnR(WH510)在球形储罐上的应用
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Corrosion Analysis of C-276 + 16MnR Clad Steel Plate Used in the Reactor of Phosphate
磷酸盐反应釜用C-276+16MnR复合板的腐蚀原因分析
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The Hot Shaping Process of Super Duplex Steel Clad Plate 16MnR + SAF 2507
超级双相钢复合板16MnR+SAF2507热成型工艺
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The Microstructures in the Interface Reaction Zone of Explosively Welded L2 / 16MnR
爆炸焊接L2/16MnR界面反应区显微结构
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Development and Application of High-toughness 16MnR ( WH510 ) Steel
高韧性16MnR(WH510)钢的开发及应用
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Analysis and Disposal for the Cracking on 16MnR + 405 Explosive Stainless Clad Steel Plate Heat Exchanger Shells
16MnR+405复合钢板换热器壳体断裂原因分析及处理方法
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Microstructure and Properties of the Welded Joints of SAF2205 / 16MnR Duplex Stainless Steel Composite Plate
SAF2205/16MnR双相不锈钢复合板焊接接头的组织与性能
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Interfacial Microstructures of hot-rolled 316l / 16mnr composite plate
316L/16MnR热轧复合板界面组织结构的研究
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The Welding Process of 16MnR + 0Cr13Al Clad Plate
复合板16MnR+0Cr13Al的焊接工艺
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Welding of 16MnR + 00Cr17Ni14Mo2 Composite Pipe
16MnR+00Cr17Ni14Mo2复合管焊接
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Thus , 16MnR + 0Cr18Ni10Ti composite plate was used when the tower was renewed , which has been proved appropriate in material selection .
设备更新时塔体材料采用16MnR+0Cr18Ni10Ti复合板,投用后设备腐蚀甚微,证明选材是可行的。
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The microstructures in the interface reaction zone of explosively welded L2 / 16MnR have been studied by using TEM , SEM and EDS.
用SEM、EDS、TEM对L2/16MnR爆炸焊接界面反应区进行了研究。
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This article has evaluated simply the welding performance of 16MnR ( HIC ) carbon steel from Pcm & Ceq and the method of Max. hardness value of welding heat effect area .
评价了新型16MnR(HIC)钢的焊接性,从钢板的Pcm、Ceq以及焊接热影响区最高硬度值法等方面进行了分析;
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In this paper , the tension test is carried out at various loading rates of 1-500mm / min at a temperature of-110 ℃ for a pressure vessel steel ( 16MnR ) , and the mechanical properties at different strain rates are measured .
本文在-110℃和1~500mm/min的加载速率范围内,对一种压力容器钢16MnR进行了不同加载速率下的拉伸实验,测量了该钢在不同应变率下的拉伸力学性能。
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Through the research on the interface of 16MnR / stainless bimetallic plates , which made by the new techniques of explosive welding-hot rolling , we found a noncrystalline structure layer and a confused microcrystalline layer existing in the interface , which have never been reported before .
采用爆炸焊接&热轧新工艺生产的16MnR/不锈钢复合板,在爆炸焊接热轧坯料界面中,发现了以前从未报道过的非晶态结构层及混乱的微晶层的形成。