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for the nozzles of AP1000 primary coolant pipes, Nuclear Engineering & Design, 2017, 314: 121~130.
14. 陈凌云,兰昊,黄传兵,杨滨,房师阁,张伟刚,多孔NiCr在750℃ NaCl沉积盐中的热腐蚀机理研究,航空制造技术,2017, 527(8):32-36.
15. Huanchun Wu, Bin Yang, Shenglong Wang, Minxian Zhang, Yunzhu Shi, Yuefeng Chen, Yanhui Sun, Effect of thermal aging on corrosion fatigue of Z3CN20.09M duplex stainless steel in high temperature water, Materials Science and Engineering A, 2016, 655: 183~192.
16. Shenglong Wang, Xiaoyi Yu, Bin Yang, Mingxian Zhang, Huanchun Wu, FEM analysis and experimental verification of the integral forging process for AP1000 primary coolant pipe, Metallurgical and Materials Transactions A, 2016, 47: 5114~5124. 17. Shenglong Wang, Mingxian Zhang, Huanchun Wu, Bin Yang, Study on the dynamic recrystallization model and mechanism of nuclear grade 316LN austenitic stainless steel, Materials Characterization, 2016, 118: 92~101.
18. Shenglong Wang, Bin Yang, Minxian Zhang, Huanchun Wu, Jintao Peng, Yang Gao, Numerical simulation and experimentalverification of microstructure evolution in large forged pipe used for AP1000nuclear power plants, Annals of Nuclear Energy, 2016, 87(1): 176~185.
19. Shenglong Wang, Bin Yang, Mingxian Zhang, Huanchun Wu, The establishment and application of 316LN stainless steel database for AP1000 primary coolant Pipes, Materials Science Forum, 2016, 850:341-347.
20. Mingxian Zhang, Bin Yang, Shenglong Wang, Huanchun Wu, Mechanisms of thermo-mechanical process on grain boundary character distribution of 316L austenitic stainless steel, Materials Science Forum, 2016, 850:965-970. 21. Qian Gao, Bin Yang, Han Mei, Huanchun Wu, Microstructure and Wear Resistance of Semisolid TiB2/7050 Composites Produced by Serpentine Tube Pouring TechniqueMaterials and Manufacturing Processes, 2016, 31: 1029~1036.
22. 张铭显,杨滨,王胜龙,武焕春,形变热处理对316L 奥氏体不锈钢晶界特征分布的影响,2016, 41(4):55~58.
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23.王胜龙,杨滨,张铭显,武焕春,周国华,316LN 不锈钢大型锻件镦粗过程中侧表面裂纹的预测,热加工工艺,2016, 45(1):86~89.
24.王鹏,杨滨,王胜龙,赵天明,AP1000主管道冷弯壁厚减薄,工程科学学报,2016, 38(8) : 1160~1167.
25. Huanchun Wu, Bin Yang, Shenglong Wang, Minxian Zhang, Yunzhu Shi,Yanhui Sun, Effect of thermal aging on corrosion fatigue of Z3CN20.09M duplex stainless steel in high temperature water, Materials Science and Engineering A, 2015, 655: 183~192. 26. Minxian Zhang, Bin Yang, Parametric optimization of DL-EPR technique for evaluating IGC susceptibility of 316LN type stainless steel using the Taguchi method, Materials and Corrosion, 2015, 67: 271~276.
27 Huanchun Wu, Bin Yang, Shenglong Wang, Minxian Zhang, Effect of oxidation behavior on the corrosion fatigue crack initiation and propagation of 316LN austenitic stainless steel in high temperature water, Materials Science and Engineering A, 2015, 633: 176~183.
28. Huanchun Wu, Bin Yang, Yunzhu Shi, Qian Gao, Yongqiang Wang, Crack Initiation Mechanism of Z3CN20.09M Duplex Stainless Steel during Corrosion Fatigue in Water and Air at 290 °C , Journal of Materials Science & Technology, 2015, 31(11): 1144~1150.
29.高倩,杨滨,甘贵生,蛇形管浇注制备TiB2/7075半固态浆料及数值模拟,特种铸造及有色合金,2015, 35(9):936~940.
30. 高倩,杨滨,7075及TiB2/7075 复合材料流变压铸数值模拟,热加工工艺,2015, 44(17):72~75.
31.杨滨,李鑫,罗文东,李宇翔,微量添加Sn和Nb对Zr-Cu-Fe-Al块体非晶合金热稳定性和塑性的影响,金属学报,2015, 51(4): 465~472.
32.李晓烨,杨滨,徐仁根,张磊,新型TiB2/Si-Al 电子封装复合材料的微观组织及其导热性能,热处理技术与装备,2015, 36(6): 28-33.
33. 陈博,周文浩,尚成嘉,杨滨. 提高低碳微合金钢中残余奥氏体数量的热处理新工艺,热处理技术与装备,2015, 36(5): 56~61.
34. Qian Gao, Bin Yang, Guisheng Gan, Rheological behavior of semi-solid TiB2/7075
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composites and simulation of their rheocasting processes, Chnia Foundry, 2015, 12(5): 354~361.
35. Huanchun Wu, Bin Yang, Yongqiang Wang, Effect of sigma phase on the low cycle fatigue property of Z3CN20.09M cast duplex stainless steel in high temperature water, Materials and Corrosion, 2015, 66(7): 663~669.
36. Yunzhu Shi, Bin Yang, Minxian Zhang, Huanchun Wu, Shenglong Wang, Determination of intergranular corrosion susceptibility of Z3CN20.09M cast duplex stainless steel by a modified double loop electrochemical potentiokinetic reactivation method, Energy Materials 2014, 11:4~6.
37. Qian Gao, Bin Yang, Guisheng Gan, Huanchun Wu, Numerical simulation of filling for 7075 Alloy and TiB2/7075 composites wheel prepared by low pressure die casting, Advanced Materials Research, 2014, 904:173~179.
38.周国华,杨滨,王胜龙,核电站一回路主管道凸台整体锻造工艺数值模拟,热加工工艺,2014, 43(9): 106~108.
39.王永强,董芳,杨滨,热老化对核电站主管道Z3CN20.09M不锈钢点蚀性能的影响,北京科技大学学报,2014, 36(5): 644~649.
40. 武焕春,杨滨,周国华,热变形对316LN奥氏体不锈钢微观组织和力学性能的影响,材料导报,2014, 28(8):23~36.
41. Huanchun Wu, Bin Yang, Yongqiang Wang, Effect of sigma phase on the low cycle fatigue property of Z3CN20.09M cast duplex stainless steel in high temperature water, Nuclear Materials, 2014, 12:8~12.
42. Yongqiang Wang, Jun Han, Bin Yang, Xitao Wang, Strengthening of σ phase in a Fe20Cr9Ni cast austenite stainless steel, Materials Characterization, 2013, 84: 120~125.
43.王永强,韩军,杨滨,武焕春,王西涛,核电站主管道Z3CN20.09M不锈钢中金属间相的析出行为,金属学报,2013, 4: 415~420.
44. 赵妍冰, 杨滨,刘克明,金刚石/铜电子封装复合材料的研究状况及展望,热处理技术与装备,2013, 34(6): 31-36.
45. Lei Zhang, Bin Yang, Microstructural characterisation and thermal stability
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of in situ TiB2/60Si-Al composite synthesised by displacement reactions and spray forming , Materials Science and Technology, 2013, 29(11): 1277~1282.
46. Bin Yang, Hanbin Chen, Lu Yang, Haibo Zhang, Zhigang Zak Fang, The Formation of Twins in Al-10Zn-3Mg-1.8Cu Alloy by Cryomilling , JOM, 2013, 65(8): 967~972. 47. Yongqiang Wang, Jun Han, Huanchun Wu, Bin Yang, Xitao Wang, Effect of sigma phase precipitation on the mechanical and wear properties of Z3CN20.09M cast duplex stainless steel, Nuclear Engineering and Design, 2013, 259: 1~7.
48 Yongqiang Wang, Jun Han, Bin Yang, Xitao Wang, Strengthening of sigma phase in a Fe20Cr9Ni cast austenite stainless steel, Materials Characterization, 2013, 84: 120~125.
49. Lei Zhang, Bin Yang, Microstructural characterisation and thermal stability of in situ TiB2/60Si-Al composite synthesised by displacement reactions and spray forming , Materials Science and Technology, 2013, 29(11): 1277~1282.
50. Yongqiang Wang, Jun Han, Huanchun Wu, Bin Yang, Xitao Wang, Effect of sigma phase precipitation on the mechanical and wear properties of Z3CN20.09M cast duplex stainless steel, Nuclear Engineering and Design, 2013, 259: 1~7.
51. Yongqiang Wang, Bin Yang, Jun Han, Huanchun Wu, Xitao Wang, Effect of Precipitated Phases on the Pitting Corrosion of Z3CN20.09M Cast Duplex Stainless Steel, Materials Transactions, 2013, 54(5): 839~843. 六、考博经验
首先说一下考博心态的问题,在考博之前,我也看了很多文章,也犹豫过,彷徨过。大多数文章都把考博说得神乎其神,异常严肃,似乎要考博就得必须有一颗坚定学术和青灯古佛的心。我不否认读博生活在大多数情况下需要坚定的学术志愿和耐得住寂寞的性情;但是考博之初却未必如此。我认识的一些人在考博之前并没有太明确的人生规划和非学术不可的心情。但是这么说却不代表可以任何准备都没有,至少你得确定你不讨厌这种单纯的学术生活;其次,想在学校中多修炼几年、想在这个领域有更深的积累、喜欢这个专业、喜欢比较单纯的读书生活,都可以是你决定考博的起点。当然,家庭支持等等也是让你在这条路上心无旁骛坚持到底的必要保证。这么说吧,你可以没有表现出气焰冲天的学术气质,但是你决定考博的其他理由和你的性情却得足以支撑你坚定地走完这条路。考研时我就相信师长们告
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诉我的一句话:坚持到底,你就会赢;考博时我一样相信这句话。坚持不只代表起点和终点(考试)的到位,更重要的是从始至终从不放弃、从不左顾右盼的努力。
确定考博之后,尽量不要太多考虑结果,有时候把过程坚持到位了,结果是自然而然的事;想太多只会搅乱你的复习心情。同样,除了学习也不要太多考虑一些杂事,比如谁在考这个老师等等。
当然一些必要的信息还是要了解的。考博和以往考试很不相同的是这是很“自助”的一场考试,考试、复习信息庞杂,每天都有很多人告诉你很多信息。所以你就要筛选,什么是你必须知道的信息,什么是只会占用你的复习时间、影响你的复习心态的信息,后者自动屏蔽。
关于选学校和选老师。考博,一看复习,二看机遇。机遇大多数时候是可遇不可求的,但是也是可以部分把握的,而选老师这个阶段就是为自己考博创造最佳机遇环境的阶段。首先,联系老师要尽量赶早,在我看来前一年3月是不早不晚的时候,太早了心不诚,太晚了被别人抢了先;我觉得不用太担心自己成果不多经历不丰富的问题,再给自己1年的时间也不会丰富到更多,而这一年内的增长完全可以在不断的交流中传达给老师。如果实在担心被拒之门外想再发表点文章什么的个人感觉5月应该也是最晚的时间了。其次要选择有最大把握的老师,所以直接间接打听老师是否已经有中意的学生了就非常重要,不然很可能被炮灰;整体把握一下自己在全部考生中的竞争力对你选择学校也很重要,这可以通过别人对你的评估、你和目标学校的研三、博一学生的交流中评估一下。最后要和老师多联系。考博可以多选几个学校,所以准备2~3个学校也是比较优化的选择。现当代文学,考博的科目大多数是相通的,我认为可以选你最想考或者最难的一个学校集中准备,另外的学校考前找出几天认真翻翻博导们的文章就好。所以,最后你选择了一个比较中意你、你也有可能能考上的学校;并且准备了一两个学校给增加成功的可能性,这就是你为自己创造的最大机遇。
关于复习,这是重头戏。机遇即使部分把握了,毕竟还是虚无缥缈的东西,你永远不知道老师是怎么想的,老师要根据学术潜力、年龄、性格、人际关系种种因素来权衡你有没有培养的前途,在机遇漂浮在海市蜃楼中的时候,尽可能多地付出,也许不小心就和机遇迎面相遇了呢。但是如果你总是在揣测机遇,而不付出,那么结果必然是失败。第一步,是联系师兄师姐,请教复习经验,这包括复习科目、复习时间安排、复习用书、出题老师几个方面,对于有的专业来说,你不请教过来人甚至都不知道那个考试科目包括哪几门,所以最好不要闭门造车。联系师兄师姐最好联系自己要考的导师的亲学生,最外围也最好是一个专业的;
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