杨明

时间:2025-03-31浏览:286

[1] Yang M, Lei L, Jiang Y, et al. Simultaneously improving tensile properties and stress corrosion cracking resistance of 7075-T6 aluminum alloy by USRP treatment[J]. Corrosion Science. 2023, 218: 111211.

[2] Yang M, Luo T, Lei L, et al. PortevinLe Chatelier (PLC) effect induced by different deformation mechanisms in Ni25Mo8Cr alloy during high-temperature tensile deformation[J]. Rare metals. 2024.

[3] Yang M, Lei L, You Y, et al. Enhanced strength-plasticity synergy of 304 stainless steel by introducing gradient nanograined single austenite phase structure via USRP and induction annealing[J]. Materials & Design. 2024, 244: 113123.

[4] Sun Q, Yang M*, Jiang Y, et al. Achieving excellent corrosion resistance properties of 7075 Al alloy via ultrasonic surface rolling treatment[J]. Journal of alloys and compounds. 2022, 911: 165009.

[5] Xiong Z, Jiang Y, Yang M*, et al. Achieving superior strength and ductility in 7075 aluminum alloy through the design of multi-gradient nanostructure by ultrasonic surface rolling and aging[J]. Journal of alloys and compounds. 2022, 918: 165669.

[6] Luo T, Lei L, Feng K, Yang M*, et al. Achieving high strength and large ductility of an ultrafine-grained 211ZX aluminium alloy processed by improved thermomechanical processing[J]. Archives of Civil and Mechanical Engineering. 2023, 23(2): 127.

[7] Wang Y B, Zhao F, Xu F H, Yang M*, et al. Crystallographic orientation-dependent dislocations slip during tensile testing of lath martensitic steel[J]. Materials letters. 2023, 353: 135231.

[8] Liu Y, Zhao F*, Tan Y, Yang M*, et al. Optimizing austenite and carbide content in medium carbon silicon-rich steel: A stepped partitioning strategy and analysis of strengthening and ductility enhancement mechanisms[J]. Materials Science and Engineering: A. 2024, 896: 146248.

[9] Ke FengYang M*,et al.. The Effect of a Composite Nanostructure on theMechanical Properties of a Novel Al-Cu-Mn Alloythrough Multipass Cold Rolling and Aging[J]. applied sciences. 2020, 10: 8109.

[10] Wang L, Liang Y, Zhao F, Yang M*,et al. Achieving high tensile properties and impact toughness in ultrahigh strength lean alloy steel by quenching and partitioning treatment[J]. Archives of Civil and Mechanical Engineering. 2024, 24(1).

[11] Deng Y, Liang Y, Zhao F, Yang M*,et al. Influence of Microstructure on Tensile Properties and Fatigue Crack Propagation Behavior for Lath Martensitic Steel[J]. Crystals. 2023, 13(9): 1392.

[12] Zhang Y, Yang M, Long S, Yang M*,et al. Effect of Initial State and Deformation Conditions on the Hot Deformation  Behavior of M50NiL Steel[J]. Materials (Basel). 2020, 13(23).

[13] Zhang Y, Ma S, Liang Y, Yang M*,et al. Study on constitutive model for new generation aero-space structural Cr4Mo4Ni4V steel[J]. Materials research express. 2019, 6(12): 126588.

[14] Yang M, Zhong Y, Liang Y. Effect of Hierarchical Microstructures of Lath Martensite on the Transitional Behavior of Fatigue Crack Growth Rate[J]. Metals and Materials International. 2018, 24(5): 970-980.

[15] Yang M, Zhong Y, Liang Y L. Competition mechanisms of fatigue crack growth behavior in lath martensitic steel[J]. Fatigue & Fracture of Engineering Materials & Structures. 2018, 41(12): 2502-2513.

[16] Zou C Q,Jiang Y*,Yang M*,et al. Effect of ultrasonic surface rolling process on the fatigue performance of the 7075 aluminum alloy t[J]. Archives of Civil and Mechanical Engineering. 2024, 40(11).

[17] 龚乾江,徐祥, 杨明*. CPR/NR和高性能填料对复合摩擦材料力学性能的影响[J].材料导报. 2018,32(10): 1628-1634.(EI)

[18] 徐祥, 杨明*,梁益龙等.响应面法对一种新型摩擦材料的性能优化及其磨损机理[J].材料工程. 2018,46(09):101-108(EI)

[19] 徐祥, 杨明*,张世伟,.有机复合摩擦材料的成分优化及其对摩擦性能的影响[J].材料导报, 2017, 31(A01):447-450. (EI)

[20] 龚乾江,徐祥, 杨明*.新型填料对高摩复合材料摩擦磨损性能影响及机制[J].复合材料学报, 2017, 34(10):11. (EI)

[21] 徐祥, 杨明*.有机复合摩擦材料及其研究现状[J].材料导报,2015, 29(21):81-86. (EI)

[22] 龚乾江, 杨明*,梁益龙,. 211Z-X新型高强韧铝合金热成形及动态再结晶行为研究[J].稀有金属. 2018,(01):36-44.(EI)

[23] 徐祥, 杨明*,梁益龙,.211Z.X耐热高强韧铝合金热变形行为及加工图研究[J].材料导报, 2016, 30(18):143-148. (EI)

[24] 徐祥, 杨明*,梁益龙,张世伟,龚乾江;211Z.X耐热高强韧铝合金的热变形行为研究[J].稀有金属, 2017, 41(9):964-971. (EI)

[25] 肖瑞, 杨明*,黄朝文.基于响应面法对211ZX新型高强铝合金固溶工艺的优化设计[J].稀有金属, 2019, 43(10):1040-1046. (EI)

[26] 苏史航, 杨明*,唐玉,.多级梯度结构对Al-Zn-Mg-Cu合金力学性能的影响[J].中南大学学报(自然科学版), 54(7) :2651-2662.(EI)

[27] 刘青青,胡德玲, 杨明*,.Al-Cu-Mn合金复合纳米结构构筑及强塑性机制研究[J].稀有金属, 2023, 47(7):959-966. (EI)

[28] 熊志方,晏南军,张艳, 杨明*.均匀化处理对3003铝合金析出行为的影响[J].中南大学学报(自然科学版), 2022, 53(11):4242-4252. (EI)

[29] 李波,孙清,刘卓毅, 杨明*.超声滚压对7075铝合金耐腐蚀性能的影响[J].中国表面工程, 2022(001):144-154. (EI)

[30] 马少伟,张艳, 杨明*.Zener-Hollomon参数对Cr4Mo4Ni4V高合金钢热变形行为的影响[J].中南大学学报(自然科学版), 2021(2):376-388. (EI)