李方义
-
教授
博士生导师
硕士生导师
- 性别:男
- 出生日期:1969-12-11
- 毕业院校:清华大学
- 学历:研究生(博士)毕业
- 学位:工学博士学位
- 在职信息:在职
- 所在单位:机械工程学院
- 入职时间: 1994-07-16
访问量:
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[21]
孔琳.
产品方案低碳设计研究综述与展望.
基于铣削力精确建模的工件表面,
59,
1-16,
2023.
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[22]
孙兴富.
Enhancing the wear and high-temperature oxidation behavior of NiCrBSi coatings by collaboratively ad.
Surface & Coatings Technology,
473,
2023.
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[23]
马艳.
Multidimensional evaluation method and application based on life cycle carbon efficiency considering.
ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH,
30,
70918-70936,
2023.
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[24]
戚小霞.
Microstructure regulation and reinforcement mechanisms of ultrafine TiC/Fe55 composite coatings via .
Materials and design,
229,
2023.
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[25]
Li, Yanle.
Erosion Wear Behavior of Cr3C2-kNiCr Coating under Multi-angle Impact.
基于铣削力精确建模的工件表面,
59,
343-352,
2023.
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[26]
Yuan, Hao.
Improving the forming performance of incrementally formed sheet parts with customized heat treatment.
ADVANCES IN MANUFACTURING ,
11,
264-279,
2023.
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[27]
孔琳.
基于多层级约束满足问题的产品全生命周期设计方案决策研究.
机械工程学报,
59,
2023.
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[28]
孔琳.
Life cycle-oriented low-carbon product design based on the constraint satisfaction problem.
Energy Conversion and Management,
286,
2023.
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[29]
聂延艳.
A novel mathematical model of transmission path effect for the research of vibration characteristics.
MECHANISM AND MACHINE THEORY,
176,
2022.
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[30]
付岩.
基于FSMP模型的机电产品绿色设计方案生成方法.
《计算机集成制造系统》,
29,
2021.
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[31]
孔琳.
基于多层级约束满足问题的产品全生命周期设计方案决策研究.
基于铣削力精确建模的工件表面,
59,
2023.
-
[32]
孔琳.
Life cycle-oriented low-carbon product design based on the constraint satisfaction problem.
ENERGY CONVERSION AND MANAGEMENT,
286,
2023.
-
[33]
孔琳.
基于多层级约束满足问题的产品全生命周期设计方案决策研究.
基于铣削力精确建模的工件表面,
59,
1-13,
2023.
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[34]
孔琳.
Toward product green design of modeling, assessment, optimization, and tools: a comprehensive review.
international Journal of Advanced Manufacturing Technology,
122,
2217-2234,
2022.
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[35]
聂延艳.
A Novel Vibration Model for Explanation of the Frequency Features in Multistage Wind Turbine Gearbox.
International Journal of Precision Engineering and Manufacturing-Green Technology,
2022.
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[36]
.
Comparison of biodegradable chitosan-based composite films reinforced by different micron-sized plan.
materials letters,
2023.
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[37]
.
Doped Multiple Nanoparticles with Hydroxyapatite Show Diverse Health Effects in vivo.
INTERNATIONAL JOURNAL OF NANOMEDICINE,
18,
5031,
2023.
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[38]
.
Doped multiple nanoparticles with hydroxyapatite coating show diverse health effects in vivo.
International Journal of Nanomedicine,
5031,
2023.
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[39]
彭思贤.
Enhancing the Properties of Starch-fiber Foaming Material by Adjusting Fiber Length: The Synergistic.
Materials Today Communications,
2022.
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[40]
.
Comparison of biodegradable chitosan-based composite films reinforced by different micron-sized plan.
materials letters,
2023.