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机械工程哲学博士-固体力学,材料和结构

Doctor of Philosophy in Mechanical Engineering - Solid Mechanics, Materials and Structures

加州大学圣塔芭芭拉分校

University of California Santa Barbara

US美国

  • 学历文凭

    学历文凭

    Ph.D.

  • 专业院系

    专业院系

    Mechanical Engineering

  • 开学时间

    开学时间

  • 课程时长

    课程时长

  • 课程学费

    课程学费

    汇率提示

国际学生入学条件

To be considered for admission to UCSB, applicants must have received a bachelor's degree or its equivalent (with a cumulative grade point average of 3.0 or better) from an accredited university prior to the quarter for which admission is sought.

completed an undergraduate or graduate degree at an institution whose primary language of instruction is English. The minimum score for consideration is 550 when taking the paper-based TOEFL, or 80 when taking the internet-based test, some departments require a higher score. Applicants must make arrangements to take the TOEFL directly with ETS (www.ets.org). Scores should be reported to UCSB using institution code 4835. TOEFL scores must be no more than two years old at the time of application submission. UCSB also considers a minimal score of 7 on the IELTS as an alternative to the TOEFL. IELTS scores must be no more than two years old at the time of application submission
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  • 雅思总分:7
  • 托福网考总分:80
  • 托福笔试总分:550
  • 其他语言考试:NA

CRICOS代码:
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课程简介

UCSB机械工程系的研究人员正在对固体力学,材料和结构进行广泛的研究-在许多领域中,这些领域处于21世纪技术的最前沿。有几个统一的,相互关联的主题,将教职员工和学生聚集在一起,以成功解决多方面的问题。这样的主题之一就是新材料和先进材料的行为,其中包括:陶瓷,聚合物,金属和金属间复合材料以及金属合金。这些新材料提出了独特的挑战,范围从控制基本流动和断裂过程的缺陷行为的基本特征,到理解复合系统中各个组件的本构行为之间的相互作用,再到描述由微观结构不稳定性引起的损伤演化,复杂的过程,都面临挑战。装载和环境侵害。
Researchers in the Mechanical Engineering Department at UCSB are pursuing a wide range of studies in Solid Mechanics, Materials, and Structures - in many areas that are at the forefront of 21st century technologies. There are several unifying inter-related themes that bring clusters of faculty and students together to successfully solve multifaceted problems. One such theme is the behavior of new and advanced materials, which include: ceramics, polymers, metallic and intermetallic composites as well as metallic alloys. These new materials pose unique challenges which range from a fundamental characterization of the defect behavior controlling basic flow and fracture processes, to understanding the interactions between the constitutive behavior of various components in composite systems, to describing the evolution of damage induced by microstructural instabilities, complex loading and environmental assault. Success requires combining fundamental knowledge of material behavior with novel mechanics analysis methods.
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