首页> 外文会议>American Society of Mechanical Engineers(ASME) International Mechanical Engineering Congress and Exposition; 20051105-11; Orlando,FL(US) >COMBINED MECHANICAL ENGINEERING MATERIALS LECTURE AND MECHANICS OF MATERIALS LABORATORY: CROSS-DISCIPLINARY TEACHING
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COMBINED MECHANICAL ENGINEERING MATERIALS LECTURE AND MECHANICS OF MATERIALS LABORATORY: CROSS-DISCIPLINARY TEACHING

机译:机械工程材料的综合学科和材料实验室的力学:交叉学科教学

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We have developed a course combining a Mechanical Engineering Materials Laboratory with a Materials Science lecture for a small combined population of undergraduate Mechanical and Biomedical Engineering students. By judicious selection of topic order, we have been able to utilize one lecture and one laboratory for both Mechanical and Biomedical Engineering students (with limited splitting of groups). The primary reasons for combining the Mechanical and Biomedical students are to reduce faculty load and required resources in a small university. For schools with medium or small Mechanical and Biomedical Engineering programs, class sizes could be improved if they could include other populations. The heterogeneous populations also aid in teaching students that the same engineering techniques are useful in more than a single engineering realm. The laboratory sections begin with the issues common to designing and evaluating mechanical testing, followed by tensile, shear, and torsion evaluation of metals. To introduce composite materials, wood and cement are evaluated. While the Mechanical Engineering students are evaluating impact and strain gauges, the Biomedical Engineering students are performing tensile studies of soft tissues, and compression of long bones. The basic materials lectures (beginning at the atomic level) are in common with both Mechanical and Biomedical student populations, until specific topics such as human body materials are discussed. Three quarters of the term is thus taught on a joint basis, and three or four lectures are split. Basic metal, plastic and wood behavior is common to both groups.
机译:我们针对少数机械和生物医学工程专业的本科生,开发了将机械工程材料实验室与材料科学讲座相结合的课程。通过对主题顺序的明智选择,我们已经能够为机械和生物医学工程专业的学生(只有有限的分组)利用一个讲座和一个实验室。结合机械和生物医学专业学生的主要原因是为了减轻一所小型大学的教职人员负担和所需资源。对于拥有中小型机械和生物医学工程课程的学校,如果他们可以包括其他人群,则可以提高班级规模。异类群体还有助于教会学生相同的工程技术不仅在单个工程领域中有用。实验室部分从设计和评估机械测试的常见问题开始,然后是金属的拉伸,剪切和扭转评估。为了引入复合材料,对木材和水泥进行了评估。机械工程专业的学生评估冲击和应变仪时,生物医学工程专业的学生则进行软组织的拉伸研究以及长骨的压缩研究。在机械和生物医学领域的学生中,基本材料讲座(从原子级开始)是相同的,直到讨论了诸如人体材料之类的特定主题为止。因此,该学期的四分之三是联合授课的,分为三四节课。这两个群体的基本金属,塑料和木材行为均相同。

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