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加拿大多倫多大學(xué)材料系鄒宇課題組招博士生和博士后(具體見(jiàn)英文說(shuō)明)
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“極端力學(xué)與增材制造課題組”研究和探索具有超常力學(xué)性能的材料以及材料在極端條件下的力學(xué)行為和加工制造。研究領(lǐng)域涉及金屬、力學(xué)和制造, 跨多個(gè)時(shí)間和空間尺度。目前主要研究方向包括高熵合金、納米力學(xué)和金屬的增材制造(3D打。。應(yīng)用領(lǐng)域涉及航空航天、醫(yī)療器械、電子設(shè)備、環(huán)境和能源。 目前招聘的幾個(gè)方向包括:(1)納米高熵合金材料力學(xué)行為和熱穩(wěn)定性研究;(2)原位小尺度材料在極端條件下的力學(xué)行為;(3)3D打印鈦合金和鎂合金在航空航天以及生物醫(yī)學(xué)的應(yīng)用;(4)新型激光3D打印機(jī)的裝備設(shè)計(jì)開(kāi)發(fā);(5)機(jī)器學(xué)習(xí)在材料設(shè)計(jì)和智能制造中的應(yīng)用。 歡迎有材料、機(jī)械、應(yīng)用物理以及其他工程科學(xué)背景的申請(qǐng)者聯(lián)系,聯(lián)系方式zouyubob@gmail.com。開(kāi)始時(shí)間可以是2019/2020年1月、5月、或者9月。語(yǔ)言要求 (iBT93 (writing 22; speaking 22) or IELTS 7.0 (6.5 must be achieved in each component)), 并附上英文簡(jiǎn)歷,成績(jī)單和簡(jiǎn)單的研究興趣描述。博士后申請(qǐng)者請(qǐng)附上最有代表性的2-3篇論文。同時(shí),也歡迎訪問(wèn)學(xué)生和訪問(wèn)學(xué)者到本課題組聯(lián)合培養(yǎng)或者交流。建議感興趣的申請(qǐng)者盡早聯(lián)系, 目前還接受9月入學(xué)和1月入學(xué)的申請(qǐng)。 “極端力學(xué)與增材制造課題組”研究和探索具有超常力學(xué)性能的材料以及材料在極端條件下的力學(xué)行為和加工制造。研究領(lǐng)域涉及金屬、力學(xué)和制造, 跨多個(gè)時(shí)間和空間尺度。目前主要研究方向包括高熵合金、納米力學(xué)和金屬的增材制造(3D打。。應(yīng)用領(lǐng)域涉及航空航天、醫(yī)療器械、電子設(shè)備、環(huán)境和能源。 目前招聘的幾個(gè)方向包括:(1)納米高熵合金材料力學(xué)行為和熱穩(wěn)定性研究;(2)原位小尺度材料在極端條件下的力學(xué)行為;(3)3D打印鈦合金和鎂合金在航空航天以及生物醫(yī)學(xué)的應(yīng)用;(4)新型激光3D打印機(jī)的裝備設(shè)計(jì)開(kāi)發(fā);(5)機(jī)器學(xué)習(xí)在材料設(shè)計(jì)和智能制造中的應(yīng)用。 歡迎有材料、機(jī)械、應(yīng)用物理以及其他工程科學(xué)背景的申請(qǐng)者聯(lián)系,聯(lián)系方式zouyubob@gmail.com。開(kāi)始時(shí)間可以是2019/2020年1月、5月、或者9月。語(yǔ)言要求 (iBT93 (writing 22; speaking 22) or IELTS 7.0 (6.5 must be achieved in each component)), 并附上英文簡(jiǎn)歷,成績(jī)單和簡(jiǎn)單的研究興趣描述。博士后申請(qǐng)者請(qǐng)附上最有代表性的2-3篇論文。同時(shí),也歡迎訪問(wèn)學(xué)生和訪問(wèn)學(xué)者到本課題組聯(lián)合培養(yǎng)或者交流。建議感興趣的申請(qǐng)者盡早聯(lián)系, 目前還接受9月入學(xué)和1月入學(xué)的申請(qǐng)。 Open Positions Zou Research Group (Laboratory for Extreme Mechanics & Additive Manufacturing) in the Department of Materials Science and Engineering (MSE) at the University of Toronto has several open positions for graduate students, postdoctoral researchers, and visiting scholars. Research interests: Our group uses novel experimental, analytical, and computational tools to explore materials with extreme properties or under extreme conditions, particularly metallic materials. We aim to bridge the gaps between metals, mechanics, and manufacturing (3Ms), covering many lengths and time scales. Among our research areas of interest are high-entropy alloys, nanomechanics, and additive manufacturing (3D printing). In particular, we want to advance fields of vital importance to society, including the aerospace, biomedical, electronic, environmental, and energy sectors. The PI: Dr. Yu Zou joined the MSE Department at U of T as an Assistant Professor in January 2018, after working as a Postdoctoral Fellow in the Department of Mechanical Engineering at MIT (USA). He received his doctorate, master, and bachelor degrees from ETH Zurich (Switzerland), McGill University (Canada), and Beihang University (China), respectively, all in materials science, and he was also a JSPS visiting scholar at Kyoto University (Japan). His research areas include physical metallurgy, nanomechanics, microstructural analysis, metal additive manufacturing, and materials informatics. As the first or corresponding author, his work has been published in Nature Communications, Nano Letters, Acta Materialia, Scripta Materialia, Philosophical Magazine & Letters, etc. (Google Scholar, Research Gate, ORCID). The Team: Currently, the team includes one postdoctoral researcher, one Ph.D. student, three Master students (research-based), and two visiting Ph.D. students. Open positions: We are currently looking for highly motivated students and postdoctoral researchers who enjoy working in a collaborative environment to join our group starting in January, May, or September. We welcome researchers with backgrounds in materials science, mechanical engineering, physics, electrical engineering, and related fields, particularly in physical metallurgy, mechanics, and instrumental design. Current openings (with full scholarships) are listed below: • Mechanical and thermal stability of nanostructured high-entropy alloys • In-situ mechanical testing at small scales and in extreme conditions • 3D printing of titanium and magnesium alloys for aerospace and biomedical applications • Instrumental design for a laser 3D printing system • Machine learning for materials design and intelligent manufacturing If you would like to join us, please contact Prof. Zou (zouyubob@gmail.com) and include your CV, a brief statement (a short paragraph) of your interests related to our research, and examples of your recent work. Postdoctoral applicants should also attach your most important publications. Availability changes frequently according to project needs and funding; however, we are always ready to meet the most outstanding candidates from all fields and areas of expertise! For graduate student positions, the U of T application deadline for Summer/Fall 2019/2020 is January 31 (the application is still open now), but you are strongly encouraged to contact the above email address for the open positions before the deadline, because the positions may be filled before the deadline. Please make sure you meet the minimum admission requirements at U of T. For postdoctoral researcher and visiting student (scholar) positions, please make contact by email for possible research projects and available fellowships as early as possible. About U of T: Founded in 1827, the University of Toronto has evolved into Canada’s leading institution of learning, discovery and knowledge creation. We are proud to be one of the world’s top research-intensive universities, driven to invent and innovate. The Times Higher Education rank U of T at 21st globally and 1st in Canada in 2018/2019. About MSE at U of T: The Department of Materials Science & Engineering is home to approximately 200 undergraduate students, 80 graduate students, and 30 faculty and staff. As a world leader in materials applications and processing, our commitment to research and teaching excellence fosters innovative thinking, leading to the development of sustainable technologies that make a global impact. |
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