Mechanical Behavior of Materials in Microelectronic and Fiber-optic Systems

Mechanical Behavior of Materials in Microelectronic and Fiber-optic Systems
Author: American Society of Mechanical Engineers. Winter Annual Meeting
Publisher:
Total Pages: 0
Release: 1989
Genre: Finite element method
ISBN:

The overwhelming majority of studies in microelectronics and fiber-optics are experimental. Not too many apply numerical, mainly finite-element, methods to analyze microelectronics and fiber-optic structures. There is a very small number of papers using analytical modeling. At the same time application of powerful and well-developed analytical methods of engineering mechanics often enables one to obtain valuable prior information of the mechanical behavior of materials and structures, to interpret empirical data, and to extrapolate the accumulated experience on new designs. As a rule, application of rational analytical modeling results in substantial savings of time and expense. The review, based primarily on materials science problems related to the mechanical behavior of materials in microelectronics and fiber-optics, and lending themselves to analytical solutions.

Electronic Materials Handbook

Electronic Materials Handbook
Author:
Publisher: ASM International
Total Pages: 1234
Release: 1989-11-01
Genre: Technology & Engineering
ISBN: 9780871702852

Volume 1: Packaging is an authoritative reference source of practical information for the design or process engineer who must make informed day-to-day decisions about the materials and processes of microelectronic packaging. Its 117 articles offer the collective knowledge, wisdom, and judgement of 407 microelectronics packaging experts-authors, co-authors, and reviewers-representing 192 companies, universities, laboratories, and other organizations. This is the inaugural volume of ASMAs all-new ElectronicMaterials Handbook series, designed to be the Metals Handbook of electronics technology. In over 65 years of publishing the Metals Handbook, ASM has developed a unique editorial method of compiling large technical reference books. ASMAs access to leading materials technology experts enables to organize these books on an industry consensus basis. Behind every article. Is an author who is a top expert in its specific subject area. This multi-author approach ensures the best, most timely information throughout. Individually selected panels of 5 and 6 peers review each article for technical accuracy, generic point of view, and completeness.Volumes in the Electronic Materials Handbook series are multidisciplinary, to reflect industry practice applied in integrating multiple technology disciplines necessary to any program in advanced electronics. Volume 1: Packaging focusing on the middle level of the electronics technology size spectrum, offers the greatest practical value to the largest and broadest group of users. Future volumes in the series will address topics on larger (integrated electronic assemblies) and smaller (semiconductor materials and devices) size levels.

The Mechanical Behaviour of Engineering Materials

The Mechanical Behaviour of Engineering Materials
Author: W. D. Biggs
Publisher: Elsevier
Total Pages: 157
Release: 2013-10-22
Genre: Technology & Engineering
ISBN: 1483151069

The Mechanical Behaviour of Engineering Materials aims to relate properties and structure, and to provide a theoretical basis upon which to extrapolate when conditions or materials outside previous experience arise. The present text refers primarily to metals and alloys, other (non-crystalline) solids are treated rather less fully. This is largely dictated by the state of knowledge at the present time, for although there is a large mass of data concerning the properties of non-metallic materials, much of this is empirical and a full explanation is made difficult by the complexities of an irregular initial structure. The book can be divided into the three sections covering constitution, properties, and significance of test data. Separate chapters discuss properties such as heterogeneity, elasticity, plasticity, and fracture. Subsequent chapters deal with tensile and hardness tests; creep, fatigue and impact tests; and the selection of engineering materials. Throughout the text the author has endeavored to confine the discussion to those aspects of materials science which appear to be reasonably well understood at the present time.

Micro- and Macromechanical Properties of Materials

Micro- and Macromechanical Properties of Materials
Author: Yichun Zhou
Publisher: CRC Press
Total Pages: 622
Release: 2013-09-26
Genre: Science
ISBN: 1466592435

This is an English translation of a Chinese textbook that has been designated a national planned university textbook, the highest award given to scientific textbooks in China. The book provides a complete overview of mechanical properties and fracture mechanics in materials science, mechanics, and physics. It details the macro- and micro-mechanical properties of metal structural materials, nonmetal structural materials, and various functional materials. It also discusses the macro and micro failure mechanism under different loadings and contains research results on thin film mechanics, smart material mechanics, and more.

Nanomechanics of Materials and Structures

Nanomechanics of Materials and Structures
Author: Tze-jer Chuang
Publisher: Springer Science & Business Media
Total Pages: 348
Release: 2006-07-11
Genre: Technology & Engineering
ISBN: 9781402039515

This book is derived from the proceedings of the International Workshop on Nanomechanics held at Asilomar Conference Grounds in Pacific Grove, California on July 14-17, 2004. Approximately 70 leading experts from academia, government and industrial sectors in semiconductors, computers, communication, information technology, defense, energy, transportation and aerospace attended the Workshop (see the workshop photo taken on July 16, 2004). The main objective was to convene leading researchers in the nanotechnology community to assess the current state-of-the-art and disseminate recent progress, critical issues, barriers to applications, and directions for future research in nanomechanics. Miniaturization of structural components and functional devices such as electronic, optical, mechanical and electric-magnetic parts has been a recent trend, and the pace has accelerated over the past few years. Advances in micromanufacturing, semiconductor processing (e.g., etching, lithography, grafting, etc.), sensors, actuators and microprocessors have opened up a revolutionary path to the development of new technologies such as micro-electro-mechanical systems (MEMS), nano-electro-mechanical systems (NEMS), micro-engines, smart structures, smart controllers, lab-- a-chip devices, and even bio-medical sensing devices which can detect, analyze, decide and activate appropriate functions in real time. The above-mentioned devices, structures, or systems, have one issue in common. In order to perform their assigned functions, they must maintain their structural integrity and be reliable and durable during their entire designed service life. Thus, strength, durability, and time-dependent mechanical property degradation are major concerns for design engineers and device manufacturers, even though the parts are designed for electronic, magnetic, optical or other functions.

Mechanical Behavior of Materials

Mechanical Behavior of Materials
Author: Thomas H. Courtney
Publisher: Waveland Press
Total Pages: 750
Release: 2005-12-16
Genre: Technology & Engineering
ISBN: 1478608382

This outstanding text offers a comprehensive treatment of the principles of the mechanical behavior of materials. Appropriate for senior and graduate courses, it is distinguished by its focus on the relationship between macroscopic properties, material microstructure, and fundamental concepts of bonding and crystal structure. The current, second edition retains the original editions extensive coverage of nonmetallics while increasing coverage of ceramics, composites, and polymers that have emerged as structural materials in their own right and are now competitive with metals in many applications. It contains new case studies, includes solved example problems, and incorporates real-life examples. Because of the books extraordinary breadth and depth, adequate coverage of all of the material requires two full semesters of a typical three-credit course. Since most curricula do not have the luxury of allocating this amount of time to mechanical behavior of materials, the text has been designed so that material can be culled or deleted with ease. Instructors can select topics they wish to emphasize and are able to proceed at any level they consider appropriate.

Micro- and Opto-Electronic Materials and Structures: Physics, Mechanics, Design, Reliability, Packaging

Micro- and Opto-Electronic Materials and Structures: Physics, Mechanics, Design, Reliability, Packaging
Author: Ephraim Suhir
Publisher: Springer Science & Business Media
Total Pages: 1471
Release: 2007-05-26
Genre: Technology & Engineering
ISBN: 0387329897

This handbook provides the most comprehensive, up-to-date and easy-to-apply information on the physics, mechanics, reliability and packaging of micro- and opto-electronic materials. It details their assemblies, structures and systems, and each chapter contains a summary of the state-of-the-art in a particular field. The book provides practical recommendations on how to apply current knowledge and technology to design and manufacture. It further describes how to operate a viable, reliable and cost-effective electronic component or photonic device, and how to make such a device into a successful commercial product.

Mechanical Behavior of Engineering Materials

Mechanical Behavior of Engineering Materials
Author: Raghavan Srinivasan
Publisher: Wiley-TMS
Total Pages: 350
Release: 2017-03-06
Genre: Technology & Engineering
ISBN: 9781118889091

This book focuses on mechanical behavior, deformation, and fracture of materials, and how they play a critical role in the design of mechanical components under a variety of loading conditions. We have taken the approach of educating design engineers the key aspects of mechanical properties of material; in particular test methodologies to obtain important design parameters, and how they are taken into consideration during design for a variety of applications, such as static, fatigue and creep loading. The first part of the book presents an overview of mechanical design data, including the impact of statistical variation. The second section has a detailed discussion of the testing methods for obtaining this data. The third part discusses the role of micro- and macro-structure on mechanical behavior of materials. The emphasis will be on metals used for load bearing applications, with less emphasis on the other three material classes – ceramics, polymers and composites. The last section deals with the application of the above to various design situations.