The Application of Vibrational Energy to the Drawing of Metallic Materials

The Application of Vibrational Energy to the Drawing of Metallic Materials
Author: Nichols Maropis
Publisher:
Total Pages: 186
Release: 1966
Genre:
ISBN:


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Significant reductions in drawing force were obtained with all of the materials at the drawing rates noted. Surface finish was improved; cold drawing of the titanium alloy was practical with, but not without the application of vibratory energy. With the view to differentiating the effect of vibratory energy on die friction and on redundant deformation, high intensity ultrasonic vibration was applied during the steady-state drawing of copper and steel wire under varying conditions of area reduction, back-pull, drawing rate and ultrasonic power. It was not possible to differentiate between the ultrasonic effect on redundant deformation and the ultrasonic effect on die friction, but at the higher energy density the primary mechanism of the ultrasonic effect relates to friction reduction at the die-wire interface.

Abstracts of AF Materials Laboratory Reports

Abstracts of AF Materials Laboratory Reports
Author: Air Force Materials Laboratory (U.S.)
Publisher:
Total Pages: 142
Release: 1967
Genre: Materials
ISBN:


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Technical reports published by the Air Force Materials Laboratory during the period 1 July 1966-31 December 1966 are abstracted herein and indexed by branches of the laboratory, technical subject matter, investigator, project monitor and contractor. Reports on research conducted by the Air Force Materials Laboratory personnel as well as that conducted on contract are included.

Paper

Paper
Author:
Publisher:
Total Pages: 890
Release: 1971
Genre: Mechanical engineering
ISBN:


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The Application of Ultrasonic Energy in the Deformation of Metals

The Application of Ultrasonic Energy in the Deformation of Metals
Author: Alan R. Rosenfield
Publisher:
Total Pages: 88
Release: 1963
Genre: Metals
ISBN:


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On June 21 a symposium was sponsored by the Bureau of Naval Weapons on the application of ultrasonic energy in the deformation of metals. At this session, a number of investigators actively working in the field reported informally on the results of their research. The reports revealed that the results achieved by incorporating ultrasonic transducers into conventional metalforming and-cutting operations are sufficiently promising that the technique merits further attention. Data are available to indicate that application of ultrasonic vibrations during metal working can increase speeds, lower forces, and improve surface finishes. All of these results have been obtained without any observed difference in properties between ultrasonically and conventionally fabricated parts. (Author).

Piezoelectric Energy Harvesting

Piezoelectric Energy Harvesting
Author: Alper Erturk
Publisher: John Wiley & Sons
Total Pages: 377
Release: 2011-04-04
Genre: Technology & Engineering
ISBN: 1119991358


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The transformation of vibrations into electric energy through the use of piezoelectric devices is an exciting and rapidly developing area of research with a widening range of applications constantly materialising. With Piezoelectric Energy Harvesting, world-leading researchers provide a timely and comprehensive coverage of the electromechanical modelling and applications of piezoelectric energy harvesters. They present principal modelling approaches, synthesizing fundamental material related to mechanical, aerospace, civil, electrical and materials engineering disciplines for vibration-based energy harvesting using piezoelectric transduction. Piezoelectric Energy Harvesting provides the first comprehensive treatment of distributed-parameter electromechanical modelling for piezoelectric energy harvesting with extensive case studies including experimental validations, and is the first book to address modelling of various forms of excitation in piezoelectric energy harvesting, ranging from airflow excitation to moving loads, thus ensuring its relevance to engineers in fields as disparate as aerospace engineering and civil engineering. Coverage includes: Analytical and approximate analytical distributed-parameter electromechanical models with illustrative theoretical case studies as well as extensive experimental validations Several problems of piezoelectric energy harvesting ranging from simple harmonic excitation to random vibrations Details of introducing and modelling piezoelectric coupling for various problems Modelling and exploiting nonlinear dynamics for performance enhancement, supported with experimental verifications Applications ranging from moving load excitation of slender bridges to airflow excitation of aeroelastic sections A review of standard nonlinear energy harvesting circuits with modelling aspects.

Micromanufacturing of Metallic Materials

Micromanufacturing of Metallic Materials
Author: Jingwei Zhao
Publisher: MDPI
Total Pages: 236
Release: 2021-01-13
Genre: Technology & Engineering
ISBN: 3039435094


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Product miniaturization is a trend for facilitating product usage, enabling product functions to be implemented in microscale geometries, and aimed at reducing product weight, volume, cost and pollution. Driven by ongoing miniaturization in diverse areas, including medical devices, precision equipment, communication devices, micro-electromechanical systems and microsystems technology, the demands for micro metallic products have been tremendously increased. Such a trend requires the development of advanced technology for the micromanufacturing of metallic materials, with regard to producing high-quality micro metallic products that possess excellent dimensional tolerances, the required mechanical properties and improved surface quality. Micromanufacturing differs from conventional manufacturing technology in terms of materials, processes, tools, and machines and equipment, due to the miniaturization nature of the whole micromanufacturing system, which challenges the rapid development of micromanufacturing technology. Such a background has prompted and encouraged us to publish a scholarly book on the topic of the micromanufacturing of metallic materials, with the purpose of providing readers with a valuable document that can be used in the research and development of micromanufacturing technology. This book will be useful for both theoretical and applied research aimed at micromanufacturing technology, and will serve as an important research tool, providing knowledge to be returned to the community not only as valuable scientific literature, but also as technology, processes and productivities.