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Manufacturing Processes for Engineering Materials

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TLDR
In this paper, the authors present the fundamental properties of materials and their properties, including surfaces, tribology, dimensional characteristics, inspection, and product quality assurance, and manufacturing properties of metals.
Abstract
1 Introduction 2 Fundamentals of the mechanical behavior of materials 3 Structure and manufacturing properties of metals 4 Surfaces, tribology, dimensional characteristics, inspection, and product Quality assurance 5 Metal-casting processes and equipment heat treatment 6 Bulk deformation processes 7 Sheet-metal forming processes 8 Material-removal pocesses: cutting 9 Material-removal processes: abrasive, chemical, electrical, and high-energy beams 10 Properties and processing of polymers and reinforced plastics rapid prototyping and rapid tooling 11 Properties and processing of metal powders, ceramics, glasses, composites, and superconductors 12 Joining and fastening processes 13 Fabrication of microelectronic, micromechanical, and microelectromechanical devices nanomanufacturing 14 Automation of manufacturing processes and operations 15 Computer-integrated manufacturing systems 16 Product design and manufacturing in a global competitive environment

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Book ChapterDOI

Philosophical study on composites and their drilling techniques

TL;DR: In this paper, a comparative analysis between conventional and non-conventional drilling of composite materials is presented. And the authors focus on better understanding of biocomposites and various composite conventional and nonsmall drilling techniques.

Fabrication and angle compensation analysis of skew rolling mill

Jie Wang
Abstract: The rolling process is an excellent method for processing new high performance polymers. Skew rolling, as a highly accurate and highly efficient rolling technology, has been commonly used to enhance mechanical properties and productivity. However, the complexity of the mechanics in the skew rolling process of polymers is a significant challenge for manufacturers and researchers. In this work, models for calculating the deformed area under parallel rolling and skew rolling have been developed. Based on the models, interactive force models in the rolling process have also been developed. Finite element analysis was used to simulate the rolling process. Experimental results were compared with the force model and simulation results. A study on angle compensation based on the influences of angle and friction conditions on force ratio Fxd/Fzd in the skew rolling process was carried out. The results showed the accuracy of models and equations, and the work offered the possibility of angle compensation for the two polymers employed in this study.
Patent

High-frequency tooth pass cutting system

TL;DR: In this paper, a rotating cutting tool is used to make a first cut in the material using a first tooth of the cutting tool, such that an amount of heat is conducted into the material.