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Book
Advances in Hard-to-Cut Materials : Manufacturing, Properties, Process Mechanics and Evaluation of Surface Integrity
Authors: --- ---
Year: 2020 Publisher: [Place of publication not identified] : MDPI - Multidisciplinary Digital Publishing Institute,

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Abstract

The rapid growth of modern industry has resulted in a growing demand for construction materials with excellent operational properties. However, the improved features of these materials can significantly hinder their manufacture and, therefore, they can be defined as hard-to-cut. The main difficulties during the manufacturing/processing of hard-to-cut materials are attributed especially to their high hardness and abrasion resistance, high strength at room or elevated temperatures, increased thermal conductivity, as well as resistance to oxidation and corrosion. Nowadays, the group of hard-to-cut materials is extensive and still expanding, which is attributed to the development of a novel manufacturing techniques (e.g., additive technologies). Currently, the group of hard-to-cut materials mainly includes hardened and stainless steels, titanium, cobalt and nickel alloys, composites, ceramics, as well as the hard clads fabricated by additive techniques. This Special Issue, "Advances in Hard-to-Cut Materials: Manufacturing, Properties, Process Mechanics and Evaluation of Surface Integrity", provides the collection of research papers regarding the various problems correlated with hard-to-cut materials. The analysis of these studies reveals the primary directions regarding the developments in manufacturing methods, characterization, and optimization of hard-to-cut materials.


Book
Advances in Hard-to-Cut Materials : Manufacturing, Properties, Process Mechanics and Evaluation of Surface Integrity
Authors: --- ---
Year: 2020 Publisher: [Place of publication not identified] : MDPI - Multidisciplinary Digital Publishing Institute,

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Abstract

The rapid growth of modern industry has resulted in a growing demand for construction materials with excellent operational properties. However, the improved features of these materials can significantly hinder their manufacture and, therefore, they can be defined as hard-to-cut. The main difficulties during the manufacturing/processing of hard-to-cut materials are attributed especially to their high hardness and abrasion resistance, high strength at room or elevated temperatures, increased thermal conductivity, as well as resistance to oxidation and corrosion. Nowadays, the group of hard-to-cut materials is extensive and still expanding, which is attributed to the development of a novel manufacturing techniques (e.g., additive technologies). Currently, the group of hard-to-cut materials mainly includes hardened and stainless steels, titanium, cobalt and nickel alloys, composites, ceramics, as well as the hard clads fabricated by additive techniques. This Special Issue, "Advances in Hard-to-Cut Materials: Manufacturing, Properties, Process Mechanics and Evaluation of Surface Integrity", provides the collection of research papers regarding the various problems correlated with hard-to-cut materials. The analysis of these studies reveals the primary directions regarding the developments in manufacturing methods, characterization, and optimization of hard-to-cut materials.


Book
Advances in Hard-to-Cut Materials : Manufacturing, Properties, Process Mechanics and Evaluation of Surface Integrity
Authors: --- ---
Year: 2020 Publisher: [Place of publication not identified] : MDPI - Multidisciplinary Digital Publishing Institute,

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Bookmark

Abstract

The rapid growth of modern industry has resulted in a growing demand for construction materials with excellent operational properties. However, the improved features of these materials can significantly hinder their manufacture and, therefore, they can be defined as hard-to-cut. The main difficulties during the manufacturing/processing of hard-to-cut materials are attributed especially to their high hardness and abrasion resistance, high strength at room or elevated temperatures, increased thermal conductivity, as well as resistance to oxidation and corrosion. Nowadays, the group of hard-to-cut materials is extensive and still expanding, which is attributed to the development of a novel manufacturing techniques (e.g., additive technologies). Currently, the group of hard-to-cut materials mainly includes hardened and stainless steels, titanium, cobalt and nickel alloys, composites, ceramics, as well as the hard clads fabricated by additive techniques. This Special Issue, "Advances in Hard-to-Cut Materials: Manufacturing, Properties, Process Mechanics and Evaluation of Surface Integrity", provides the collection of research papers regarding the various problems correlated with hard-to-cut materials. The analysis of these studies reveals the primary directions regarding the developments in manufacturing methods, characterization, and optimization of hard-to-cut materials.


Book
Thermal conductivity : nonmetallic liquids and gases
Authors: --- ---
ISBN: 0306670232 Year: 1970 Publisher: New York (N.Y.): Plenum

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Book
Thermal conductivities of some polymers and composites
Authors: ---
Year: 2018 Publisher: Aberdeen Proving Ground, MD : US Army Research Laboratory,

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Book
Thermal conductivity of a specimen of Inconel
Authors: --- ---
Year: 1955 Publisher: Gaithersburg, MD : U.S. Dept. of Commerce, National Institute of Standards and Technology,

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Book
Untersuchungen an zementarmen und ultrazementarmen Korundfeuerbetonen
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Year: 1988 Publisher: Aachen : Rheinisch-Westfälische Technische Hochschule Aachen [R.W.T.H.],

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Thermal conductivity 16
Authors: --- ---
ISBN: 9780306410321 030641032X Year: 1982 Publisher: New York: Plenum,

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Book
Energy Transport at the Micro/Nanoscale
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Year: 2023 Publisher: [Place of publication not identified] : MDPI - Multidisciplinary Digital Publishing Institute,

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This Special Issue focuses on recent technology developments in the measurement of the thermal conductivity/diffusivity of micro/nanoscale materials, including 2D materials, micro/nanoscale wires/fibers, and nanostructured materials. Techniques such as photothermal, transient electrothermal, and energy transport state-resolved Raman have been reviewed in great detail.


Book
Thermal conductivity of simi-conductive solids
Authors: ---
Year: 1961 Publisher: Gaithersburg, MD : U.S. Dept. of Commerce, National Institute of Standards and Technology,

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