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Search Results for oxygen-free high-conductivity copper
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Journal Articles
Copper’s Conductivity and Antimicrobial Properties Inspire Renewed Interest
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AM&P Technical Articles (2020) 178 (5): 34–36.
Published: 01 July 2020
... of solubility. There is a cumulative effect when more than one element is added. The drop in electrical conductivity caused by additions of commonly used alloying elements is illustrated by Fig. 1, Fig. 1 Effect of alloying elements on the conductivity of oxygen-free high conductivity copper. which shows...
Abstract
View articletitled, <span class="search-highlight">Copper’s</span> <span class="search-highlight">Conductivity</span> and Antimicrobial Properties Inspire Renewed Interest
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for article titled, <span class="search-highlight">Copper’s</span> <span class="search-highlight">Conductivity</span> and Antimicrobial Properties Inspire Renewed Interest
As copper’s antimicrobial benefits spur new applications, the metal’s other properties are also worth reviewing. Along with strength, fatigue resistance, and ability to take a good finish, the primary selection criteria for copper and its alloys are electrical conductivity, thermal conductivity, corrosion resistance, color, ease of fabrication, and antimicrobial benefits.
Journal Articles
Keys to Long-Lasting Hardening Inductors: Experience, Materials, and Precision
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AM&P Technical Articles (2015) 173 (9): 56–60.
Published: 01 October 2015
.... This article describes material selection and fabrication techniques for conventional inductors and new breakthrough designs. Copyright © ASM International® 2015 2015 ASM International coil life induction hardening induction coil design oxygen-free high-conductivity copper httpsdoi.org/10.31399...
Abstract
View articletitled, Keys to Long-Lasting Hardening Inductors: Experience, Materials, and Precision
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for article titled, Keys to Long-Lasting Hardening Inductors: Experience, Materials, and Precision
Induction coils are considered the weakest link in an induction hardening system, so advanced designs and precise fabrication are paramount to ensure long life while producing high quality treated parts. This article describes material selection and fabrication techniques for conventional inductors and new breakthrough designs.
Journal Articles
Copper Evaporation During Low Pressure Carburization
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AM&P Technical Articles (2018) 176 (2): 63–64.
Published: 01 February 2018
... and networked carbides. The length and num- EXPERIMENTAL DETAILS Oxygen-free high conductivity copper foil, 0.002 in. thick, was cut into 2-in. square coupons. Three coupons were prepared for each test process. Just prior to placing the coupons into the heat treat furnace, they were briefly immersed ber of each...
Abstract
View articletitled, <span class="search-highlight">Copper</span> Evaporation During Low Pressure Carburization
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for article titled, <span class="search-highlight">Copper</span> Evaporation During Low Pressure Carburization
Stringent pressure control and gas species type both play an important role in minimizing the evaporation rate of not only copper, but other elements susceptible to evaporation in vacuum systems. The article describes a study investigating the effect of temperature, pressure, and carrier gas species on the amount of copper evaporation that occurs from copper foil test samples in low pressure carburizing.
Journal Articles
Fabricating Copper Components with Electron Beam Melting
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AM&P Technical Articles (2014) 172 (7): 20–24.
Published: 01 July 2014
... for these experiments. EBM hardware is de- scribed elsewhere in detail[3,4,5,6]. A circular start plate made of oxygen free, high conductivity (OFHC) copper measuring approximately 150 x 10 mm leveled on a 10-mm-thick bed of loose *Member of ASM International copper powder was the build substrate. Initially...
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View articletitled, Fabricating <span class="search-highlight">Copper</span> Components with Electron Beam Melting
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for article titled, Fabricating <span class="search-highlight">Copper</span> Components with Electron Beam Melting
The ability to make components from copper and copper alloys via additive manufacturing is spurring a range of novel applications. Although the high thermal conductivity of copper presents challenges for direct AM processes, fully dense copper components with complex geometries have been demonstrated. Of particular interest is the ability to use AM methods to fabricate internal cooling channels and mesh structures to optimize thermal management. This article describes feasibility studies to evaluate AM processing of copper parts.
Journal Articles
Development and Validation of High-Performance SARS-CoV-2 Antiviral Coatings for High-Touch Surfaces
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AM&P Technical Articles (2020) 178 (8): 40–43.
Published: 01 November 2020
... antiviral coatings cold spraying copper alloys httpsdoi.org/10.31399/asm.amp.2020-08.p040 40 iTSSe TSS FEATURE ADVANCED MATERIALS & PROCESSES | NOVEMBER/DECEMBER 2020 TSS MATERIALS SCIENCE AND CORONAVIRUS SERIES DEVELOPMENT AND VALIDATION OF HIGH-PERFORMANCE SARS-CoV-2 ANTIVIRAL COATINGS FOR HIGH-TOUCH...
Abstract
View articletitled, Development and Validation of <span class="search-highlight">High</span>-Performance SARS-CoV-2 Antiviral Coatings for <span class="search-highlight">High</span>-Touch Surfaces
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for article titled, Development and Validation of <span class="search-highlight">High</span>-Performance SARS-CoV-2 Antiviral Coatings for <span class="search-highlight">High</span>-Touch Surfaces
A joint Canadian project aims to curb the COVID-19 pandemic and future epidemics with cold sprayed, copper-based coatings. The objectives are: (1) to tailor the microstructure and surface state of Cu/Cu alloy cold spray coatings to maximize the antiviral activity and provide an economically viable solution that can be rapidly upscaled and industrialized; (2) to identify the most relevant high-touch surface components based on a systematic data-driven analysis and simulation of public infrastructure usage; and (3) to demonstrate viable production capability with real component demonstrators to be installed in public transport facilities for in situ testing.
Journal Articles
Phytomining: New Method for Rhenium Production
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AM&P Technical Articles (2012) 170 (5): 34–37.
Published: 01 May 2012
... and energetics. Re-Pt alloys account for 14% of Re use as catalysts for the production of lead-free gasoline. High-temperature thermocouples, x-ray sources, selfcleaning electrical contacts, and other products consume 18% Re. About 80% of Re is obtained as a by-product of the pyro- and hydrometallurgical...
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View articletitled, Phytomining: New Method for Rhenium Production
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for article titled, Phytomining: New Method for Rhenium Production
The scattered rhenium in the environment around copper and molybdenum mines and copper processing factories is a potential source for rhenium production. Phytomining is an inexpensive and environmentally friendly method for extracting rhenium and remediating exhausted soils near copper mines and ore-dressing regions.
Journal Articles
We Never Have Enough Energy
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AM&P Technical Articles (2017) 175 (4): 38–41.
Published: 01 May 2017
... as a thermal spray technology and evolve with instrumentation and techniques used for TS. Very low-pressure plasma spray, or VLPPS (0.75-3.75 torr compared with 37-150 torr for conventional LPPS), has the capability of manufacturing unique, oxygen-free structures, which would enhance bond coat For more...
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View articletitled, We Never Have Enough Energy
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for article titled, We Never Have Enough Energy
Thermal spray plays an important but latent role in many energy generation applications. Strong R&D commitment is required to further expand its technological envelope. This article addresses future directions in the use of thermal spray coating technologies in the energy sector.