nfl14706 high-strength and high-conductivity copper alloy electrode

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High strength and high conductivity Cu alloys: A review

20201112 · High strength and high conductivity (HSHC) Cu alloys are widely used in many fields, such as high-speed electric railway contact wires and integrated circuit lead

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: HuiYa Yang, ZiChao Ma, ChenHui Lei, Liang Meng, YouTong Fang, JiaBin Liu, HongTao Wang

A high strength and high conductivity copper alloy

2003630 · Therefore in this study a Cu–Cr alloy with Zr and Mg additions was spray formed to achieve high strength and high electrical conductivity. 2. Experimental

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: Zhenyu Li, Jun Shen, Fuyang Cao, Qingchun Li

Review of nano-phase effects in high strength and

201911 · Tian et al. [ 26] reported that the electrical conductivity of the Cu-1.0Zr alloy was 80% IACS and the microhardness reached 155 HV after solution treatment at 900 ∘

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: Xiaohui Zhang, Yi Zhang, Baohong Tian, Kexing Song, Ping Liu, Yanlin Jia, Xiaohong Chen, Junchao An,...

Ultrahigh Strength and High Electrical Conductivity in

2004416 · Abstract. Methods used to strengthen metals generally also cause a pronounced decrease in electrical conductivity, so that a tradeoff must be made between

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: Lei Lu, Yongfeng Shen, Xianhua Chen, Lihua Qian, K. Lu

HRSC (High strength, high conductivity and

2022107 · HRSC is a heat-resistance copper alloy .And it has high erectric conductivity (equal to Phosphorus deoxidized copper‐C1220) and strength (par with brass‐C2600 and Phosphor bronze‐C5191) . Main

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2003213 · Abstract: High strength, high conductivity, and high heat resistant copper alloys are widely used in the fields of rail transit, electronic communications, navigation

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Innovations in Copper: Electrical and Metallurgy of

202253 · Not surprisingly, it is primarily their relatively high copper content that gives this family of copper alloys their high conductivity. The high-copper alloy family includes,

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High Condictivity Copper Alloys - High

Electrical Conductivity (I.A.C.S.) : 38-48 %. Termal Conductivity. : 110-150 W/ m.K. Coefficient of Thermal Expansion. : 20-100 ºC 17,0 X 10-6 /K. Working Temparature. : 3000 °C maks. CuBe2 uses as resistance

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Cu-ETP - High Conductivity Copper for Electrical and

1  · Cu-ETP (Copper Electrolytic Tough Pitch) is a commonly used copper alloy known for its high conductivity and corrosion resistance. Other materials that can be used as a

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Study on high-strength and high-conductivity Cu–Fe–P

2006415 · A new high-strength and high-conductivity Cu–Fe–P–B–Ce alloy strengthened by cold working and aging was designed. The mechanical properties and electrical conductivity of Cu–Fe–P and Cu–Fe–P–B–Ce alloys were measured, and the microstructures of the samples were analyzed with optical microscope and by

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Study on high-strength and high-conductivity Cu–Fe–P

2006415 · A new high-strength and high-conductivity Cu–Fe–P–B–Ce alloy strengthened by cold working and aging was designed. The mechanical properties and electrical conductivity of Cu–Fe–P and Cu–Fe–P–B–Ce alloys were measured, and the microstructures of the samples were analyzed with optical microscope and by

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High strength and high electrical conductivity C70250

2022627 · Cu–Ni–Si alloy has a difficult combination of high strength and high electrical conductivity, which limits its further application in electronics industry. In this work, the effects of large deformation double cold rolling-aging processes on the microstructure, mechanical properties and electrical conductivity of the columnar grain alloy ...

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Microstructure and properties of high-strength

2021225 · The over-aged Cu–Ni–Si alloy has an electrical conductivity of 46.2% IACS, an ultimate tensile strength of 789.1 MPa, a yield strength of 540.8 MPa, a fracture elongation of 17.8%, and a strength-elongation product of up to 15.3 GPa%. The addition of Ti transforms the dominant precipitation strengthening in Cu–Ni–Si alloys to a ...

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Solid-solution copper alloys with high strength and high

201351 · In particular, solid-solution (SS) copper alloys such as brass and phosphor bronze, despite having been developed long ago, are major workhorse materials because of their simple production processes, low cost, and adequate balance between mechanical strength and electrical conductivity (EC). To reduce the size and weight of the

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Abstract: High strength, high conductivity, and high heat resistant copper alloys are widely used in the fields of rail transit, electronic communications, navigation control, and other fields. In this work, Cu-Ag, Cu-Ni-Si, Cu-Cr-Zr, Cu-Al 2 O 3 , and Cu-Cr-Nb alloys with service temperature over 300 ℃ were reviewed.

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Development of High-Strength and High-Electrical

201934 · Friction stir processing (FSP) is a solid-state processing technique to enhance the surface properties of the metallic materials. The present study aims to improve the surface mechanical and wear properties of Cu–0.18wt.%Zr alloy through FSP without deteriorating its electrical conductivity behavior. The Cu–Zr alloy was friction stir

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The copper alloy with high strength and high conductivity can be obtained by adding rare earth elements, rapid solidification or large plastic deformation. In this paper, the strengthening mechanism, advantages and disadvantages of alloying method and composite method are discussed, and the research focus of the copper alloy are discussed and

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[PDF] Solid-solution copper alloys with high strength and

201351 · DOI: 10.1016/J.SCRIPTAMAT.2012.12.027 Corpus ID:4; Solid-solution copper alloys with high strength and high electrical conductivity @article{Maki2013SolidsolutionCA, title={Solid-solution copper alloys with high strength and high electrical conductivity}, author={Kazunari Maki and Yuki Ito and Hirotaka Matsunaga

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Design of High-Strength, High-Conductivity Alloys | MRS

20131129 · Computer-aided design of alloys is becoming increasingly useful, replacing the completely experimental approach. The computer-aided approach significantly reduces the cost of alloy design and more easily leads to optimum properties by reducing the amount of experimentation. Design of high-strength, high-conductivity alloys is a

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Applicability of copper alloys for DEMO high heat flux

in table 1. In general, there is a tradeoff between high strength and high conductivity, with the highest strength Cu alloys (>1GPa yield stress) having thermal conductivities <250Wm−1K−1 and the highest thermal conductivity alloys (>350Wm−1K−1) having yield strengths below 350MPa in as-wrought or solutionized and aged (SA) conditions. Some

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Development of a high strength, high conductivity copper

The development of highly conductive materials with high strength is requisite for conductors of high-field magnets. To develop such materials, Cu-Ag alloys (2-60 at.%) and their fabrication methods have been investigated. The Cu-Ag alloys were prepared by melting electrolytic Cu and pure Ag pellets in an argon atmosphere, and then cold-drawn to a

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Ultrahigh Strength and High Electrical Conductivity in

2004416 · Pure copper samples with a high density of nanoscale growth twins are synthesized and show a tensile strength about 10 times higher than that of conventional coarse-grained copper, while retaining an electrical conductivity comparable to that of pure copper. Methods used to strengthen metals generally also cause a pronounced decrease

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Copper-Based Alloys with Optimized Hardness and High

2022525 · Copper alloys, combining optimized strength with high electrical and thermal conductivity, are analyzed in-depth, in order to meet the increasing requirements of today’s and tomorrow’s applications in the electrical and automotive industries. The conducted research analyzes alloys with up to 0.3 wt.% scandium, as an alloying

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Journal of Materials Science Technology - USF

2021910 · In this work, the Cu-1.5Ni-1.1Co-0.6Si-0.1Cr alloy with high strength and electrical conductivity was designed. The strength of the alloy can reach 857 MPa and the conductivity is 42.8% IACS. It is worth noting that the elongation can reach 7%, which is 35% higher compared with the high strength and conductivity Cu-Ni- Co-Si alloy.

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Development of High-Strength and High-Electrical

201822 · Research efforts have been made to develop new aluminum alloy systems that can achieve a combination of tensile strength and electrical conductivity beyond the dotted line in Fig. 1, including alternative processing methods such as high-pressure torsion, a severe plastic deformation process.This was utilized at optimized temperatures to

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High strength and high conductivity Cu alloys: A review

High strength and high conductivity (HSHC) Cu alloys are widely used in many fields,such as high-speed electric railway contact wires and integrated circuit lead frames. Pure Cu is well known to have excellent electrical conductivity but rather low strength. The main concern of HSHC Cu alloys is how to strengthen the alloy efficiently.

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Research on conductive-material-filled electrodes for

2023321 · The cured or sintered metal powder has good conductivity and high strength. For example, the conductivity of the cured silver adhesive can reach 1 × 10 4 S/m. The preparation process of a nano-powder-filled electrode is similar to that of the molten-metal-filled electrode except for the filler and the curing procedure.

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High thermal conductivity and high strength magnesium

2021513 · Therefore, this study contributed to the development of high-performance Mg alloys with a combination of high thermal conductivity, high strength, and good castability. Search; advanced. Home; About IJMMM ... Cr and Cu) on second phase particles in Zr–Sn–Nb–Fe–(Cr, Cu) alloys, J. Alloys Compd., 748(2018), p. 745. doi:

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Sumitomo Electric Industries, Ltd. | Connect with Innovation

20221115 · Sumitomo Electric Industries, Ltd. | Connect with Innovation

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Abstract: High strength, high conductivity, and high heat resistant copper alloys are widely used in the fields of rail transit, electronic communications, navigation control, and other fields. In this work, Cu-Ag, Cu-Ni-Si, Cu-Cr-Zr, Cu-Al 2 O 3 , and Cu-Cr-Nb alloys with service temperature over 300 ℃ were reviewed.

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Development of High-Strength and High-Electrical

201934 · Friction stir processing (FSP) is a solid-state processing technique to enhance the surface properties of the metallic materials. The present study aims to improve the surface mechanical and wear properties of Cu–0.18wt.%Zr alloy through FSP without deteriorating its electrical conductivity behavior. The Cu–Zr alloy was friction stir

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Review of nano-phase effects in high strength and

2019124 · Review of nano-phase e ects in high strength and conductivity copper alloys | 389 Figure 8: Hot processing maps of: (a) Al 2 O 3 -Cu/25W5Cr composite and (b) Al 2 O 3 -Cu/35W5Cr composite at 650 ...

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The copper alloy with high strength and high conductivity can be obtained by adding rare earth elements, rapid solidification or large plastic deformation. In this paper, the strengthening mechanism, advantages and disadvantages of alloying method and composite method are discussed, and the research focus of the copper alloy are discussed and

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(PDF) Solid-solution copper alloys with high

201351 · Here, we designed copper alloys that exhibit high strength and conductivity by using solid-solution hardening enhanced by supersaturation with Mg. Cu–Mg alloy has a conductivity at least three ...

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High strength, high conductivity and good softening

202281 · DOI: 10.1016/j.jallcom.2022. Corpus ID:8; High strength, high conductivity and good softening resistance Cu-Fe-Ti alloy @article{Yang2022HighSH, title={High strength, high conductivity and good softening resistance Cu-Fe-Ti alloy}, author={H. Yang and Yeqiang Bu and Jinming Wu and Youtong Fang and Jiabin Liu and

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High strength and high conductivity Cu alloys: A review

20201112 · High strength and high conductivity (HSHC) Cu alloys are widely used in many fields, such as high-speed electric railway contact wires and integrated circuit lead frames. Pure Cu is well known to have excellent electrical conductivity but rather low strength. The main concern of HSHC Cu alloys is how to strengthen the alloy efficiently.

contact

Design of High-Strength, High-Conductivity Alloys | MRS

20131129 · Computer-aided design of alloys is becoming increasingly useful, replacing the completely experimental approach. The computer-aided approach significantly reduces the cost of alloy design and more easily leads to optimum properties by reducing the amount of experimentation. Design of high-strength, high-conductivity alloys is a

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CALPHAD-based design and preparation of

202319 · A novel precipitation strengthening Cu–Fe–Zr alloy was designed and prepared based on the results of calculation of the phase diagram. After solid solutionizing, rolling and aging at 450 °C for 1 h, the

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A high strength and high electrical conductivity bulk Cu

201731 · DOI: 10.1016/J.SCRIPTAMAT.2016.10.022 Corpus ID:9; A high strength and high electrical conductivity bulk Cu-Ag alloy strengthened with nanotwins @article{Zhang2017AHS, title={A high strength and high electrical conductivity bulk Cu-Ag alloy strengthened with nanotwins}, author={Bin Zhang and Nairong Tao and Ke Lu},

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