• Complex
  • Title
  • Keyword
  • Abstract
  • Scholars
  • Journal
  • ISSN
  • Conference
成果搜索
High Impact Results & Cited Count Trend for Year Keyword Cloud and Partner Relationship
Sort by:
Default
  • Default
  • Title
  • Year
  • WOS Cited Count
  • Impact factor
  • Ascending
  • Descending
< Page ,Total 1 >
Preparation of the close cross-section component of NiAl-based alloy by a novel combined sintering method SCIE
期刊论文 | 2024 , 327 | JOURNAL OF MATERIALS PROCESSING TECHNOLOGY
Abstract&Keyword Cite Version(2)

Abstract :

In this study, to overcome the bottleneck of forming NiAl for aerospace applications, a novel combined sintering method based on hot-press sintering, which divides the components into various parts and compacts them gradually, is proposed and studied. Two typical close cross-sectional components (tube -like components and conical tube components with flanges), which are highly demanding and more challenging to obtain for NiAl intermetallic, were prepared and analyzed in detail. Based on these results, both prepared components were fully dense. In addition, as shown by the bending tests, the interfacial strength is between the strengths of the base alloys on the two sides, which confirms the reliable bonding ability achieved by this method. For the conical tube component with flange, the ultimate tensile strength of the combined -sintered part in 1000 degree celsius is 406.7 +/- 3.2 MPa, and the ultimate strength of the pre -sintered part is 368.6 +/- 2.7 MPa, which are 39% and 26% higher than the strength of blade -like component prepared by casting and hot isostatic pressing (292 MPa). The proposed method discussed in our study can overcome the uneven density defects in HPS and achieve collaborative control of both the shape and performance when preparing a high height -to -thickness ratio or a complex -shaped close crosssection component.

Keyword :

Close cross-section component Close cross-section component Intermetallic compound Intermetallic compound Joining Joining Mechanical properties Mechanical properties NiAl-based alloy NiAl-based alloy Sintering Sintering

Cite:

Copy from the list or Export to your reference management。

GB/T 7714 Ning, Hanwei , Wang, Dongjun , Qin, Shaohua et al. Preparation of the close cross-section component of NiAl-based alloy by a novel combined sintering method [J]. | JOURNAL OF MATERIALS PROCESSING TECHNOLOGY , 2024 , 327 .
MLA Ning, Hanwei et al. "Preparation of the close cross-section component of NiAl-based alloy by a novel combined sintering method" . | JOURNAL OF MATERIALS PROCESSING TECHNOLOGY 327 (2024) .
APA Ning, Hanwei , Wang, Dongjun , Qin, Shaohua , Zhao, Jie , Wei, Wenqing , Liu, Gang . Preparation of the close cross-section component of NiAl-based alloy by a novel combined sintering method . | JOURNAL OF MATERIALS PROCESSING TECHNOLOGY , 2024 , 327 .
Export to NoteExpress RIS BibTex

Version :

Preparation of the close cross-section component of NiAl-based alloy by a novel combined sintering method Scopus
期刊论文 | 2024 , 327 | Journal of Materials Processing Technology
Preparation of the close cross-section component of NiAl-based alloy by a novel combined sintering method EI
期刊论文 | 2024 , 327 | Journal of Materials Processing Technology
Impact Welding of Aluminum AA1060 and Copper T2 Sheets by Vaporizing Foil Actuator: Microstructure, Mechanical Properties, and Electrical Conductivity SCIE
期刊论文 | 2024 | JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE
Abstract&Keyword Cite Version(1)

Abstract :

In this work, the vaporizing foil actuator welding (VFAW) has been used for impact welding of aluminum AA1060 to copper T2 sheets. The microstructural feature, mechanical properties, and electrical conductivity of Al-Cu welded joints were investigated. The VFAW process was simulated by LS-DYNA to analyze the effect of impact velocity and angle. The evolution of the microstructure of the welding interface was revealed by smoothed particle hydrodynamics numerical simulation. The qualities of Al-Cu joints were evaluated by microstructure observations, lap shear tensile testing and resistance measurements. The results show that the Al-Cu joints have a flat welding interface at the discharge voltage of 8 kV, but the joints failed at the interface due to the residual Al2O3. Owing to the change in interfacial effective plastic strain and impact pressure, increasing the discharge voltage resulted in the transition of the interface waveform from flat to wavy, and the site of tensile failure changed from the welding interface to the Al base metal. The results of element analysis showed that there was a transition zone consisting of Al-Cu intermetallic compounds at the interface. This transition zone would change from intermittent to continuous and become thicker after increasing the discharge voltage. Variations in discharge voltage can change the resistivity, thickness, and area of the welding region, which in turn affects the joint resistance.

Keyword :

Al-Cu joint Al-Cu joint electrical conductivity electrical conductivity interface microstructure interface microstructure mechanical property mechanical property vaporizing foil actuator welding vaporizing foil actuator welding

Cite:

Copy from the list or Export to your reference management。

GB/T 7714 Yao, Yujie , Deng, Jianghua , Ning, Hanwei et al. Impact Welding of Aluminum AA1060 and Copper T2 Sheets by Vaporizing Foil Actuator: Microstructure, Mechanical Properties, and Electrical Conductivity [J]. | JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE , 2024 .
MLA Yao, Yujie et al. "Impact Welding of Aluminum AA1060 and Copper T2 Sheets by Vaporizing Foil Actuator: Microstructure, Mechanical Properties, and Electrical Conductivity" . | JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE (2024) .
APA Yao, Yujie , Deng, Jianghua , Ning, Hanwei , Lv, Yichao , Fan, Zhisong . Impact Welding of Aluminum AA1060 and Copper T2 Sheets by Vaporizing Foil Actuator: Microstructure, Mechanical Properties, and Electrical Conductivity . | JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE , 2024 .
Export to NoteExpress RIS BibTex

Version :

Impact Welding of Aluminum AA1060 and Copper T2 Sheets by Vaporizing Foil Actuator: Microstructure, Mechanical Properties, and Electrical Conductivity Scopus
期刊论文 | 2024 | Journal of Materials Engineering and Performance
A Novel Method for Preparing Intermetallics/Superalloy Dissimilar Materials Using Current Sintering of Metallic Powders SCIE
期刊论文 | 2023 , 25 (23) | ADVANCED ENGINEERING MATERIALS
Abstract&Keyword Cite Version(3)

Abstract :

Herein, a novel method is proposed to prepare the multimaterial composite component for aerospace applications using the current sintering. Two representative high-temperature structural materials, the new potential intermetallic NiAl and the widely used Ni-based superalloy K4202, have been employed to achieve the target. As shown by the results, a clean interface with almost no defects is successfully obtained in NiAl/K4202 alloy. Nevertheless, the existence of a continuous Cr(Mo) phase along the region leads to an insufficient bonding ability. To optimize the interfacial microstructure, a Ni foil is employed as the interlayer. The results indicate that the interlayer can hinder the intense diffusion of elements and prevent the abnormal growth of Cr(Mo) phases, which result in a considerable improvement of interfacial properties. A novel method is proposed to prepare NiAl-based intermetallics/K4202 superalloy dissimilar materials using the solid-state sintering-joining method. A clean interface with no defects is obtained in NiAl/K4202 material. Nevertheless, the existence of a continuous Cr(Mo) phase along the region leads to insufficient bonding. A Ni foil is used as the interlayer, which improves the interfacial strength. The relationship between the property and microstructure of the interface has been revealed.image (c) 2023 WILEY-VCH GmbH

Keyword :

intermetallics intermetallics mechanical properties mechanical properties microstructures microstructures sintering sintering superalloys superalloys

Cite:

Copy from the list or Export to your reference management。

GB/T 7714 Ning, Hanwei , Wang, Dongjun , Qin, Shaohua et al. A Novel Method for Preparing Intermetallics/Superalloy Dissimilar Materials Using Current Sintering of Metallic Powders [J]. | ADVANCED ENGINEERING MATERIALS , 2023 , 25 (23) .
MLA Ning, Hanwei et al. "A Novel Method for Preparing Intermetallics/Superalloy Dissimilar Materials Using Current Sintering of Metallic Powders" . | ADVANCED ENGINEERING MATERIALS 25 . 23 (2023) .
APA Ning, Hanwei , Wang, Dongjun , Qin, Shaohua , Zhao, Jie , Wei, Wenqing , Liu, Ze et al. A Novel Method for Preparing Intermetallics/Superalloy Dissimilar Materials Using Current Sintering of Metallic Powders . | ADVANCED ENGINEERING MATERIALS , 2023 , 25 (23) .
Export to NoteExpress RIS BibTex

Version :

A Novel Method for Preparing Intermetallics/Superalloy Dissimilar Materials Using Current Sintering of Metallic Powders EI
期刊论文 | 2023 , 25 (23) | Advanced Engineering Materials
A Novel Method for Preparing Intermetallics/Superalloy Dissimilar Materials Using Current Sintering of Metallic Powders Scopus
期刊论文 | 2023 , 25 (23) | Advanced Engineering Materials
A Novel Method for Preparing Intermetallics/Superalloy Dissimilar Materials Using Current Sintering of Metallic Powders
期刊论文 | 2023 , 25 (23) , n/a-n/a | Advanced Engineering Materials
10| 20| 50 per page
< Page ,Total 1 >

Export

Results:

Selected

to

Format:
Online/Total:60/10044208
Address:FZU Library(No.2 Xuyuan Road, Fuzhou, Fujian, PRC Post Code:350116) Contact Us:0591-22865326
Copyright:FZU Library Technical Support:Beijing Aegean Software Co., Ltd. 闽ICP备05005463号-1