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| 1 | Progress in additive manufacturing on new materials: A review显示文摘Recent efforts and advances in additive manufacturing(AM) on different types of new materials are presented and reviewed. Special attention is paid to the material design of cladding layers, the choice of feedstock materials, the metallurgical behavior and synthesis principle during the AM process, and the resulted microstructures and properties, as well as the relationship between these factors. Thereafter,the trend of development in the future is forecasted, including: Effects of the particles size and size distribution of powders; Approaches for producing fine microstructures; Opportunities for creating new materials by AM; Wide applications in reconditioning of damaged components; Challenges for deep understanding and applications of the AMed new materials. The idea of 'Develop Materials' or 'Create Materials' by AM is highlighted, but a series of scientific, technological and engineering problems remain to be solved in future. | Neng Li Shuai Huang Guodong Zhang Renyao Qin Wei Liu Huaping Xiong Gongqi Shi Jon Blackburn | 2019 | Journal of Materials Science & Technology2019,35,2: | 47 |
| 2 | Fabrication of W-Mo-Ti system flier-plate with graded impedance for generating quasi-isentropic compression显示文摘A fully dense W-Mo-Ti system flier-plate with graded impedance in its thickness direction was successfully fabricated by the method of powder metallurgy. The result of the impact experiment on a light gas gun showed that dynamic quasi-isentropic compression has been created. | SHEN Qiang ZHANG Lianmeng XIONG Huaping HUA Jinsong TAN Hua | 2000 | Chinese Science Bulletin2000,45,15: | 8 |
| 3 | Microstructure Evolution and Tensile Properties of Ti_3Al/Ni-based Superalloy Welded Joint显示文摘In the present work,the dissimilar joining of a Ti_3AI-based alloy to a Ni-based superalloy was attempted by gas tungsten arc(GTA) welding technology.Sound joints were successfully achieved by using a Cu—Ni alloy as filler material.According to X-ray energy dispersive spectroscopy and X-ray diffraction analysis results three transitional layers at the weld/Ti_3AI interface were verified as follows:Ti_2AINb phase dissolved with Cu and Ni;AI(Cu,Ni)_2Ti,(Cu,Ni)_2Ti and(Nb,Ti) solid solution;Cu-rich phase and a complex multi-element phase.The In718/weld interface is characterized by solid solutions of Ni,Cu,Cr,Fe and Nb.The average tensile strength of the as-welded joints at room temperature is 1 63 MPa,and after a post—weld heat treatment it is increased slightly to 177 MPa.The fracture occurred at the surfacial layer of the joined Ti_3AI base alloy,indicating that the Ti_2AINb layer dissolved with Cu and Ni is the weak link of the Ti_3AI/ln71 8 joint. | Bingqing Chen Huaping Xiong Bingbing Sun Siyi Tang Shaoqing Guo Xuejun Zhang | 2014 | Journal of Materials Science & Technology2014,30,7: | 7 |
| 4 | Laser Additive Manufacturing on Metal Matrix Composites: A Review显示文摘Important progresses in the study of laser additive manufacturing on metal matrix composites(MMCs)have been made.Recent efforts and advances in additive manufacturing on 5 types of MMCs are presented and reviewed.The main focus is on the material design,the combination of reinforcement and the metal matrix,the synthesis principle during the manufacturing process,and the resulted microstructures as well as properties.Thereafter,the trend of development in future is forecasted,including:Formation mechanism and reinforcement principle of strengthening phase;Material and process design to actively achieve expected performance;Innovative structure design based on the special properties of laser AM MMCs;Simulation,monitoring and optimization in the process of laser AM MMCs. | Neng Li Wei Liu Yan Wang Zijun Zhao Taiqi Yan Guohui Zhang Huaping Xiong | 2021 | Chinese Journal of Mechanical Engineering2021,34,3: | 4 |
| 5 | Research Progress of Refractory High Entropy Alloys:A Review显示文摘Owing to superior comprehensive performance than conventional superalloys at high temperature,refractory high entropy alloy(RHEA)is becoming a promising candidate for the next generation high-temperature material.Herein,contemporary aspects of corresponding development of RHEAs are reviewed to discuss various factors affecting the organization structure and service performance.It mainly covers alloying system and strengthening mechanism,the preparation method,plastic deformation and the related mechanism,as well as microstructure control by heat treatment.Firstly,the alloy systems and strengthening mechanism are introduced.This is followed by different preparation methods and the comparison of strengths and shortcomings based on different RHEAs.Then,hot deformation behavior and plastic deformation under different loadings are analyzed.Based on this,the influence of heat treatment on microstructures prior to and after the deformation is further summarized.Finally,some important research areas to be carried out in future are pointed out.This review will give a deep understanding of the effects of different factors on the service performance and provide scientific guide in designing RHEAs with improved performance. | Xiaochang Xie Neng Li Wei Liu Shuai Huang Xiaoyong He Qiuying Yu Huaping Xiong Enhui Wang Xinmei Hou | 2022 | Chinese Journal of Mechanical Engineering2022,35,6: | 4 |
| 6 | Microstructures and mechanical properties of Ti_3Al/Ni-based superalloy joints arc welded with Ti–Nb and Ti–Ni–Nb filler alloys显示文摘Dissimilar joining of Ti3Al-based alloy to Ni-based superalloy has been carried out using gas tungsten arc(GTA) welding technology with Ti–Nb and Ti–Ni–Nb filler alloys.The joint welded with the Ti–Nb filler alloy contained much less interfacial brittle phases than the one using the Ti–Ni–Nb filler alloy.The average room-temperature tensile strength of the joint welded with Ti–Nb was 202 MPa and the strength value of the one welded with Ti–Ni–Nb was 128 MPa.For both fillers,the weak links of the dissimilar joints were the weld/In718 interfaces.The presence of TiNi,TiNi3 and Ni3Nb intermetallic compounds in the joint welded with Ti–Ni–Nb induced microcracks at the weld/In718 interface and deteriorated the mechanical properties of the joint.And the adoption of the Ti–Nb filler alloy decreased the formation tendency of interfacial brittle phases to some extent and thus enhanced the tensile strength of the joint. | Bingqing Chen Huaping Xiong Bingbing Sun Siyi Tang Borui Du Neng Li | 2014 | Progress in Natural Science:Materials International2014,24,4: | 3 |
| 7 | Densification of W-Ni-Cu and W-Fe-Cu Alloys at 1573 K显示文摘The tungsten alloys with Ni-Cu and Fe-Cu additives were sintered at 1573 K for 1 h by hot-pressing method. It was found that the alloy relative density can be improved with the additionof Cu when Cu content is not very high, and W95Ni3Cu2 alloy with full density can be obtainedon the sintering condition. However, with the Cu content further increasing, the relative densitychange of W-Ni-Cu alloy and W-Fe-Cu alloy shows difFerent trends: the former tends to decreaseobviously, but the latter shows little change. According to the analysis results, the element Cuhas different effects on the activation capability of Ni and Fe during sintering of the tungstenalloys. | Xiong, Huaping Zhang, Lianmeng Shen, Qiang Yuan, Runzhang
| 1999 | Journal of Materials Science & Technology1999,15,1: | 3 |
| 8 | Fabrication of Mo Ti functionally graded material显示文摘Molybdenum alloys and titanium alloys were sintered at 1 473K for 1 h under a pressure of 30 MPa. It was found that the addition of Al can increase evidently the relative density of sintered Mo Fe alloys. The Fe Al additives are also suitable for the sintering of titanium alloys, and the Mo alloy and Ti alloy can be densified concurrently with the same additives 3%Fe 1.5%Al. The experimental results also showed that during the sintering of Mo Ti alloys the Fe Al sintering aids promoted the formation of Mo Ti solid solution, but the solid solution reaction occurred at the low sintering temperature of 1 473 K is inadequate. Finally, Mo Ti system functionally graded material has been successfully fabricated. Its density changed gradually from 9.52 g/cm 3 to 4.48 g/cm 3 in thickness direction. Such a material can be used in dynamic high pressure technology. | Xiong Huaping(熊华平) Zhang Lianmeng(张联盟) Shen Qiang(沈 强) Yuan Runzhang(袁润章) | 1999 | 中国有色金属学会会刊:英文版1999,9,3: | 3 |
| 9 | Joining of C_f/SiBCN composite with two Ni-based brazing fillers and interfacial reactions显示文摘C_f/SiBCN ceramic composite was joined using Ni-19Cr-10Si(BNi5) and Ni-33Cr-24Pd-3.5Si-0.5B filler alloys at 1170 °C for 10 min. Two kinds of Ni-based filler alloys exhibited good wettability on the C_f/SiBCN composite, with a contact angle of 13° and 4°, respectively. The microstructures of the brazed joints were investigated by electron-probe microanalysis(EPMA), and three-point bend test was conducted for the joints at room temperature. When being brazed with BNi5 filler alloy, no evident reaction layer was observed at the surface of the joined composite, and the joint microstructure was characterized by Ni_2Si matrix with scatteringly distributing mixture compounds of Cr_(23)C_6, Ni_2Si and CrB. While Ni-Cr-Pd(Si,B)brazing alloy was used, a Cr_(23)C_6 reaction layer with a thickness of 11 μm was formed at the surface of the base composite. In the central part of the brazed joint, the phases were composed of Ni(Cr,Si) solid solution and complex compounds including Pd_2Si,(Ni,Pd)_2Si and Ni-B. The strength of C_f/SiBCN joint brazed with BNi5 filler alloy was 62.9 MPa at room temperature, whereas that with Ni-Cr-Pd(Si,B) filler alloy was at the same level. | Wenwen Li Bo Chen Yi Xiong Huaping Xiong Yaoyong Cheng Wenjiang Zou | 2017 | Journal of Materials Science & Technology2017,33,5: | 2 |
| 10 | Microstructure and Property of AlN Joint Brazed with Au–Pd–Co–Ni–V Brazing Filler显示文摘An Au–Pd–Co–Ni–V brazing alloy was designed for Al N ceramic joining. Its wettability on Al N was studied with the sessile drop method. The results showed that the contact angle was decreased gradually with increasing temperature and the prolonging of holding time. Sound Al N/Al N joints were achieved with the brazing alloy at 1170 °C for 10 min. The microstructure of the Al N/Al N joints was examined by scanning electron microscopy(SEM). It was found that element V played the active role in the interfacial reaction between the ceramic and the brazing alloy. V reacted with N decomposed from Al N, resulted in the formation of V–N compound. Based on the energy-dispersive spectroscopy(EDS)and X-ray diffraction(XRD) analysis results, the V–N reaction product was verified as V2 N. The overall reaction during the brazing process can be described by the following equation: 2V + AlN + 2Pd = V2 N + Pd2 Al.The Al N/Al N joints brazed with the Au–Pd–Co–Ni–V brazing alloy exhibited three-point bend strength of 162.7 MPa at room temperature, and under the bend test the fracture of the joint occurred at the Al N ceramic substrate. | Bo Chen Huaping Xiong Yaoyong Cheng Wei Mao Shibiao Wu | 2015 | Journal of Materials Science & Technology2015,31,10: | 2 |
| 11 | Wetting behavior of Co based active brazing alloys on SiC and the interfacial reactions显示文摘 | Xiong Huaping Li Xiaohong Mao Wei | 2003 | Materials Letters2003,57,: | 1 |
| 12 | Joining of Si_3N_4 ceramic using PdCo(NiSiB)–V system brazing filler alloy and interfacial reactions显示文摘The wettability of V-active PdCo-based alloys on Si3N4ceramic was studied with the sessile drop method. And the alloy of Pd50.0–Co33.7–Ni4.0–Si2.0–B0.7–V9.6(wt%),was developed for Si3N4ceramic joining in the present investigation. The rapidly-solidified brazing foils were fabricated by the alloy Pd50.0–Co33.7–Ni4.0–Si2.0–B0.7–V9.6. The average room-temperature three-point bend strength of the Si3N4/Si3N4joints brazed at 1453 K for 10 min was 205.6 MPa,and the newly developed braze gives joint strengths of 210.9 MPa,206.6 MPa and 80.2 MPa at high temperatures of 973 K,1073 K and 1173 K respectively. The interfacial reaction products in the Si3N4/Si3N4joint brazed at 1453 K for10 min were identified to be VN and Pd2Si by XRD analysis. Based on the XEDS analysis result,the residual brazing alloy existing at the central part of the joint was verified as Co-rich phases,in which the concentration of element Pd was high up to 18.0–19.1 at%. The mechanism of the interfacial reactions was discussed. Pd should be a good choice as useful alloying element in newer high-temperature braze candidates for the joining of Si-based ceramics. | Huaping Xiong Bo Chen Yu Pan Wanlin Guo Wei Mao Qingsong Ma | 2014 | Progress in Natural Science:Materials International2014,24,1: | 1 |
| 13 | Effects of binders on dimensional accuracy and mechanical properties of SiC particulates preforms fabricated by selective laser sinte- ring显示文摘 | Xiong Huaping Xiong Bowen Yu Hua | 2013 | Composites Part B: Engineering2013,44,1: | 1 |
| 14 | Wetting behavior of Co based active brazing alloys on SiC and the interfacial reactions显示文摘 | Xiong Huaping Li Xiaohong Mao Wei Cheng Yaoyong | 2003 | Materials Letters2003,57,2223: | 1 |
| 15 | Wettability of Co-V,and PdNi-Cr-V system alloys on SiC ceramic and interfacial reactions显示文摘 | Xiong Huaping Chen Bo Kang Yansheng Mao Wei Kawasaki Akira Okamura Hiroshi Watanabe Ryuzo | 2007 | Scripta Materialia2007,56,2: | 1 |
| 16 | Joining of Si3N4/ Si3N4 with CuNiTiB Paste Brazing Filler Metals and Inteffacial Reactions of the Joints显示文摘 | Wan Chuangeng Xiong Huaping Zhou Zhenfeng | 1999 | Journal of Materials Sci- ence1999,34,: | 1 |
| 17 | Joining of Si~4dSi3N4 with CuNiTiB paste brazing filler metals and interracial reactions of the joints显示文摘 | Wan Chuangeng Xiong Huaping Zhou Zhenfeng | 1999 | Journal of Materials Science1999,34,: | 1 |
| 18 | Wettability of CuNi-Ti Alloys on Si_3N_4 and Interfacial Reaction Products显示文摘 | Chuangeng WAN Huaping XIONG and Zhenfeng ZHOU (Dept. of Materials Science and Engineering, Jilin University of Technology, Changchun 130025, China)(To whom correspondence should be addressed) | 1996 | Journal of Materials Science & Technology1996,12,3: | 1 |
| 19 | Liquid-phase alumi- nizing and siliconizing at the surface of a Ti60 alloy and improvement in oxidation resistance 显示文摘 | Xiong Huaping Wei Mao Ma Wenli | 2006 | Materials Science and Engineering A2006,433,2: | 1 |
| 20 | Progress in Nb-Si ultra-high temperature structural materials:A review显示文摘Nb-Si based alloys have the greatest potential to replace nickel-based superalloys and become a new gen-eration ultra-high temperature structural material with service temperature of 1200-1400℃ due to their high melting point,high stiffness,low density,and attractive specific mechanical properties at elevated temperatures.This article reviewed the recent progress in the development of Nb-Si based refractory al-loys.Special attention was paid to the property characteristics,preparation techniques,alloying effects,oxidation resistance and fabrication of Nb-Si based alloy components.Thereafter,the trend of develop-ment in the future was forecasted,including:Optimization of the composition and microstructure of Nb-Si based alloys to achieve a balance of mechanical properties;Comprehensive properties evaluation for Nb-Si based alloys to accumulate sufficient data for engineering applications;Development of practical preparation technology for Nb-Si based alloy components with complex shapes;New multilayer compos-ite coatings for Nb-Si based alloy;Joining technology of Nb-Si alloy to itself and to superalloy. | Wei Liu Shuai Huang Chengtong Ye Lina Jia Yongwang Kang Jiangbo Sha Bingqing Chen Yu Wu Huaping Xiong | 2023 | Journal of Materials Science & Technology2023,,18: | 0 |