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E-grāmata: Joining Technology of gamma-TiAl Alloys

(University of Porto, Portugal), (University of Porto, Portugal), (University of Porto, Portugal)
  • Formāts: 178 pages
  • Izdošanas datums: 28-Jul-2017
  • Izdevniecība: CRC Press Inc
  • Valoda: eng
  • ISBN-13: 9781351647410
  • Formāts - EPUB+DRM
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  • Formāts: 178 pages
  • Izdošanas datums: 28-Jul-2017
  • Izdevniecība: CRC Press Inc
  • Valoda: eng
  • ISBN-13: 9781351647410

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TiAl alloys are widely used in the aerospace industry. This book focuses on the development of new technologies for the joining of TiAl alloys that result in sound bonds obtained in less demanding conditions than those handled by conventional techniques. It fully discusses joint processing as well as microstructural and mechanical characterization. Additionally, it summarizes the latest developments in the new approaches to the joining of TiAl alloys using advanced characterization techniques.

Preface v
Acknowledgements vii
List of Abbreviations
xiii
List of Figures
xv
List of Tables
xxiii
1 γ-TiAl Alloys
1(14)
1.1 Introduction
1(1)
1.2 Structure of γ-TiAl Alloys
2(4)
1.3 Properties of γ-TiAl Alloys
6(2)
1.4 Processing of γ-TiAl Alloys
8(3)
1.5 Concluding Remarks
11(1)
1.6 References
12(3)
2 Joining of γ-TiAl Alloys
15(15)
2.1 Introduction
15(1)
2.2 Fusion Welding
16(4)
2.3 Friction Welding
20(3)
2.4 Brazing
23(4)
2.5 Concluding Remarks
27(1)
2.6 References
28(2)
3 Diffusion Bonding of γ-TiAl Alloys
30(21)
3.1 Introduction
30(1)
3.2 Diffusion Bonding
31(4)
3.2.1 Diffusion Bonding Parameters
32(2)
3.2.2 Interdiffusion in γ-TiAl Intermetallics
34(1)
3.3 Diffusion Bonding of γ-TiAl Alloys
35(13)
3.3.1 Diffusion Bonding of γ-TiAl Alloys using Interlayers
44(4)
3.4 Concluding Remarks
48(1)
3.5 References
49(2)
4 Reactive Multilayers as Interlayer for Joining Processes
51(25)
4.1 Introduction
51(1)
4.2 Reactive Multilayers
52(19)
4.2.1 Ti/Al Reactive Multilayers
56(2)
4.2.2 Ni/Al Reactive Multilayers
58(7)
4.2.3 Ni/Ti Reactive Multilayers
65(6)
4.3 Concluding Remarks
71(1)
4.4 References
72(4)
5 Diffusion Bonding of γ-TiAl Alloys Assisted by Reactive Multilayers
76(23)
5.1 Introduction
76(1)
5.2 Diffusion Bonding of γ-TiAl Alloys using Ti/Al Reactive Multilayers
77(4)
5.3 Diffusion Bonding of γ-TiAl Alloys using Ni/Al Reactive Multilayers
81(9)
5.4 Diffusion Bonding of γ-TiAl Alloys using Ni/Ti Reactive Multilayers
90(6)
5.5 Concluding Remarks
96(2)
5.6 References
98(1)
6 Joining of γ-TiAl Alloys to Steel
99(20)
6.1 Introduction
99(1)
6.2 Joining of γ-TiAl Alloys to Steel
100(7)
6.3 Diffusion Bonding of γ-TiAl Alloys to Steel with Reactive Multilayers
107(9)
6.4 Concluding Remarks
116(1)
6.5 References
117(2)
7 Joining of γ-TiAl Alloys to Superalloys
119(12)
7.1 Introduction
119(1)
7.2 Joining of γ-TiAl Alloys to Superalloys
120(4)
7.3 Joining of γ-TiAl Alloys to Superalloys with Reactive Multilayers
124(5)
7.4 Concluding Remarks
129(1)
7.5 References
130(1)
8 Combination of Reactive Multilayers and Brazing Alloys for Improving Joining Processes
131(22)
8.1 Introduction
131(1)
8.2 NanoFoil®
132(4)
8.3 Joining Processes Assisted by the Combination of Reactive Multilayers and Brazing Alloys
136(2)
8.4 Joining of γ-TiAl Alloys using the Combination of Reactive Multilayers and Brazing Alloys
138(12)
8.4.1 Joining of γ-TiAl Alloys with NanoFoil®
138(4)
8.4.2 Joining of γ-TiAl Alloys Coated with Reactive Multilayers Combined with Brazing Alloys
142(8)
8.5 Concluding Remarks
150(2)
8.6 References
152(1)
Index 153
Sonia Luisa dos Santos Simoes, Filomena Maria da Conceicao Viana, Manuel Fernando Goncalves Vieira