Dissertation > Excellent graduate degree dissertation topics show

Study on the Heat-treatment of ZG0Cr16Ni5Mo Used on Hydraulic Turbine Blades

Author: SunYuLin
Tutor: GaoJiaCheng
School: Chongqing University
Course: Materials Science and Engineering
Keywords: Cr-Ni-Mo low-carbon martensitic stainless steel induced austenite δ-ferrite strain induced martensite
CLC: TG156
Type: Master's thesis
Year: 2004
Downloads: 256
Quote: 2
Read: Download Dissertation

Abstract


This paper mainly has five parts. First of all, it introduced the requirement for the performance of the hydraulic turbine blades materials and the actuality development of the hydraulic turbine blades materials in China. On the second, it presented the technical research on the widely used material of ZG0Crl6Ni5Mo, included heat-treatment test, mechanic properties test and microstructure analysis. On the third, with the test it educed the heat-treatment process of the ZG0Crl6Ni5Mo and applied in the actual manufacture. In the forth part, it mainly introduced the factors effect on the mechanical properties, included the heat-treatment and the microstructure. The emphases was placed on the induced Austenite, setted forth whose formation, characters, quantity and influence to the ZG0Crl6Ni5Mo. At last, it made a brief summarize on this useful material.Have read a lot of literature and datum, based on them, the author design this test, the microstructure of the low-carbon martensitic stainless steel of ZG0Crl6Ni5Mo was analyzed by using X-ray diffractometer, metallographic microscope, scanning electron microscope (SEM) and transmission electron microscope (TEM).The works proved that using the electrical oven refining can accurately control the chemical content and reduce the cast defects, which is the premise insurance for the blades’ quality, and justified heat-treatment process is the key to insure the quality of the blades, that is high temperature normalize with two times temper and the treatment time decided by the size of the blade. Both results of the mechanical properties test and the microstructure observation concluded that the induced austenite in ZG0Crl 6Ni5Mo has great effect on its property, which comes into being during the temper process and can be got at 10~ 15% in amount.Because the induced austenite dispersal among the plates of the tempered martensite with high disperity, it makes the steel has great thermal stability and mechanical unstability. The hydrogen atom is difficult to diffuse and concentrate in -ferrite, so the scattered induced austenite can prevent the hydrogen brittleness. The great thermal stability means that the steel can be kept unchanged when the temperature has great change, this is no doubt a quite advantage to weld. The mechanical unstability means that the strain can promote the formation of the martensite, this kind of formation behavior shall decrease the bad affect of the strain, that is to say, it is very good forbroken-hardness and resistance to cavitation erosion.To sum up, the low-carbon martensitic stainless steel has good comprehensive mechanical property , weldability, good ability to control the cracking, hydrogen brittleness and cavitation. Now the low-carbon martensitic stainless steel is widely used on large welded structure of hydro power plant, pump etc.

Related Dissertations

  1. The Research on Forming Performance and Corrosion Resistance of Cold Rolled Austenitic Stainless Steel Plates,TG335.5
  2. 304 austenitic stainless steel cold hardening and annealing softening,TG156.2
  3. Studies of Microstructures and Mechanical Properties for Ti, Zr-Based Biomedical Alloys,TG146.4
  4. Evolution of Microstructure in 304 Stainless Steel During Ratcheting Deformation,O346.3
  5. ZG06Cr13Ni4Mo Steel Heat Treatment on Microstructure and Properties of,TG161
  6. Study on the Subsurface Crack of Supporting Roller Made of Austempered Ductile Iron,TG156.3
  7. Study on Process of RE-boronizing for Q235 Steel and Boride Layer Anti-corosion Property in Aluminum Melt,TG156.87
  8. Carbon steel liquid plasma electrolytic carbonitriding research,TG156.8
  9. 40Cr steel solid research Boronizing,TG156.87
  10. Effects of Composition and Heat Treatment on Microstructure and Properties of Fe-C-B Alloy,TG156
  11. Research for Transverse Tension Distribution on Steel Strip in Continuous-annealing Furnace Based on ANSYS,TG156.2
  12. Mg-Al alloys of early aging process of analysis and the first principles and molecular kinetics of,TG156.92
  13. The Influence of Fe2+ on 45# Steel Loose Layer of Liquid Nitrogen,TG156.82
  14. Test and simulation study of the 7050 aluminum alloy spray quenching,TG156.3
  15. Of multistage solid solution heat treatment on the microstructure and properties of 7150 aluminum alloy,TG156.94
  16. Study on the Technics Structure and Performance of Compound Processing of Gas Multi-Elements Peneterting and Electroless Plating,TG156.8
  17. AC austenitic stainless steel surface pretreatment studies with low-temperature plasma nitriding,TG156.82
  18. Study on the Corrosive and Tribological Behavior of the Coating of Several Thermo-chemical in the Oil-well Output Liquid,TG156.8
  19. Effects of Original Structures on Microstructures and Mechanical Properties of Induction Heat-Treated 40CrNi2Mo Steel,TG156.31
  20. Effect of Grain Size on Behaviors of Solid Solution and Aging Treatment for AZ91 Alloy,TG156.92
  21. High strength B93 aluminum alloy bar solid solution with two-stage aging process,TG156.9

CLC: > Industrial Technology > Metallurgy and Metal Craft > Metallurgy and Heat Treatment > Heat treatment > Heat treatment process
© 2012 www.DissertationTopic.Net  Mobile