Dissertation > Excellent graduate degree dissertation topics show
Superplasticity and Application Research of Superalloy GH4169
Author: YeHuLian
Tutor: WangGaoChao
School: Nanchang University of Aeronautics and
Course: Materials Processing Engineering
Keywords: superalloy GH4169 fine grain superplasticity
CLC: TG132.32
Type: Master's thesis
Year: 2009
Downloads: 467
Quote: 1
Read: Download Dissertation
Abstract
|
As a age hardening Ni-Cr-Fe-based wrought superalloy, GH4169 has stable structure property and excellent mechanical properties until 650℃, which has been dominant in the production of wrought superalloys. High intensity and good weldability are the outstanding advantage of this alloy and it is more widely used than ordinary superalloy. However, it is very difficult to process the alloy at room temperature and only can be formed by methods of forging、extrusion、welding、machining etc., and the manufacturing cost is very high. This limits the application of the alloy. With superplastic forming, the force of forming can reduce, the size of deformation can increase, and precision parts can be produced, so superplastic forming is an ideal process for less-deformable materials. The superplastic phenomenon of superalloys was found later than aluminum, titanium alloys. Moreover, the superplastic research and its application of Ni-base superalloy GH4169 are even more late. Therefore, it is meaningful to carry on the superplastic research of superalloy GH4169 and then instruct its engineering application.In this paper, the grain-refining treatment on superalloy GH4169 was carried out, and then the high temperature tensile tests by the methods of Maximum m value and deformation-induced superplasticity were implemented. The main results are as follows:1. As for the grain refining processe of superalloy GH4169, the best treatment in this paper is: forging heat deformation + 890℃×10hδ-phase precipitation treatment + 950℃×3h recrystallization annealing. The non-uniform microstructure of the alloy was eliminated by heat treatment and the equiaxial uniform small grains can be obtained. Theδ-phase precipitated would help to control the grain size of recrystallization annealing during the follow- up high temperature tensile test.2. After given grain-refining treatment, the elongation of the superalloy GH4169 has a significant improvement and the flow stress reduces, comparing with the original superalloy GH4169.3. The paper has carried out the high temperature tensile test on GH4169 at different temperatures. It indicated that this alloy has good superplasticity in a wide range of deformation temperatures (T=950℃~1020℃), the best deformation temperature is 950℃.4. The deformation-induced method tensile test has a certain degree of pre-tensile deformation that makes the grain size of superalloy GH4169 refining. Especially for the samples which have had heat treatment, the uniformly distributedδ-phase limit crystal boundary migration of recrystal grains, which promotes grain refining. Therefore, as to superalloy GH4169, the high temperature tensile test by the deformation-induced method is better than by the Maximum m method. The Max elongation reached 340% by the Maximum m method, whereas the deformation-induced method achieved 566%. Most of the strain rate sensitivity (m value) are between 0.15 and 0.4 and the corresponding strain rate changes from 2×10-4 to 6×10-4 s-1 When the high temperature tensile test is carried out by the Maximum m method.This paper has developed a feasible and effective fine grain processing technique for the superalloy GH4169 in theory and practice and successfully applied the Maximum m method and deformation-induced superplasticity method to this alloy. So this paper has broken a new path for the study on superplasticity of GH4169 and its application.
|
Related Dissertations
- Study on Laser Surface Modification of Two Kinds of Super-alloys,TG174.4
- Ti -containing nickel- base single crystal superalloy Re microstructure and properties of,TG132.32
- Trace elements Er and Zr alloying zinc alloy microstructure and properties of,TG131
- Study on the Microstructure and Stress Relaxation Behavior of INCONEL Alloy 783,TG132.32
- Controlled study of new iron-based alloy powder and oxygen content,TB383.3
- TiAl Alloys SPS sintering of Microstructure and High Temperature Oxidation,TF124.5
- Rare Earth La, Y Preparation and sintering behavior of ultrafine Mo powder,TF124.5
- Laser Direct Metal Deposition (DMD) of Ni-Base Superalloy and Its High Temperature Oxidation Resistance,TF124.39
- Research based on the depth -sensitive indentation nickel-base superalloy fatigue micromechanical properties,TG115.57
- Alloy microstructure and mechanical behavior of fine grain 93W-4.9Ni-2.1Fe,TG146.411
- Research on Recrystallization Behavior of X80 Pipeline in Hot Transmutation,TG111.7
- Research on the Control of Processing Quality When Cutting Nickel-Base Superalloyat High Speed,TG506.1
- Research on Fracture Properties and Fatigue Properties of Superalloys GH4169 Welded Joints,TG407
- Effect of Homogenizing Annealing on the Microstructures and Mechanical Properties in 7005 Aluminum Alloy,TG146.21
- Study on Weldability of Inconel601 and Clamping Fixture of Double P Combustion Tube,TG132.32
- Research on TMCP Process of a Grade Q390 Type HSLA Steel Plate,TG142.33
- Experimental Research on Ship Plate by Reducing Resources with Flexible Rolling Technology,TG335
- The Microstructure Evolution and Mechanic Properties of Superalloy GH4586B after Long-term Aging,TG166
- Effects of High Density Pulse Current on Microstructure and Mechanical Property of Nickel-base Superalloys,TG132.32
- Influence of Surface Recrystallization on Tensile and Stress Rupture Properties of DZ17G Superalloy,TG132.32
- Experemental Study on Shear Capacity of Reinforced Concrete Beam with 500MPa Hot Rolled Bars of Fine Grains,TU375.1
CLC: > Industrial Technology > Metallurgy and Metal Craft > Metallurgy and Heat Treatment > The alloy learn with a variety of properties of alloys > Special physical properties of alloys > Special thermal properties of alloys > Melting point alloys , refractory alloy , high temperature alloys
© 2012 www.DissertationTopic.Net Mobile
|