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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
81

Microsegregation and controlled solidification of magnesium-treated cast irons.

Riding, Allan Lance. January 1970 (has links)
No description available.
82

An evaluation of sampling techniques for the emission spectrochemical analysis of cast iron /

Yones, Mamdouh Mohamed. January 1980 (has links)
No description available.
83

Cast-Iron Facades in Texas

Giritz, Cheryl A. 12 1900 (has links)
In this limited survey, nineteenth-century cast-iron facades in Texas were recorded and compared to iron-fronted buildings in New York City. It was found that generally, the still existing buildings in Texas cities and towns were similar to those in New York in style but differed to the extent to which the cast-iron elements were used. It appears that nineteenth-century builders in Texas knew of New York trends in cast-iron but had definite regional preferences.
84

Thermal annealing of Fe₈₁C₁₄Si₅ network alloy. / 網狀合金的白鑄鐵的退火處理 / Thermal annealing of Fe₈₁C₁₄Si₅ network alloy. / Wang zhuang he jin de bai zhu tie de tui huo chu li

January 2008 (has links)
Siu, King Sang = 網狀合金的白鑄鐵的退火處理 / 蕭健生. / Thesis (M.Phil.)--Chinese University of Hong Kong, 2008. / Includes bibliographical references. / Abstracts in English and Chinese. / Siu, King Sang = Wang zhuang he jin de bai zhu tie de tui huo chu li / Xiao, Jiansheng. / Abstract --- p.i / 摘要 --- p.iv / Acknowledgments --- p.v / Table of contents --- p.vi / List of table captions --- p.viii / List of figure captions --- p.ix / Chapter Chapter 1 --- Introduction / Chapter 1.1 --- Composite Materials --- p.1 / Chapter 1.2 --- Nanostructured Material --- p.2 / Chapter 1.3 --- Typical Methods of Fabrication of Nanostructure Material --- p.3 / Chapter 1.4 --- Combination of the Ideas of Nanostructure and Composite --- p.4 / Chapter 1.5 --- Phase Separation --- p.5 / Chapter 1.6 --- Nucleation and Growth --- p.6 / Chapter 1.7 --- Spinodal Decomposition --- p.8 / Chapter 1.7.1 --- The Initiation of Spinodal Decomposition --- p.8 / Chapter 1.7.2 --- Dynamics of Spinodal Decomposition --- p.9 / Chapter 1.7.2.1 --- Classical Equation of Diffusion --- p.9 / Chapter 1.7.2.2 --- Factors Deterring Spinodal Decomposition and Formation of Spinodal Network --- p.10 / Chapter 1.7.3 --- Relationship between Wavelength of Spinodal Network and Undercooling --- p.11 / Chapter 1.7.4 --- "Comparing Nucleation and Growth, and Spinodal Decomposition" --- p.11 / Chapter 1.8 --- How to achieve large undercooling --- p.12 / Chapter 1.9 --- Thermal annealing --- p.12 / Chapter 1.9.1 --- Recovery --- p.13 / Chapter 1.9.2 --- Recrystallization --- p.13 / Chapter 1.9.3 --- Grain Growth --- p.14 / Chapter 1.9.4 --- Equation of Ideal Grain Growth --- p.14 / Chapter 1.9.5 --- Factor that slow down grain growth --- p.15 / Chapter 1.10 --- Prospect of this Thesis Project --- p.16 / References --- p.17 / Figures --- p.19 / Chapter Chapter 2 --- Experimental Method / Chapter 2.1 --- Introduction --- p.26 / Chapter 2.2 --- Sample Fabrication --- p.26 / Chapter 2.3 --- Procedures for Preparing Thermal Annealing --- p.26 / Chapter 2.3.1 --- Preparation of Vacuum Environment --- p.26 / Chapter 2.3.2 --- Sealing Silica Tube --- p.27 / Chapter 2.4 --- Furnance --- p.27 / Chapter 2.5 --- Samples Analysis --- p.27 / Chapter 2.5.1 --- Optical Microscope --- p.27 / Chapter 2.5.2 --- Scanning Electron Microscope (SEM) Analysis --- p.27 / Chapter 2.5.3 --- Transmission Electron Microscope (TEM) Analysis --- p.28 / Chapter 2.5.3.1 --- Sample Preparation --- p.28 / Chapter 2.5.3.1.1 --- "Grinding, Polishing and Pouching" --- p.28 / Chapter 2.5.3.1.2 --- Dimpling --- p.29 / Chapter 2.5.3.1.3 --- I on Milling --- p.29 / Chapter 2.5.3.2 --- Phase Identification --- p.30 / References --- p.31 / Figures --- p.31 / Chapter Chapter 3 --- Grain Growth in Fe81C17Si5 / Chapter 3.1 --- Abstract --- p.34 / Chapter 3.2 --- Introduction --- p.35 / Chapter 3.3 --- Experimental --- p.36 / Chapter 3.4 --- Result --- p.37 / Chapter 3.5 --- Discussion --- p.44 / References --- p.48 / Figures --- p.49 / Chapter Chapter 4 --- High temperature thermal annealing of Fe81C14Si5 network alloys / Chapter 4.1 --- Abstract --- p.74 / Chapter 4.2 --- Introduction --- p.75 / Chapter 4.3 --- Experimental --- p.76 / Chapter 4.4 --- Result --- p.77 / Chapter 4.5 --- Discussion --- p.83 / References --- p.86 / Figures --- p.87
85

Ductile white cast iron. / 可柔韌的白鑄鐵 / Ductile white cast iron. / Ke rou ren de bai zhu tie

January 2008 (has links)
Ho, Ching Man = 可柔韌的白鑄鐵 / 何靜雯. / Thesis submitted in: November 2007. / Thesis (M.Phil.)--Chinese University of Hong Kong, 2008. / Includes bibliographical references (leaves ). / Text in English; abstracts in English and Chinese. / Ho, Ching Man = Ke rou ren de bai zhu tie / He Jingwen. / Chapter Chapter 1: --- Introduction --- p.1 / Chapter 1.1 --- Introduction of Composites --- p.1 / Chapter 1.1.1 --- Dispersion-Strengthened composites --- p.2 / Chapter 1.1.2 --- True Particulate Composites --- p.2 / Chapter 1.1.3 --- Fiber-Reinforced Composites --- p.2 / Chapter 1.1.4 --- Laminar Composites --- p.3 / Chapter 1.2 --- Mechanical Properties of Metal Matrix Composites --- p.4 / Chapter 1.2.1 --- Stress-Strain Test --- p.4 / Chapter 1.2.2 --- "Stiffness, Strength and Ductility" --- p.4 / Chapter 1.2.3 --- Hardness --- p.5 / Chapter 1.3 --- Fabrication of Metal Matrix Composites --- p.5 / Chapter 1.3.1 --- Liquid ´ؤ´ؤ State Processing --- p.6 / Chapter 1.3.1.1 --- Infiltration Processes --- p.6 / Chapter 1.3.1.2 --- Dispersion Processes --- p.7 / Chapter 1.3.1.3 --- Spray Processes --- p.7 / Chapter 1.3.1.4 --- In - Situ Processes --- p.8 / Chapter 1.3.2 --- Solid - State Processing --- p.8 / Chapter 1.3.2.1 --- Diffusion Bonding --- p.8 / Chapter 1.3.2.2 --- Deformation Processing --- p.9 / Chapter 1.3.2.3 --- Deposition Techniques --- p.9 / Chapter 1.4 --- Fabrication of Metal Matrix Composites by Spinodal Decomposition --- p.10 / Chapter 1.4.1 --- Phase Transformation --- p.10 / Chapter 1.4.2 --- Nucleation and Growth --- p.12 / Chapter 1.4.2.1 --- Kinetics of Nucleation and Growth --- p.12 / Chapter 1.4.2.2 --- Phase Separation by Nucleation and Growth --- p.14 / Chapter 1.4.3 --- Spinodal Decomposition --- p.14 / Chapter 1.4.3.1 --- Phase Separation by Spinodal Decomposition --- p.14 / Chapter 1.4.3.2 --- The Diffusion Equation for Spinodal Decomposition --- p.15 / Chapter 1.4.4 --- Methods to obtain large undercooling --- p.17 / Chapter 1.5 --- Aim of This Project --- p.18 / Chapter Chapter 2: --- Experimental --- p.26 / Chapter 2.1 --- Preparation of fused silica tube --- p.26 / Chapter 2.2 --- Preparation of Sample --- p.26 / Chapter 2.2.1 --- Weighing and Alloying --- p.26 / Chapter 2.2.2 --- Fluxing --- p.27 / Chapter 2.3 --- Slow Cooling --- p.28 / Chapter 2.4 --- Microstructure Analysis --- p.28 / Chapter 2.4.1 --- Optical Microscope (OM) Analysis --- p.28 / Chapter 2.4.2 --- Sample Preparation for Scanning Electron Microscope (SEM) Analysis --- p.29 / Chapter 2.4.3 --- Sample Preparation for Transmission Electron Microscope (TEM) Analysis --- p.29 / Chapter 2.4.3.1 --- Specimen Requirement --- p.29 / Chapter 2.4.3.2 --- "Cutting, Grinding and Polishing" --- p.30 / Chapter 2.4.3.3 --- Ion Milling --- p.31 / Chapter 2.5 --- Microstructure Characterization by TEM --- p.31 / Chapter 2.5.1 --- Indexing Diffraction Pattern --- p.31 / Chapter 2.5.2 --- Energy Dispersive X-Rav (EDX) Analysis --- p.32 / Chapter 2.6 --- Mechanical Properties --- p.33 / Chapter 2.6.1 --- Hardness Testing --- p.33 / Chapter 2.6.2 --- Compression Testing --- p.33 / Chapter 2.7 --- Characterizations of Non-spinodal Samples --- p.34 / Chapter Chapter 3: --- Study of the Relationship between Microstructures and Undercooling of Fe81C14Si5 --- p.41 / Chapter 3.1 --- Abstract --- p.41 / Chapter 3.2 --- Introduction --- p.42 / Chapter 3.3 --- Experiment --- p.42 / Chapter 3.4 --- Results --- p.44 / Chapter 3.5 --- Discussion --- p.46 / Chapter 3.6 --- Conclusion --- p.46 / Chapter Chapter 4: --- Ductile white cast iron --- p.56 / Chapter 4.1 --- Abstract --- p.56 / Chapter 4.2 --- Introduction --- p.57 / Chapter 4.3 --- Experimental --- p.58 / Chapter 4.4 --- Results --- p.60 / Chapter 4.5 --- Discussions --- p.66
86

Magnesium vapour interactions with molten pig iron

Irons, Gordon A., 1950- January 1975 (has links)
No description available.
87

Effect of molding aggregates on shrinkage defects in hite iron T-plate castings

Faro, Alfred Thomas, January 1967 (has links)
Thesis (M.S.)--University of Wisconsin--Madison, 1967. / eContent provider-neutral record in process. Description based on print version record. Includes bibliographical references.
88

The effect of casting geometry on white iron casting defects

Mertz, John Marshall, January 1969 (has links)
Thesis (M.S.)--University of Wisconsin--Madison, 1969. / eContent provider-neutral record in process. Description based on print version record. Includes bibliographical references.
89

The effect of manganese, molybdenum and titanium on the carbide of Ductile cast iron

Wang, Yeou-Hsin. January 1984 (has links)
Thesis (M.S.)--University of Wisconsin--Madison, 1984. / Typescript. eContent provider-neutral record in process. Description based on print version record. Includes bibliographical references (leaves 93-98).
90

The effects of various mold aggregate variables and the related influences on the linear contraction of the white iron castings

Sawkar, Arun Ramakant, January 1967 (has links)
Thesis (M.S.)--University of Wisconsin--Madison, 1967. / eContent provider-neutral record in process. Description based on print version record. Includes bibliographical references.

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