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Dissertations / Theses on the topic 'Physical Properties of Stainless Steel Powder'

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1

Clitheroe, Linda Suzanne. "The physical and microstructural properties of peened austenitic stainless steel." Thesis, University of Manchester, 2011. https://www.research.manchester.ac.uk/portal/en/theses/the-physical-and-microstructural-properties-of-peened-austenitic-stainless-steel(2576543d-5d47-4a41-9490-09eb1caf7204).html.

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Surface treatments used to improve the life of a material known as peening are already extensively used in industry. The main aim of peening is to introduce compressive resiudal stress to the surface and subsurface of a metallic material, however literature also includes a number of microstructural and mechanical effects that peening introduces to a material when the compressive residual stress is established. The aim of this dissertation is compare and contrast the mechanical and microstructural effects of a current industrial peening method called shot peening, with three new increasingly co
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2

Smuk, Olena. "Microstructure and properties of modern P/M super duplex stainless steels." Doctoral thesis, KTH, Materials Science and Engineering, 2004. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-3758.

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3

Roos, Stefan. "Process Development for Electron Beam Melting of 316LN Stainless Steel." Licentiate thesis, Mittuniversitetet, Institutionen för kvalitets- och maskinteknik, 2019. http://urn.kb.se/resolve?urn=urn:nbn:se:miun:diva-37840.

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Additive manufacturing (AM) is a technology that inverts the procedure of traditional machining. Instead of starting with a billet of material and removing unwanted parts, the AM manufacturing process starts with an empty workspace and proceeds to fill this workspace with material where it is desired, often in a layer-by-layer fashion. Materials available for AM processing include polymers, concrete, metals, ceramics, paper, photopolymers, and resins. This thesis is concerned with electron beam melting (EBM), which is a powder bed fusion technology that uses an electron beam to selectively mel
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4

JANDAGHI, MOHAMMADREZA. "Development of the additively manufactured stainless steel 316L and AlSi10Mg alloys by in situ alloying and post-process treatment." Doctoral thesis, Politecnico di Torino, 2023. https://hdl.handle.net/11583/2976602.

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5

Kurian, Sachin. "Process-Structure-Property Relationship Study of Selective Laser Melting using Molecular Dynamics." Thesis, Virginia Tech, 2020. http://hdl.handle.net/10919/104115.

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Selective Laser Melting (SLM), a laser-based Additive Manufacturing technique has appealed to the bio-medical, automotive, and aerospace industries due to its ability to fabricate geometrically complex parts with tailored properties and high-precision end-use products. The SLM processing parameters highly influence the part quality, microstructure, and mechanical properties. The process-structure-property relationship of the SLM process is not well-understood. In the process-structure study, a quasi-2D model of Micro-Selective Laser Melting process using molecular dynamics is developed to inve
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6

TAHAEI, Ali. "Investigation on welding and corrosion properties of the UNS S32304 & UNS S32570 duplex stainless steels and development of Nickel-Tungsten Carbide hardfacing by Plasma Transferred Arc (PTA) process." Doctoral thesis, Università degli studi di Ferrara, 2016. http://hdl.handle.net/11392/2403215.

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Gli acciai inossidabili duplex presentano proprietà meccaniche, resistenza alla corrosione e tenacità superiori rispetto agli acciai inossidabili ferritici, austenitici e martensitici. L’ottimo bilanciamento delle loro proprietà è dovuto alla particolare microstruttura che è costituita da percentuali pressoché uguali di ferrite (δ) e di austenite (γ). L’austenite è responsabile della resistenza a corrosione e della tenacità, la ferrite fornisce l’elevata resistenza meccanica; grazie a questa combinazione di proprietà l’acciaio inossidabile duplex offre molti vantaggi rispetto agli acciai inoss
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7

WANG, WEN-FENG, and 王文峰. "Effects of additives on the sintering behavior and physical properties of austenitic stainless steel powders." Thesis, 1986. http://ndltd.ncl.edu.tw/handle/t3jfxb.

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8

Mishra, Tanvi. "Joining of Brass/Copper/Nickel with Stainless Steel by Powder Metallurgy Process." Thesis, 2016. http://ethesis.nitrkl.ac.in/9322/1/2016_MT_TMishra.pdf.

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Joining of dissimilar material is very attractive for many applications because of special performance requirements of materials in different areas like light-weight automotivebstructures, improving methods for energynproduction, creating next generation medical products and consumerndevices, and numerous other manufacturingnand industrial uses. Joining dissimilar materials by conventional welding processes have too many issues. One major problem is the direct change in properties ofjbase metals at the welding interface diminishes the quality of joints. In this joining method, two different me
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9

Chang, Ju-Chun, and 張茹鈞. "Microstructure and Mechanical Properties of 440C-NbC Stainless Steel Fabricated by Powder Metallurgy Process." Thesis, 2015. http://ndltd.ncl.edu.tw/handle/74211326110910352826.

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碩士<br>國立臺灣科技大學<br>機械工程系<br>103<br>AISI 440C is a high carbon martensitic stainless steel with excellent hardness, moderate corrosion resistance and good strength. Therefore, it&apos;s commonly used in industrial bearings and medical appliances which need both good wear resistance and corrosion resistance. In this study, a spray dried pre-alloyed 400C powder, alloyed with 1.5 wt% Nb, was uniaxially die-pressed, and sintered at temperature ranging from 1250°C to 1290°C in a vacuum furnace. Furthermore, a series heat treatment processes, including austenitizing temperature at 1040°C, N2 gas quenc
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10

Chen, Yu, and 陳渝. "Study on the Density and Product Properties of Stainless Steel Metal Powder Injection Molding Process." Thesis, 2015. http://ndltd.ncl.edu.tw/handle/8ypxgj.

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碩士<br>中原大學<br>機械工程研究所<br>103<br>Metal Injection Molding (MIM) is a near net shape molding technology which combines plastic injection molding characteristics and powder metallurgy properties. Since MIM involves widely process: granulating, molding design, injection molding, de-binding, sintering and secondary processing, it is hard to have stable quality in final product. Especially, the warpage defect usually appears after de-binding and sintering, which is difficult to remedy. This study aims to improve MIM green part quality in injection molding step, enhance mechanical properties, and incr
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11

Youseffi, Mansour, K. Y. Chong, and F. M. Jeyacheya. "Enhanced sintering and mechanical properties of 316L stainless steel with silicon additions sintering aid." 2002. http://hdl.handle.net/10454/4072.

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No<br>Alpha phase sintering, sinter hardening, and mechanical properties of prealloyed Fe-1·5Mo base powder with and without additions of elemental Si, ferrosilicon, and carbon under various process conditions have been investigated. Liquid paraffin, as a new lubricating agent, was found to be useful in reducing segregation, interparticle and die wall frictions, as well as reducing ejection forces and die and tool wear. It was found that addition of Si to the base powder enhanced the sintering process by stabilisation of the alpha-phase and formation of two kinds of liquid phase at ~1045 and ~
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12

Meng-Jung, Wu, and 吳孟融. "Effects of Silicon Powder Addition and Sigma Phase Precipitation on the Properties of Sintered 303LSC Stainless Steel." Thesis, 2005. http://ndltd.ncl.edu.tw/handle/17094152919207745046.

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碩士<br>南台科技大學<br>機械工程系<br>93<br>The objectives of this work are to investigate the effects of silicon powder addition and sintering temperature on the sinterability , mechanical properties , corrosion and oxidation resistance of sintered 303LSC stainless steels. Influence of vibratory ball-peening on the corrosion and oxidation resistance is also studies. The sinterability , mechanical properties and corrosion resistance are increased with increasing amount of the silicon powder addition. The improvement is resulted from the increasing ferrite content induced by introducing of more silicon powd
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13

Shie, Jing-wen, and 謝靜玟. "The Study of Structure and Physical Properties of 316L Stainless Steel Fiber for Electromagnetic Shielding." Thesis, 2012. http://ndltd.ncl.edu.tw/handle/49249194921249946451.

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博士<br>逢甲大學<br>纖維與複合材料學系<br>100<br>316L stainless steel has been widely used in daily life, medical, and industrial appliances. However, the crystal structures and physical properties change obviously when 316L stainless steel is being thinned from wire to fiber, especially its ferromagnetic properties. Therefore, there are three issues in this study: (1) The phase transformation of 316L stainless steel from wire to fiber; (2) The effect of crystallite size and magnetic anisotropy on the coercivity of 316L stainless steel fibers; and (3) Electromagnetic wave shielding using soft magnetic 316L s
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14

Tsai, Yu-Jin, and 蔡育晉. "Effects of Carbon Addition on Liquid Phase Sintering, Mechanical Properties, and Corrosion Behavior of Boron-containing Powder Metallurgy 410L Stainless Steel." Thesis, 2018. http://ndltd.ncl.edu.tw/handle/65ehre.

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碩士<br>國立臺北科技大學<br>材料科學與工程研究所<br>106<br>Liquid phase sintering (LPS) is an economical technique to promote densification of powder metallurgy material. Boron is the best element for liquid phase sintering of iron-based material. In this study, the effects of the boron and carbon elements, sintering temperature (1200℃、1225℃、1250℃、1275℃、1300℃), and sintering atmosphere (vacuum and hydrogen) on the LPS, mechanical performance, and corrosion properties of 410L+0.6 wt% B (ferrite) and 410L + 0.6wt% B + 0.13 wt% C (martensite) stainless steels were investigated. The results of thermal analysis indica
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15

Jyun-Sian, Liou, and 劉俊賢. "Studies on selective leaching properties of TiNiFe shape memory alloys and surface characteristics of the 316L stainless steel modified by ethylene vinyl acetate powder/chitosan composite films." Thesis, 2016. http://ndltd.ncl.edu.tw/handle/46151782634170561122.

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碩士<br>國立宜蘭大學<br>化學工程與材料工程學系碩士班<br>104<br>The first part of this study is to investigate the selective leaching and surface characteristics of Ti50Ni50-xFex(x = 1, 2, and 3) shape memory alloys using inductively coupled plasma mass spectrometry, X-ray diffractometry, electrochemical tests, and X-ray photoelectron spectroscopy. In our results, the concentrations of Ni and Fe ions selectively leached from each specimen were considerably higher than that of Ti ions. Electrochemical tests revealed a gradual deterioration in the corrosion resistance of Ti50Ni50-xFex SMAs as the Fe content in the all
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