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[PDF] Top 20 Surface characterization of austenitic stainless steel 304L after different grinding operations

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Surface characterization of austenitic stainless steel 304L after different grinding operations

Surface characterization of austenitic stainless steel 304L after different grinding operations

... However, stainless steels are commonly recognized as materials difficult to machine because of their high toughness, high work hardening rate, and low thermal ...the surface finish and reduces tool life ... See full document

14

Characterization of Gas Nitrided 304L Stainless Steel

Characterization of Gas Nitrided 304L Stainless Steel

... the surface adjacent region of the component, as this is usually the location of most severe ...thermochemical surface treatment whereby Nitrogen is introduced into the surface of the solid metal by ... See full document

8

Optimization of magneto rheological fluid assisted cylindrical surface finishing parameters for machining AISI 304L austenitic stainless steel

Optimization of magneto rheological fluid assisted cylindrical surface finishing parameters for machining AISI 304L austenitic stainless steel

... control surface quality. Experiments were conducted on austenitic stainless steel AISI 304 L and it is observed that by decreasing magnetic field strength, the surface roughness ... See full document

8

Microstructural Characterization and Pits Morphology Analysis on Austenitic Stainless Steel Aisi 304

Microstructural Characterization and Pits Morphology Analysis on Austenitic Stainless Steel Aisi 304

... polished surface. Factors that establish the pits growth in the AISI 304 stainless steel were determined by means of vertical sectioning at low load and rotation speed, then grinding and ... See full document

9

The Role of Welding in the Manufacture of the Steam Generators for the Krško Nuclear Power Plant

The Role of Welding in the Manufacture of the Steam Generators for the Krško Nuclear Power Plant

... internal surface of the head was ...using different procedures. The largest internal surface, having the shape of a hemisphere and designated with number 002 ...an austenitic ... See full document

19

Prediction of surface roughness in low speed turning of AISI316 austenitic stainless steel

Prediction of surface roughness in low speed turning of AISI316 austenitic stainless steel

... of different cutting fluids on the wear and the surface roughness when turning AISI 304 austenitic stainless ...316 austenitic stainless steels using CVD multi-layer coated ... See full document

19

Influence of cutting environments on surface integrity and power consumption of austenitic stainless steel

Influence of cutting environments on surface integrity and power consumption of austenitic stainless steel

... better surface finish and improved tool life when comparing it to a dry cutting process The cooling process usually uses liquid nitrogen as is a fluid which can cause rapid freezing, it absorbs the heat from the ... See full document

25

Effect of shot peening on hardening and surface roughness of nitrogen austenitic stainless steel

Effect of shot peening on hardening and surface roughness of nitrogen austenitic stainless steel

... 316L austenitic stainless steel and noticed that the material developed the rich corrosion resistive ...316 stainless steels filters sintered in nitrogen–hydrogen ...The austenitic ... See full document

9

Evaluation of combined hardening model in ratcheting behavior of pressurized piping elbows subjected to in-plane moments

Evaluation of combined hardening model in ratcheting behavior of pressurized piping elbows subjected to in-plane moments

... Recent experimental and numerical progress of the structural ratcheting for various piping components have been reviewed in reference [21]. Chen et al. [16,17,21] experimentally studied multiaxial ratcheting for ... See full document

15

Static and fatigue behavior of plug-welded dissimilar metal welds between carbon steel and austenitic stainless steel with different thicknesses

Static and fatigue behavior of plug-welded dissimilar metal welds between carbon steel and austenitic stainless steel with different thicknesses

... was guaranteed, hole diameter of 8 mm was designated as the critical hole diameter which ensured the reliability of plug-welded dissimilar metal between 3-mm-thick car- bon steel and stainless steel ... See full document

6

Creep-Fatigue   Crack Growth of an Axisymetric Surface Flaw in a Welded Junction under Thermal   Loading

Creep-Fatigue Crack Growth of an Axisymetric Surface Flaw in a Welded Junction under Thermal Loading

... Experimental results, on thick tube made of 316L (N) austenitic stainless steel and initial surface flaw located either in a circumferential welded joint or in ba[r] ... See full document

7

Toward consistent fatigue crack initiation criteria for 304L austenitic stainless steel under multi-axial loads

Toward consistent fatigue crack initiation criteria for 304L austenitic stainless steel under multi-axial loads

... the 304L stainless steel under multi- axial fatigue loadings using a reference curve identified from the experimental data of standard uni-axial fatigue tests is ...the 304L stainless ... See full document

10

Diode laser welding of stainless steel 304L

Diode laser welding of stainless steel 304L

... The penetration of the melt runs was measured from etched cross-sections (Figure 5). The penetration increased with laser power and decreased with welding velocity, in line with an increase in heat input (Figure 6). The ... See full document

20

Fatigue properties of dissimilar metal laser welded lap joints

Fatigue properties of dissimilar metal laser welded lap joints

... welding austenitic and duplex stainless steel to zinc-coated mild steel, more specifically ...zinc-coated steel are addressed and overcome with regard to dissimilar metal lap joints ... See full document

372

EBSD characterization of cryogenically rolled type 321 austenitic stainless steel

EBSD characterization of cryogenically rolled type 321 austenitic stainless steel

... Crystallographic relationship between the austenite and martensite phases in the martensite-rich region with a crystallographic orientation close to 25/55;0;0 on a the overall grain [r] ... See full document

20

Effect of Additional Minor Elements on Accumulation Behavior of Point Defects under Electron Irradiation in Austenitic Stainless Steels

Effect of Additional Minor Elements on Accumulation Behavior of Point Defects under Electron Irradiation in Austenitic Stainless Steels

... 316 austenitic stainless steel as a base alloy and type 316 austenitic stainless steels modi fi ed with vanadium (V) or zirconium (Zr) additions were used to perform evaluations from the ... See full document

5

Effect of Surface Deposits on Nitriding Layer Formation of Active Screen Plasma Nitriding

Effect of Surface Deposits on Nitriding Layer Formation of Active Screen Plasma Nitriding

... sample surface and very fine particles in the deposited layer resulted in the oxidation of much grain ...the surface region consisted of the depos- ited layer on the top followed by the nitriding layer ... See full document

5

Analysis of Material Removal Rate based on Full Factorial Design of Turning on Hardened Mild Steel of Grade AISI 4340

Analysis of Material Removal Rate based on Full Factorial Design of Turning on Hardened Mild Steel of Grade AISI 4340

... high surface finish, high production rate, Chip formation, less tool wear on the cutting tools, economy of machining in terms of cost saving and increase of the performance of the product with reduced ... See full document

5

Effect of Cutting Parameters on Surface Quality of AISI 316 Austenitic Stainless Steel in CNC Turning

Effect of Cutting Parameters on Surface Quality of AISI 316 Austenitic Stainless Steel in CNC Turning

... which is designed with three levels of turning parameters. The Analysis of Means (ANOM) and Analysis of Variance (ANOVA) were carried out to determine the optimal parameter levels and obtain the level of importance of ... See full document

8

Active Hydroxyl Groups on Surface Oxide Film of Titanium, 316L Stainless Steel, and Cobalt Chromium Molybdenum Alloy and Its Effect on the Immobilization of Poly(Ethylene Glycol)

Active Hydroxyl Groups on Surface Oxide Film of Titanium, 316L Stainless Steel, and Cobalt Chromium Molybdenum Alloy and Its Effect on the Immobilization of Poly(Ethylene Glycol)

... the surface oxide films of a commercially pure titanium, cp-Ti, a type 316L austenitic stainless steel, SS, and a cobalt-chromium-molybdenum alloy, Co-Cr-Mo, were evaluated using X-ray ... See full document

7

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