The volume fraction of δ-ferrite and the grain size of a standard 1.4307 (AISI 304L) steel were varied independently to investigate their influence on hydrogen environment embrittlement. The chemical composition of the steel was kept constant. This study examines the relationship between microstructural properties and the results of …
بیشترIt was found that the corrosion behavior of AISI 304L deep rolled components is related to combined factors (surface roughness, strain-induced martensite, microhardness, residual stress). Despite ...
بیشترAISI 304 stainless steel (UNS S30400) is the most widely used stainless steel, containing 18-20% Cr and 8-10.5% Ni, and also known as 18-8 stainless steel. SS 304 is non …
بیشترStainless steel type 1.4307, also known as grade 304L, is a versatile and durable specification of stainless steel. Widely used in the food industries, 304L stainless steel is a cost-efficient alternative to the AISI316L specification and is known for its outstanding weldability, corrosion-resistance properties, and suitability for use in both hot- and cold- …
بیشترThe effects of deep rolling parameters, particularly, work speed and cooling conditions (dry and cryogenic) on the surface integrity of AISI 304L machined samples and their further impact on uniform and localized corrosion behavior in chloride environment were experimentally investigated in this work. The electrochemical behavior of machined …
بیشترDifferences Between AISI 304 and AISI304L Steel. The main difference between these two grades of steel lies in their respective carbon contents; AISI304 contains more carbon than its low-carbon counterpart AISI304L. The increased amount of carbon in regular ASI304 gives it greater strength and hardness than ASI304L but also makes it …
بیشترThis work investigates the multiaxial notch fatigue of 304L stainless steel at room temperature and evaluates the life predictions made by using a local stress–strain approach. Circumferentially notched bars were submitted to fully reversed axial, torsional, and 90 $$^{circ }$$ ∘ out-of-phase nonproportional loading. The applied force and …
بیشتر· AISI 304L is the low carbon version of AISI 304 (0.08 %C) which may be susceptible to intergranular corrosion in certain corrosive media after it is welded or otherwise heated at temperatures between 430 and 860°C. · ...
بیشترAs brazed stainless steel components in service often have to withstand cyclic loads in corrosive environments, the corrosion fatigue properties of brazed joints have to be characterised. Application-relevant corrosion fatigue tests in corrosive media are extremely rare for brazed joints and cyclic deformation curves are barely investigated. In …
بیشترThe "L" in 304L can be interpreted as meaning extra-low carbon. The Chemical Composition of SS 304L is S 0.030, N 0.10, C 0.030, Cr 18.00/20.00, Mn 2.00, Ni 8.00/12.00, P 0.045 and Si zero.seventy five. 304L chrome steel offers a far better resistance to corrosion than Type 302. Trade Item EXW,FOB,CNF,CIF,CFR. Stock …
بیشترAISI 304and 304L (SS304L) are austenitic stainless steels, and also known as 18/8 stainless steel. This article will introduce the differences between …
بیشتر재료 설명. AISI 304는 향상된 가공성을 갖춘 오스테니틱 크롬-니켈 강철입니다. 이 등급은 대기 부식, 많은 유기 및 무기 화학 물질, 질산, 적당한 온도에서 의한 부식 용액 및 식음료와 같은 산을 산화시키는 다목적 범용 스테인레스 스틸입니다. 생산 기술로 인해 ...
بیشترmicrostructure and mechanical pro perties of AISI 304L stainless steel, J. Mater. Process. Technol. 210 (2010) 1017-1022. [5] H. Ue no, K.
بیشترLaser short-pulse modification of AISI 304L stainless steel surface and the influence the beam overlapping on the pitting corrosion resistance was examined by Pacquentin et al. [18]. The findings ...
بیشترIn the paper, there are described chemical compositions of passive surface layers formed on AISI 304 L (EN 1.4307) stainless steel after standard (EP50; i = 50 A/dm2) and high-current density ...
بیشترEn effet, l'acier inox 18/10 est constitué de 18% de Chrome et de 10% de Nickel tandis que l'AISI 304 présente un teneur de 18% en Chrome et de 8% en Nickel. D'autre part, ces matériaux sont également caractérisés par plusieurs autres éléments caractérisant sa qualité tels que le fer, le carbone, le silicium, l'azote, le ...
بیشتر2.2. Laser set up and process. Laser surface melting (LSM) was produced using a pulsed laser-fibre doped by Ytterbium (IPGphotonics ®) with a maximum power density of 5.3 × 10 7 W/cm 2.The laser beam output characteristics were as follows: a 1060 nm wavelength, a 140 ns pulse duration, a 20 kHz repetition rate.. The samples were …
بیشترThe increase in hardness of AISI 304L after application of DCT cannot be linked to a more effective transformation of retained austenite into martensite [11,15,36] or by higher solution annealing temperature, because the control with a higher selected temperature (1080 °C) has lower hardness value compared to tested DCT1.
بیشترA comprehensive analysis of the erosion–corrosion behavior of AISI 304L stainless steel immersed in 0.5 M NaCl solution with the addition of industrial tailing particles obtained from the copper mining industry is reported. From fundamental studies using combined measurements of potentiodynamic and weight loss techniques, the pure …
بیشترWeldability of stainless steels is perfect by using different welding methods in the various thickness. Dissimilar joint of 304L and 316L stainless steels is essential in some vacuum valve joints [14,15]. 316L has more Ni plus 2–3% molybdenum which causes higher corrosion resistance in comparison with 304L.
بیشترIm amerikanischen AISI System (American Iron and Steel Institute) kennt man unter den Nummern 304 und 304L folgende Stähle: 1.4301 – X5CrNI18-10 (AISI 304) 1.4307 – X2CrNiMo13-4 (AISI 304L) 1.4306 – X2CrNi19-11 (AISI 304L) Die Edelstahllegierungen AISI 304 und AISI 304L sind die bekanntesten und am meisten verwendeten Chrom …
بیشتردر این بازسازی چهره مسیح کاملا متفاوت از چهره اروپایی قبلی است در تصویر سازی اوترویک با کمک هوش مصنوعی مسیح دارای مو و رنگ چشم خاورمیانه ای است. حتی فرم بینی او نزدیک به مردم این مناطق است. با ...
بیشتر2.1. Materials. The austenitic stainless steel AISI 304L (X2CrNi18-9; 1.4307; DIN EN 10088-3, Thyssenkrupp Schulte GmbH, Essen, Germany) and the gold-base brazing alloy BAu-4 (Au 827, Au82Ni18, Umicore Technical Materials, Hanau, Germany), which was applied as a 50 µm amorphous brazing foil, were used to manufacture the …
بیشترHere, we explain the difference between two common types found on the market — 304 and 304L. Type 304 Stainless Steel Type 304 is the most widely used …
بیشتر304 AISI 304L AISI Типичн Min Типичн Min Rp m Предел прочности (при растяжении), N/mm2 600 515 590 485 Rp0,2 Предел Упругости, (0.2 %), (текучесть), N/mm2 310 205 310 170 A5
بیشترAustenitic stainless steel 304L (AISI 304L) possesses excellent forming and welding characteristics, which has led to its broad application in industries such as automotive, shipbuilding and marine, …
بیشترFriction welding technique is adopted to join the dissimilar metals of AISI 304L and Ti-6Al-4V, their chemical compositions and mechanical properties are shown in tables 1 and 2 respectively. The welding parameters and design approaches were given in table 3.The friction welding machine (capacity of the continuous driving load is 60 tons) is …
بیشتر1.2 Aço Inox 304L O aço inox 304L é uma variante de baixo teor de carbono do aço inox 304. A principal diferença entre os dois materiais é que o 304L possui um teor máximo de carbono de 0,03%, …
بیشتر2.1 Details of Base metal and Consumables Used. Austenitic stainless steel plates of 12 mm thickness conforming to ASTM A 240 Type 304L (Ref 19) with other supplementary qualification, such as controlled chemistry, inclusion rating, IGC Pr C as per ASTM A 262 (Ref 20) & ultrasonic testing using angle and normal beam inspection as …
بیشترIn this study, the steel AISI 304L, a standard austenitic stainless steel, was chosen. One industrial filler metal BNi-5a® (Ni19Cr7.5Si1.5B, wt%) and two different rapidly solidified filler metal foils based on NiCrSiB system were produced to investigate the influence of the chromium and molybdenum content on the corrosion resistance.
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