Academic literature on the topic '316l(N)'

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Journal articles on the topic "316l(N)"

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Dalla Palma, Mauro. "Modelling of cyclic plasticity for austenitic stainless steels 304L, 316L, 316L(N)-IG." Fusion Engineering and Design 109-111 (November 2016): 20–25. http://dx.doi.org/10.1016/j.fusengdes.2016.03.064.

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Belgroune, Ahlam, Akram Alhussein, Linda Aissani, et al. "Effect of He and N2 gas on the mechanical and tribological assessment of SS316L coating deposited by cold spraying process." Journal of Materials Science 57, no. 8 (2022): 5258–74. http://dx.doi.org/10.1007/s10853-022-06950-1.

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AbstractIn this study, simulation and experimental methods were used to investigate the influence of cold spray conditions on AISI 316L stainless steel coatings. The effect of both helium and nitrogen gases used was investigated. The temperature, particle sizes of spraying powder, and distance from the nozzle throat to the impinging point were estimated by using the Kinetics Spray Solutions GmbH software. The 316L stainless steel (SS) coatings were examined by X-ray diffraction, Scanning Electron Microscopy and Energy Dispersive X-Ray Microanalysis. The tribological behavior was evaluated unde
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Ahmad Fikri, Agam Muarif, Rizka Mulyawan, and Nursakinah. "Analisis Tegangan Pada Bone Plate Stainless Steel 316L untuk Aplikasi Biomateria." Current Biochemistry 10, no. 1 (2023): 17–23. http://dx.doi.org/10.29244/cb.10.1.3.

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Biomaterial adalah material yang digunakan untuk mengganti struktur biologis yang hilang atau sakit. Material ini harus dapat diterima oleh tubuh. Salah satu biomaterial yang paling banyak digunakan untuk aplikasi bone plate adalah stainless steel 316L. Saat diaplikasikan pada tubuh pasien, material ini akan mendapatkan beban sejajar permukaan. Beban ini merupakan beban yang cukup dominan diterima oleh bone plate stainless steel 316L. Beban yang diterima bone plate stainless steel 316L akan berubah dan bervariasi. Sehingga perlu dilakukan simulasi tegangan degan memberikan gaya tekan pada bone
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Kumar, D. Harish, A. Somi Reddy, P. Parameswaran, et al. "Thermo-Mechanical Characterization of Laser Weld 316L(N) Stainless Steel." Mechanical Engineering Research 3, no. 1 (2013): 77. http://dx.doi.org/10.5539/mer.v3n1p77.

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316L(N) stainless steel is an austenitic stainless steel variety strengthened by nitrogen through solid solution hardening. The effects of nitrogen on the mechanical properties of 316L(N) SS have not been studied extensively in the past and is the study of current research. The nitrogen content when added to 316L stainless steel in the range 0.07 wt% - 0.21 wt% improves room temperature and high temperature mechanical properties. The loss in strength due to reduced carbon content in 316L(N) SS can be more or less compensated by the addition of nitrogen. Laser welded joints have been fabricated
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Noh, Inwoong, Jaehun Jeon, and Sang Won Lee. "A Study on Metallographic and Machining Characteristics of Functionally Graded Material Produced by Directed Energy Deposition." Crystals 13, no. 10 (2023): 1491. http://dx.doi.org/10.3390/cryst13101491.

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Directed energy deposition (DED) stands as a key process in metal additive manufacturing (AM) and offers the unique capability of creating functionally graded materials (FGMs). FGMs have garnered significant interest in high-value industries by advantages such as performance optimization, reducing material defects, and resolving joining issues. However, post-processing remains a crucial step, indicating a need for further research to understand the machinability of FGMs. This paper focuses on the characteristics analysis of fabricating and machining an FGM based on stainless steel 316L (SAE 31
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Qin, Wenbo, Jiajie Kang, Jiansheng Li, et al. "Tribological Behavior of the 316L Stainless Steel with Heterogeneous Lamella Structure." Materials 11, no. 10 (2018): 1839. http://dx.doi.org/10.3390/ma11101839.

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In this paper, the tribological behavior of 316L stainless steel with heterogeneous lamella structure (HLS), prepared through 85% cold rolling technology and subsequent annealing treatment (750 °C, 10 min), were conducted on a ball-on-disc tribometer under different normal loads in dry ambient air conditions. The morphologies, structures, and compositions of the raw and worn surfaces were analyzed by 3D surface profilometer, XRD, SEM, EDS and TEM. Based on this, the results showed that the HLS 316L stainless steel samples exhibited lower and more steady friction coefficients than coarse-graine
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Piskarev, P. Y., Alexander A. Gervash, S. A. Vologzhanina, Boris S. Ermakov, and A. M. Kudryavceva. "Study of the Bimetallic Joint CuCrZr/316L(N)." Materials Science Forum 1040 (July 27, 2021): 8–14. http://dx.doi.org/10.4028/www.scientific.net/msf.1040.8.

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In this work, a study of the cases of destruction of the CuCrZr / 316L (N) bimetallic joint (BMJ) obtained by diffusion welding under conditions of hot isostatic pressing (HIP) was carried out. The identified defects are cracks propagating in the BMJ zone in the corner zone of the mock-ups of the heat-sink elements (HE). The analysis of the causes of destruction of the BMJ was carried out and the factors leading to the weakening of the BMJ zone are analyzed. The analysis of the thermal and stress-strain state of the HE mock-up during the manufacturing process was carried out. The study of the
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Shastry, C. Girish, M. D. Mathew, K. Bhanu Sankara Rao, and S. D. Pathak. "Tensile deformation behaviour of AISI 316L(N) SS." Materials Science and Technology 23, no. 10 (2007): 1215–22. http://dx.doi.org/10.1179/174328407x226581.

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Zhao, Xiao. "Fatigue Properties of 316L Stainless Steel." Applied Mechanics and Materials 204-208 (October 2012): 3786–89. http://dx.doi.org/10.4028/www.scientific.net/amm.204-208.3786.

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The present paper deals with experimental studies on the tension-tension fatigue properties of 316L stainless steel by using a servo-valve controlled electro-hydraulic testing machine at room temperature. The low cycle fatigue properties of 316L stainless steel were studied and the initiation mechanisms of fatigue cracks were investigated and analyzed with scanning electron microscopy (SEM). Preliminary results indicate that the S-N curve of 316L stainless steel descends linearly in the low cycle regime and fatigue failure initiates from inclusions/defects on the specimen surface.
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Fikri, Ahmad Fikri. "Pemodelan Tegangan dan Regangan pada Bone Plate dengan Menggunakan Material Stainless Steel 316 L." Indonesian Journal of Multidisciplinary on Social and Technology 1, no. 3 (2023): 265–69. http://dx.doi.org/10.31004/ijmst.v1i3.211.

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Jumlah populasi dan kualitas hidup manusia terus bertambah sehingga membutuhkan teknologi yang lebih maju dalam menyelesaikan masalah hidupnya. Semakin banyaknya populasi manusia maka jumlah kendaraan dan pekerjaan konstruksi semakin banyak. Hal ini menjadikan kecelakaan kerja berupa patah tulang sering terjadi di masyarakat. Patah tulang merupakan penyakit traumatik yang umum terjadi pada manusia. Proses penyembuhan patah tulang bisa dilakukan dengan fiksasi yang tergantung pada stabilitas dan proses biologi pada tulang yang patah. Proses fiksasi membutuhkan alat bantu berupa bone plate. Seda
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Dissertations / Theses on the topic "316l(N)"

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Gentet, David. "Compréhension et modélisation du comportement mécanique cyclique anisotherme de l'acier austénitique AISI 316L(N)." La Rochelle, 2009. http://www.theses.fr/2009LAROS280.

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Le principal objet de ce travail de thèse est de proposer une modélisation mécanique du comportement cyclique de l'acier inoxydable austénitique AISI 316 L(N) à hautes températures (550-900K). Dans ce domaine, de nombreux phénomènes liés au vieillissement dynamique (DSA) et à la formation de structures de dislocation dipolaire apparaissent. Des essais isothermes et anisothermes en fatigue uni-axiale ont été conduits afin de vérifier certains points concernant les effets de la température sur le comportement mécanique. L'étude des boucles de chargement et l'observation des structures de disloca
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Moturu, Shanmukha Rao. "Characterization of residual stress and plastic strain in austenitic stainless steel 316L(N) weldments." Thesis, Open University, 2015. http://oro.open.ac.uk/54875/.

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Fusion welding processes commonly involve the localized input of intense heat, melting of dissimilar materials and the deposition of molten filler metal. The surrounding material undergoes complex thermo-mechanical cycles involving elastic and plastic deformation. This processing history creates large residual stress in and around the weld bead, which can be particularly detrimental in reducing the lifetime of fabricated structures, increasing their susceptibility to stress corrosion, fatigue and creep crack growth as well as reducing the fracture load. It is very important to have. a proper k
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Cheng, Sihan. "Développement de méthodes et d'analyses pour l'étude de la ténacité sur petites éprouvettes." Electronic Thesis or Diss., Université Paris sciences et lettres, 2024. http://www.theses.fr/2024UPSLM006.

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Les essais de ténacité permettent de mesurer les propriétés de résistance d'un matériau vis-à-vis de l'amorçage et de la propagation de fissure. La réalisation de ces essais nécessite l'utilisation d'éprouvettes suffisamment grandes afin de mesurer une propriété valide. Cependant, il existe de nombreux cas pour lesquels il n'est pas possible d'obtenir des éprouvettes de dimensions suffisantes. En combinant une approche expérimentale et la simulation, cette thèse vise à développer des méthodes de mesure de la ténacité d'un matériau ductile à l'aide de petites éprouvettes. Un acier 316L(N) a été
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Goncalves, Diogo. "Modélisation polycristalline du comportement élasto-viscoplastique des aciers inoxydables austénitiques 316L(N) sur une large gamme de chargements : application à l'étude du comportement cyclique à température élevée." Thesis, Sorbonne université, 2018. http://www.theses.fr/2018SORUS089/document.

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L’acier 316L(N) est le matériau de référence pour les structures du circuit primaire des réacteurs nucléaires de quatrième génération, en raison de leur résistance mécanique à la température de fonctionnement, de l’ordre de 550°C. La thèse a permis de développer un modèle polycristallin, capable de prédire le comportement de ces aciers, basé sur la description du glissement viscoplastique des dislocation à haute température, de mise en œuvre simple et avec l’identification d’un nombre de paramètres matériau limité. La démarche de modélisation a été progressive. Lors de la première étape, nous
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Han, Sihui. "Le comportement d'hystérésis des solides et sa description par un schéma à mémoire discrète : le cas des aciers inoxydables." Habilitation à diriger des recherches, 1985. http://tel.archives-ouvertes.fr/tel-00319507.

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Étude du comportement d'un acier inoxydable 316L et d'un Inconel 718 dans le cadre d'un schéma thermomécanique à mémoire discrète constitué d'une équation multivoque, d'un critère d'inversion et d'un algorithme. Analyse détaillée des propriétés du comportement d'hystérésis pure. Etude des modules tangents aux courbes de charge. Mise en évidence de la restauration des propriétés du matériau après inversion et de la non-existence d'une discontinuité elastique-plastique dans le diagramme contrainte-déformation. Description de l'écrouissage en déformation à partir d'une analyse de la microstructur
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Books on the topic "316l(N)"

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Lehmann, D. Evaluation of the Stress to Rupture and Creep Properties of Type 316L(N) Steel for Design Use: Nuclear Science and Technology: Nuclear Science and Technology [series]. European Communities / Union (EUR-OP/OOPEC/OPOCE), 1995.

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Book chapters on the topic "316l(N)"

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Ragavendran, M., M. Vasudevan, and M. Menaka. "Finite Element Modeling of Hybrid Laser-TIG Welding of Type 316L(N) Stainless Steel." In Lecture Notes on Multidisciplinary Industrial Engineering. Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-32-9072-3_22.

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Takagi Toshiyuki, Uchimoto Tetsuya, Ichihara Toshiaki, Yashima Kazumi, and Abe Toshihiko. "Development of an Ultrasonic Monitoring System using EMAT and Wireless Communication." In Studies in Applied Electromagnetics and Mechanics. IOS Press, 2010. https://doi.org/10.3233/978-1-60750-554-9-105.

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The aim of this research is to make a high performance EMAT, highly sensitive, with low electric power consumption and wireless data communication. For this purpose, we introduced the following new devices and techniques into the EMAT: 1) A high efficiency power supply circuit to generate a strong oscillating magnetic field in the excitation coil, and 2) Effective use of high quality noise reduction to increase S/N ratio of the received signal. This EMAT system detects fatigue cracks in thick austenitic stainless steel 316L specimens by angle beam inspection as well as detecting EDM slits by t
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Conference papers on the topic "316l(N)"

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Katsura, Ryoei, Yoshihide Ishiyama, Norikatu Yokota, et al. "Post-Irradiation Annealing Effects of Austenitic Stainless Steels in IASCC." In CORROSION 1998. NACE International, 1998. https://doi.org/10.5006/c1998-98132.

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Abstract Post-irradiation annealing effects on the thermal sensitization and IASCC recovery for highly irradiated types 304 and 316L stainless steels were investigated using EPR and SSR tests. Irradiated type 316L stainless steel (neutron fluence: 8x1025 n/m2, E>1MeV) was not sensitized and IGSCC susceptibility significantly was reduced to 7-0% at 400-700°C(x1h) from 23% at as-irradiated condition. Irradiated type 304 stainless steel (neutron fluence: 1.2x1026 n/m2, E>1MeV) was more easily sensitized than unirradiated material and IGSCC susuceptibility was reduced to 62-45% at 40
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Ozturk, Bahri, John J. Dunn, and John F. Grubb. "A New Lean Austenitic Alloy with Comparable Properties to Type 316L SS." In CORROSION 2009. NACE International, 2009. https://doi.org/10.5006/c2009-09374.

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Abstract A new, lean, molybdenum-containing austenitic stainless steel with lower nickel and molybdenum content has been developed. This alloy, currently identified as ATI 216HP™, has properties comparable to Type 316L stainless steel, and was developed to be used in the environments where Type 316L currently is used. In the absence of a UNS designation assignment, the alloy is identified as S216XX alloy in this paper. An UNS number for this alloy will be obtained later. The composition of S216XX alloy (nominally 18%Cr, 4.5% Ni, 5.0% Mn, 1.0 %Mo and 0.19% N, balance Fe) provides this alloy wit
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Covino, Bernard S., James H. Russell, Gordon R. Holcomb, and Sophie J. Bullard. "Localized Corrosion of a High Nitrogen Stainless Steel: N-Mo Synergism." In CORROSION 1997. NACE International, 1997. https://doi.org/10.5006/c1997-97416.

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Abstract A series of twelve austenitic stainless steels with a composition range of Fe-22Cr-5Ni-5Mn-(1-5)Mo-(0-0.7)N were studied for resistance to localized corrosion in a deaerated 3.5 wt. % NaCl solution. Test temperatures ranged from 30 to 97°C. Results are compared to those of 304 and 316L stainless steel. The potentiodynamic polarization technique was used to determine the critical pit nucleation and protection potentials, and the potentiostatic cyclic thermometry technique was used to determine the critical pitting temperature. Results using the potentiodynamic polarization technique ha
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Grubb, John F., Bahri Ozturk, David S. Bergstrom, and John J. Dunn. "Properties of a New Lean Duplex Alloy." In CORROSION 2010. NACE International, 2010. https://doi.org/10.5006/c2010-10342.

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Abstract A new, lean duplex stainless steel with low nickel content has been developed. This alloy, UNS S82011, has mechanical and corrosion properties superior to Type 304L stainless steel, and was developed to be used as a high-strength substitute for Type 304L stainless steel. In some environments it shows corrosion resistance as good as Type 316L stainless steel. The composition of S82011 alloy (nominally 21%Cr, 1.5% Ni, 2.8% Mn, and 0.2% N, balance Fe) provides this alloy with outstanding resistance to a broad range of corrosive environments. S82011 alloy was tested, in both as-welded and
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Ozturk, Bahri, John J. Dunn, and John F. Grubb. "Corrosion Properties of Duplex Stainless UNS S32003 Alloy." In CORROSION 2008. NACE International, 2008. https://doi.org/10.5006/c2008-08186.

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Abstract UNS S32003 alloy is a recently developed nitrogen enhanced Lean Duplex Stainless Steel (LDSS). This alloy was developed to be used in the environments where high strength and good corrosion properties are required. Its composition (nominally 21%Cr, 1.8%Mo, 0.17%N and 3% Ni, balance Fe) provides this alloy with outstanding resistance to a broad range of corrosive environments. The corrosion properties of S32003 LDSS alloy in different environments were studied and the results are summarized in this paper. The corrosion properties of S32003 alloy are also compared to Types 316L and 304L
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Mohr, Andreas, Horst Hill, Karlheinz P. J. Hoeren, and Janosch Conrads. "High Strength Austenite for Additive Manufacturing." In CONFERENCE 2022. AMPP, 2022. https://doi.org/10.5006/c2022-17496.

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Abstract Stainless austenitic steels are widely applied in the field of classic mechanical engineering. An important representative of these grades is the material 316L (S31603), which is well established as a standard steel in Additive Manufacturing (AM). Typical austenitic stainless steels contain some main alloying elements, which are described in the following: The formation of an austenitic microstructure is achieved by nickel (Ni). The addition of chromium (Cr) lead to the corrosion resistance of these materials. For resistance to localized corrosion, molybdenum (Mo) can be added. Howeve
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Chung, H. M., D. L. Perry, and W. J. Shack. "Sulfur in Austenitic Stainless Steel and Irradiation-Assisted Stress Corrosion Cracking." In CORROSION 2003. NACE International, 2003. https://doi.org/10.5006/c2003-03662.

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Abstract Slow-strain-rate tensile (SSRT) tests in boiling-water-reactor-like (BWR-like) water and fractographic analysis were conducted on 13 model austenitic stainless steels (SSs) irradiated at 289°C in helium to ≈2.0 x 102 1 n·cm–2 (E > 1 MeV). The compositions of the model steels, similar to those of Types 304 and 316 SS, were varied systematically to investigate the effects of Ni, Si, P, S, Mn, C, N, Cr, and O on susceptibility to irradiation-assisted stress corrosion cracking (IASCC). Susceptibility to intergranular stress corrosion cracking (IGSCC), and hence to IASCC, could not
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Bauernfeind, Dieter, and Gregor Mori. "Corrosion of Superaustenitic Stainless Steels in Chloride- and Sulfate-Containing Media - Influence of Alloying Elements Cr, Mo, N and Cu." In CORROSION 2003. NACE International, 2003. https://doi.org/10.5006/c2003-03257.

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Abstract Superaustenitic steels with different Cr-, Mo-, N- and Cu-contents, which are mainly used in chemical industry, seawater applications and oil production, have been investigated in different chloride-containing media. Critical pitting and crevice temperatures (CPT and CCT, respectively) have been determined according to ASTM G 48. Electrochemical measurements for determination of CPT according to ASTM G 150 and immersion tests in chloride solutions at various temperatures and concentrations have been done. For means of comparison and better understanding of influence of different alloy
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Cassagne, Thierry, Gregory Moulié, and Claude Duret. "Limits of Use of Low Alloy and Stainless Steels in Upstream Sour Environments." In CORROSION 2009. NACE International, 2009. https://doi.org/10.5006/c2009-09079.

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Abstract Currently the use of sour service metallic materials is guided by ISO 15156/NACE MR0175 standard and guideline documents such EFC N°16 and 17. Carbon and low alloy steels are used according to the sulfide stress cracking (SSC) severity diagram in ISO 15156-2. However, there is a zone in the lower left hand corner which is undefined so far. Hence, the severity is unknown and qualification may need to be specifically carried out for using steels under these conditions. Work has been undertaken to test several steels of known sour service resistance to better assess the severity in this
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Lee, Hyeong-Yeon, Jung Yoon, Jewhan Lee, and Jaehyuk Eoh. "High-Temperature Design of 700°C Heat Exchanger in a Large Scale High-Temperature Thermal Energy Storage Performance Test Facility." In ASME 2022 Pressure Vessels & Piping Conference. American Society of Mechanical Engineers, 2022. http://dx.doi.org/10.1115/pvp2022-84895.

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Abstract High-temperature design evaluations of 700°C (1292°F) heat exchanger was conducted that would be installed in a large-scale high-temperature thermal energy storage performance test facility under development at KAERI site. The helical tube type sodium-to-air heat exchanger, AHX with 125kWt capacity of Type 316L austenitic stainless steel would be subjected to high-temperature operation at 700°C. Case studies in elevated temperature designs were conducted for the two materials of Type 316L and Type 316L(N) stainless steel codified in French high-temperature design rules of RCC-MRx. Bec
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Reports on the topic "316l(N)"

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Billone, M. C., and J. E. Pawel. Summary of recommended correlations for ITER-grade type 316L(N) for the ITER materials properties handbook. Office of Scientific and Technical Information (OSTI), 1996. http://dx.doi.org/10.2172/270465.

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