ステンレス鋼、オーステナイト系

316H Stainless Steel (S31609)

316合金を高温用に改良したもの。.

The alloy has higher strength at elevated temperatures and is used for structural and pressure vessel applications at temperatures above 932°F (500°C). The higher carbon content of 316H also delivers higher tensile and yield strength than 316/316L and its austenitic structure provides excellent toughness down to cryogenic temperatures.

316H stainless steel is a high-carbon, high-temperature variant of 316, combining enhanced tensile strength at elevated temperatures with excellent corrosion resistance. It is widely used in power generation, chemical processing, aerospace, and industrial applications where both high strength and corrosion resistance are essential.

PDFダウンロード

レンジ

ご注意

もしお探しのものが見つからない場合は、以下の連絡先までお問い合わせください。 ローカルサービスセンター お客様のご要望にお応えします。.

316H Stainless Steel Related Specifications

システム / スタンダード 国・地域 グレード / 役職
AISI アメリカ 316H
国連 インターナショナル S31609
EN / W.Nr. ヨーロッパ 1.4401 (316 base grade)
EN名 ヨーロッパ X5CrNiMo17-12-2
ASTM A240 アメリカ Type 316H (plate, sheet)
ASTM A182 アメリカ F316H (forgings, flanges)
ASTM A213 アメリカ TP316H (boiler & heat-exchanger tubes)
ASTM A312 アメリカ TP316H (seamless pipe)
GB 中国 07Cr17Ni12Mo2
日本工業規格 日本 SUS316H
BS 英国 316H
アフノール フランス Z10CNS17-13 (approx. 316H type)

プロパティ

316H Stainless Steel Bar

EN 10269:2013

化学元素 %プレゼント
カーボン(C) 0.04 - 0.08
クロム(Cr) 16.50 - 18.50
Molybdenum (Mo) 2.00 - 2.50
ケイ素 (Si) 0.00 - 1.00
リン (P) 0.00 - 0.04
硫黄(S) 0.00 - 0.02
ニッケル(Ni) 10.00 - 13.00
マンガン (Mn) 0.00 - 2.00
Nitrogen (N) 0.00 - 0.10
Iron (Fe) Balance

316H Stainless Steel Bar Up to 160mm

EN 10269:2013

機械的性質 価値
プルーフ・ストレス 205 Min MPa
引張強度 490 to 690 MPa
伸び A50 mm 35 %
物理的性質 価値
密度 8.00 g/cm³
Melting Point 1400 °C
Thermal Expansion 15.9 x 10-6/K
弾性係数 193 GPa
熱伝導率 16.3 W/m.K
Electrical Resistivity 0.74 x 10-6 Ω .m

Applications of 316H Stainless Steel

316H stainless steel is a high-carbon austenitic stainless steel designed for high-temperature applications where strength and corrosion resistance are critical. Its high carbon content gives it superior tensile strength at elevated temperatures, making it ideal for welded and high-stress components.


1. Power Generation

  • Boilers, superheaters, and steam piping in power plants

  • Pressure vessels and heat exchangers exposed to high-temperature steam

  • Components that require high creep and tensile strength


2.化学・石油化学産業

  • Reactors, vessels, and piping handling corrosive or high-temperature chemicals

  • Heat exchangers and condensers operating under elevated temperature conditions

  • Equipment exposed to oxidizing and mildly reducing environments


3. Aerospace and High-Temperature Engineering

  • Exhaust systems, turbocharger components, and high-temperature welded assemblies

  • Applications where both strength and corrosion resistance at high temperatures are essential


4. Food and Pharmaceutical Processing

  • High-temperature sterilization equipment

  • Heat exchangers and vessels in hygienic applications where corrosion resistance is crucial


5. Marine and Offshore Applications

  • Components exposed to elevated-temperature seawater or coastal atmospheres

  • Pump shafts, valves, and fittings where high strength is needed under corrosion exposure


概要

316H stainless steel is widely used in high-temperature industrial, chemical, marine, aerospace, and food-processing applications. .その high carbon content and excellent corrosion resistance make it suitable for pressure vessels, boilers, piping, heat exchangers, and welded assemblies operating under demanding conditions.

Characteristics of 316H Stainless Steel

316H stainless steel is a high-carbon, austenitic stainless steel designed for high-temperature service. It retains the excellent corrosion resistance of standard 316 stainless steel while offering enhanced tensile strength at elevated temperatures due to its higher carbon content.


1. High-Temperature Strength

  • Increased carbon content (typically 0.04–0.10%) provides higher tensile and creep strength than 316 or 316L at elevated temperatures.

  • Suitable for continuous service at temperatures up to ~800°C (1470°F).

  • 維持 mechanical integrity under high thermal stress.


2.耐食性

  • 優れた耐性 general corrosion, oxidation, and mildly reducing chemicals.

  • で優れたパフォーマンスを発揮する。 oxidizing environments such as atmospheric, chemical, and marine conditions.

  • Retains corrosion resistance after 溶接, although stress relief may be recommended for high-temperature applications.


3.機械的特性

  • High tensile strength and yield strength compared to standard 316 stainless steel.

  • Good 延性と靭性, even at elevated temperatures.

  • Cold working improves strength further but reduces ductility.


4. Fabrication and Weldability

  • Weldable using TIG, MIG, and SMAW processes.

  • Stress relief after welding is sometimes recommended to minimize thermal stresses in high-temperature applications.

  • 可能 hot- or cold-worked with proper process controls.


5. Applications Leveraging Characteristics

  • High-temperature pressure vessels, boilers, and piping

  • Chemical and petrochemical reactors and heat exchangers

  • Aerospace and high-temperature industrial components

  • Food and pharmaceutical equipment requiring both corrosion resistance and high-temperature strength


概要

316H stainless steel combines the high-temperature strength of a high-carbon austenitic steel with the excellent corrosion resistance of 316 stainless steel. It is particularly suited for pressure vessels, high-temperature piping, chemical equipment, and welded assemblies operating under demanding thermal and corrosive environments.

追加情報

Weldability of 316H Stainless Steel

316H stainless steel, a high-carbon austenitic stainless steel, is generally weldable using conventional methods, though care must be taken due to its higher carbon content, which can increase the risk of sensitization and intergranular corrosion 熱影響を受けたゾーンで。.


1. Suitable Welding Methods

  • TIG(GTAW): Ideal for precise welds and thin sections

  • MIG(GMAW): Suitable for thicker sections and industrial applications

  • SMAW (Stick Welding): Common for maintenance and field welding

  • Resistance Welding: Spot and seam welding for sheet metal applications


2. Considerations Due to High Carbon

  • Higher carbon content increases the risk of chromium carbide precipitation 溶接中.

  • Post-weld solution annealing or stress relief is recommended for high-temperature service to maintain corrosion resistance and mechanical properties.

  • 用途 matching or slightly higher alloy filler metals (ER316 or ER316H) to reduce sensitization risk.


3. Heat Input and Distortion Control

  • Austenitic stainless steels expand more than carbon steels during welding.

  • 用途 moderate heat input and proper welding sequence to minimize distortion and residual stresses.

  • Avoid prolonged welding in one area to reduce localized sensitization.


4. Applications Leveraging Weldability

  • High-temperature piping, boilers, and pressure vessels

  • Chemical processing reactors and heat exchangers

  • Aerospace and power generation components

  • Food and pharmaceutical processing equipment


概要

316H stainless steel is weldable with standard techniques, but the high carbon content requires careful attention to heat input, filler selection, and post-weld treatment. When properly welded, it maintains high-temperature strength, corrosion resistance, and structural integrity, making it suitable for pressure vessels, chemical, and high-temperature applications.

Fabrication of 316H Stainless Steel

316H stainless steel is a high-carbon austenitic stainless steel designed for high-temperature applications. Its fabrication combines standard austenitic stainless steel techniques with special considerations due to the elevated carbon content, which affects weldability, work hardening, and heat treatment.


1.成形

  • Cold Forming:

    • こんな人に向いている bending, rolling, deep drawing, and stamping

    • Work hardens moderately; extensive deformation may require intermediate solution annealing to restore ductility

  • Hot Forming:

    • Recommended for thicker sections or complex shapes

    • Typical range: 1010–1175°C (1850–2150°F)

    • プロデュース uniform mechanical properties and reduces work hardening


2. Cutting and Shearing

  • Can be cut with laser, waterjet, plasma, or mechanical methods

  • Sharp tools and proper feeds minimize work hardening and surface defects


3. Machining

  • Moderate machinability due to toughness and work-hardening tendency

  • Carbide tools preferred for heavy-duty or high-speed operations

  • Coolants and lubricants reduce heat, improve surface finish, and extend tool life


4. Welding

  • Can be welded using TIG, MIG, SMAW, and resistance welding

  • Higher carbon content increases risk of sensitization, so post-weld solution annealing or stress relief may be needed for high-temperature service

  • 用途 matching or slightly higher alloy filler metals (ER316H) for optimal corrosion resistance


5. Cold and Hot Working

  • Cold working increases strength via work hardening but decreases ductility

  • ホットワーキング (forging, rolling) restores ductility and produces uniform grain structure

  • Proper process planning ensures both mechanical performance and corrosion resistance


6. Surface Finishing

  • Standard finishes: 2B, BA, or polished

  • Post-fabrication pickling or passivation may be applied to restore surface corrosion resistance


7. Applications Leveraging Fabrication

  • High-temperature pressure vessels, boilers, and piping

  • Chemical reactors and heat exchangers

  • Aerospace and industrial high-temperature components

  • Food and pharmaceutical equipment requiring high strength and corrosion resistance


概要

316H stainless steel can be fabricated using standard forming, machining, and welding methods, but its high carbon content requires careful handling to prevent sensitization and maintain corrosion resistance. Proper hot/cold working, welding procedures, and heat treatment make it ideal for high-temperature and demanding industrial applications.

Hot Working of 316H Stainless Steel

316H stainless steel is a high-carbon austenitic stainless steel designed for high-temperature applications. Hot working is used to form or shape thick or complex components while maintaining mechanical strength and corrosion resistance.


1. Recommended Hot Working Temperature

  • Typical temperature range: 1010–1175°C (1850–2150°F)

  • Above this range, grain growth may occur, reducing toughness

  • Below this range, flow stress increases, making forming more difficult


2. Suitable Hot Working Processes

  • Hot Rolling: Plates, sheets, and structural components

  • Hot Forging: High-strength or complex-shaped parts

  • Hot Extrusion: Rods, tubes, and profiles

  • Hot Pressing/Forming: Thick or large components that cannot be cold-worked


3. Advantages of Hot Working

  • Reduces work hardening compared to cold working

  • Improves 延性と靭性

  • プロデュース uniform grain structure and mechanical properties

  • Enables fabrication of large or complex components


4. Post-Hot Working Treatments

  • Solution annealing may be applied to relieve residual stresses and restore ductility

  • Pickling or passivation enhances surface corrosion resistance if needed


5. Applications Leveraging Hot Working

  • Pressure vessels, boilers, and piping in power plants

  • Heat exchangers and chemical reactors

  • Aerospace and industrial components subjected to high temperatures and stress


概要

316H stainless steel exhibits excellent hot workability, allowing shaping and forming at 1010–1175°C. Hot working improves ductility, toughness, and uniform mechanical properties while preserving corrosion resistance, making it ideal for pressure vessels, chemical, high-temperature, and industrial applications.

Heat Resistance of 316H Stainless Steel

316H stainless steel is a high-carbon austenitic stainless steel designed for high-temperature applications. Its increased carbon content provides enhanced tensile strength at elevated temperatures, making it suitable for pressure vessels, boilers, and high-temperature piping.


1. Continuous Service Temperature

  • こんな人に向いている continuous operation up to ~800°C (1470°F)

  • 維持 mechanical properties, tensile strength, and creep resistance at elevated temperatures

  • Prolonged exposure above this temperature may slightly reduce ductility or cause surface scaling


2. Intermittent or Cyclic Exposure

  • Can tolerate short-term exposures above 800°C without significant surface degradation

  • こんな人に向いている thermal cycling applications in industrial and power generation equipment


3. Oxidation Resistance

  • Forms a protective chromium oxide layer that resists oxidation and scaling

  • で優れたパフォーマンスを発揮する。 industrial furnaces, boilers, and heat exchangers

  • 以下には適さない。 strongly sulfidizing or highly oxidizing atmospheres at extreme temperatures


4. Mechanical Properties at High Temperature

  • Retains tensile strength, creep resistance, and ductility

  • Hot-worked or cold-worked areas maintain good mechanical stability after proper heat treatment

  • Grain growth can occur if exposed to excessive heat without solution annealing


5. Applications Leveraging Heat Resistance

  • High-temperature pressure vessels and boiler components

  • Chemical and petrochemical reactors and heat exchangers

  • Aerospace components exposed to elevated temperatures

  • Food and pharmaceutical processing equipment requiring high-temperature service


概要

316H stainless steel offers excellent high-temperature performance, with continuous service up to ~800°C. Its high carbon content ensures superior tensile strength and creep resistance, while maintaining corrosion resistance in welded and high-temperature applications, making it ideal for power generation, chemical, industrial, and aerospace environments.

Machinability of 316H Stainless Steel

316H stainless steel is a high-carbon austenitic stainless steel that exhibits 適度な加工性. Its toughness, work-hardening tendency, and relatively low thermal conductivity require careful tool selection, cutting speeds, and lubrication to achieve efficient machining with good surface finish.


1. Work-Hardening Behavior

  • 316H work-hardens rapidly during machining

  • Hardened surfaces increase cutting forces and accelerate tool wear

  • Smooth, continuous cutting reduces localized work hardening


2.推奨工具

  • Carbide tools are preferred for high-speed or heavy-duty machining

  • High-speed steel (HSS) tools can be used for lighter cuts or slower operations

  • Positive rake angles help reduce cutting forces and improve surface finish


3. Cutting Speeds and Feeds

  • 用途 slower cutting speeds compared with carbon steels

  • Moderate to heavy feeds maintain continuous chip flow and prevent hard spots

  • Avoid stopping or dwelling on the workpiece to prevent localized work hardening


4. Cooling and Lubrication

  • 用途 flood coolant or cutting fluid to minimize heat buildup

  • High-pressure lubrication helps evacuate chips efficiently

  • Reduces tool wear and improves surface finish


5. Chip Formation

  • Chips are tough, stringy, and sticky

  • 用途 chip breakers or controlled feeds to manage chip formation


6. Surface Finish

  • Achievable with sharp tools, proper feeds, and adequate cooling

  • Work-hardened areas may require finishing passes for a smooth surface


概要

316H stainless steel has 適度な加工性, requiring careful tool selection, cutting parameters, and cooling. Proper machining ensures high-precision components with good surface finish and durability, suitable for high-temperature, chemical, marine, and industrial applications.

Corrosion Resistance of 316H Stainless Steel

316H stainless steel is a high-carbon austenitic stainless steel designed for high-temperature and corrosive environments. Its composition provides excellent general corrosion resistance while maintaining strength at elevated temperatures.


1.一般的な耐食性

  • 耐性 oxidation, atmospheric corrosion, and mildly corrosive chemicals

  • で優れたパフォーマンスを発揮する。 industrial, marine, and chemical environments

  • Maintains corrosion resistance even after welding or high-temperature service


2. Intergranular Corrosion

  • The higher carbon content slightly increases sensitization risk during welding

  • Post-weld solution annealing or stress-relief minimizes the risk of 粒界腐食

  • Suitable for welded components with proper heat treatment


3. Pitting and Crevice Corrosion

  • Exhibits good resistance to chloride-induced corrosion

  • Better than 304/304L but slightly less than 316L in severe chloride conditions

  • こんな人に向いている marine, coastal, and mildly aggressive chemical environments


4. High-Temperature Corrosion

  • 耐性 酸化とスケーリング at elevated temperatures (continuous service up to ~800°C)

  • で優れたパフォーマンスを発揮する。 steam, hot gases, and chemical processing environments

  • 以下には適さない。 strongly sulfidizing or highly oxidizing atmospheres at extreme temperatures


5. Applications Leveraging Corrosion Resistance

  • High-temperature pressure vessels, boilers, and piping

  • Chemical reactors, heat exchangers, and condensers

  • Marine components exposed to elevated temperatures

  • Food and pharmaceutical processing equipment


概要

316H stainless steel combines excellent high-temperature strength with good corrosion resistance, especially in welded and industrial applications. Proper post-weld heat treatment ensures durability, making it ideal for power generation, chemical, marine, and industrial applications.

Heat Treatment of 316H Stainless Steel

316H stainless steel is a high-carbon austenitic stainless steel. Like other austenitic stainless steels, it is not hardenable by conventional heat treatment. Heat treatment is primarily used to relieve stresses, restore ductility, and maintain corrosion resistance, particularly after welding or cold working.


1. Solution Annealing

  • 目的

    • Restore ductility after cold working or forming

    • Relieve residual stresses

    • Dissolve any undesired chromium carbides formed during high-temperature exposure

  • Temperature Range: 1010-1120°C (1850-2050°F)

  • Cooling: Rapid air or water quench to preserve austenitic structure

  • Effect:

    • Restores mechanical properties

    • Maintains corrosion resistance due to titanium or high-carbon stabilization


2. Stress Relief Annealing

  • 目的 Reduce residual stresses from forming, bending, or welding

  • Temperature Range: 450-650°C (840-1200°F)

  • Effect:

    • Minimizes distortion

    • Reduces risk of stress corrosion cracking without significantly altering mechanical properties


3. Post-Weld Heat Treatment

  • Generally recommended for high-temperature service applications

  • Relieves welding-induced stresses and reduces risk of sensitization

  • Helps maintain mechanical strength and corrosion resistance


4. Cold-Worked Condition Considerations

  • Cold working increases strength but decreases ductility

  • Intermediate solution annealing may be applied to restore formability for further fabrication


5.制限事項

  • Heat treatment does not significantly increase hardness

  • Excessive exposure at elevated temperatures may reduce cold-work strengthening effects slightly


概要

Heat treatment of 316H stainless steel is primarily for stress relief, ductility restoration, and maintaining corrosion resistance. Proper solution annealing and stress relief ensure optimal mechanical properties for pressure vessels, boilers, chemical equipment, and high-temperature applications.

Cold Working of 316H Stainless Steel

316H stainless steel is a high-carbon austenitic stainless steel with good cold-working characteristics. Cold working increases 強度と硬度 through work hardening while maintaining good corrosion resistance and ductility, provided it is managed carefully.


1. Work-Hardening Behavior

  • 316H stainless steel work-hardens moderately to rapidly during cold deformation.

  • Strength and hardness increase, while ductility decreases as deformation progresses.

  • Extensive cold working may require solution annealing to restore ductility before further fabrication.


2. Cold Working Processes

  • Rolling: Sheets, strips, and plates

  • Drawing: Tubes, rods, and wires

  • Bending and Forming: Structural components, brackets, and clips

  • Stamping and Deep Drawing: Industrial, food-processing, and chemical equipment components


3. Mechanical Property Control

  • Cold working allows adjustment of tensile strength, yield strength, and hardness.

  • Intermediate solution annealing can restore 延性 for further forming operations.


4. Effect on Corrosion Resistance

  • High carbon content slightly increases sensitization risk, but proper stress relief or solution annealing after cold work preserves intergranular corrosion resistance.

  • Suitable for components exposed to chemical, marine, or high-temperature environments.


5. Post-Forming Considerations

  • Solution annealing may be applied to relieve stresses and restore ductility if multiple cold-working steps are planned.

  • Cold working may induce slight magnetism due to minor strain-induced martensite formation.


6. Applications Leveraging Cold Work

  • Springs, clips, and fasteners requiring higher strength

  • Structural components with both strength and corrosion resistance

  • Tubes, rods, and wires for chemical, marine, and high-temperature equipment

  • Formed components for food, pharmaceutical, and industrial applications


概要

316H stainless steel exhibits excellent cold-working properties, allowing increased strength through work hardening while preserving corrosion resistance. Proper management of deformation and heat treatment ensures durable, high-performance components suitable for pressure vessels, chemical, marine, and high-temperature applications.

必要な製品を検索する

強力な加工設備に支えられた中国国内のサービスセンターの広範なネットワーク。.

ステンレス鋼
CNCルーティング

免責事項

本データは、あくまでも参考値であり、完全な仕様の代わりに依拠するものではない。特に、機械的特性要件は、調質、製品および製品寸法によって大きく異なります。すべての情報は当社の現在の知識に基づくものであり、誠意をもって提供されたものです。当社は、第三者が本情報を信頼して行ったいかなる行為に関しても、一切の責任を負いません。上記の「データシート更新日」は、データシートの正確性や最新性を保証するものではありません。.

本データシートに記載されている情報は、EN 規格、業界標準(印刷物、オンライン)、メーカーのデータなど、さまざまな情報源から引用したものです。本データシートに記載されている情報は、EN 規格、業界標準(印刷物、オンライン)、製造業者のデータなど、様々な公認情報源から引用したものであり、その情報がこれらの情報源の最新版であること、またはその正確性を保証するものではありません。当社が供給する材料は、このデータとは大きく異なる場合がありますが、関連する適用規格にはすべて準拠しています。詳細な製品は様々な目的に使用される可能性があり、当社はその使用を管理することができないため、当社は、寸法、特性および/または特定の目的に対する適合性に関して、法令またはその他により明示または黙示されたすべての条件または保証を明確に排除します。当社が第三者に対して行った助言は、当該第三者の援助のためにのみ行われるものであり、当社は一切の責任を負いません。すべての取引は、当社の現行の販売条件に従うものとします。当社の顧客に対する責任の範囲は、これらの条件に明確に記載されています。.

アルミニウム壁板セクション

アルミウォールボードセクション 専門家に相談する 1/8″ボード用 連続実行エンドストップ 3/16″ボード用 316continualrun 316endstop 1/4″ボード用 14continualrun 14endrun 1/2″ボード用 12continualrun 12endstop 12externalcorner...

アルミニウム成形品

アルミニウム成形品 専門家に相談する 側溝セクション 455 - 0.275kgm 225 - 0.129kgm 8 - 0.131kgm セクション 582 466 - 0.259kgm 側溝セクション 84 - 0.237kgm 306 - 0.219kgm...

ご不明な点がございましたら、24時間オンラインでお問い合わせください。