The China Mail - Nickel Steel Forgings: Essential for Cryogenic Cooling

USD -
AED 3.672504
AFN 65.503991
ALL 80.193613
AMD 365.443623
ANG 1.789783
AOA 918.000367
ARS 1475.150612
AUD 1.415829
AWG 1.80125
AZN 1.70397
BAM 1.690479
BBD 2.011669
BDT 122.606854
BGN 1.696366
BHD 0.37668
BIF 2985.954449
BMD 1
BND 1.277583
BOB 11.640953
BRL 5.222404
BSD 0.998833
BTN 95.261679
BWP 13.45607
BYN 3.037988
BYR 19600
BZD 2.008816
CAD 1.38765
CDF 2273.000362
CHF 0.813662
CLF 0.023213
CLP 913.600415
CNY 6.743204
CNH 6.74452
COP 3115.519253
CRC 449.371191
CUC 1
CUP 26.5
CVE 95.306625
CZK 20.930304
DJF 177.864212
DKK 6.460604
DOP 58.464065
DZD 131.663425
EGP 49.854358
ERN 15
ETB 161.573793
EUR 0.864504
FJD 2.234204
FKP 0.739036
GBP 0.73929
GEL 2.610391
GGP 0.739036
GHS 10.937378
GIP 0.739036
GMD 73.503851
GNF 8773.931458
GTQ 7.6209
GYD 208.928649
HKD 7.84715
HNL 26.775574
HRK 6.512304
HTG 130.645231
HUF 313.830388
IDR 17828.1
ILS 2.955104
IMP 0.739036
INR 95.450504
IQD 1308.440296
IRR 1374587.503816
ISK 122.903814
JEP 0.739036
JMD 158.174511
JOD 0.70904
JPY 159.30404
KES 129.09806
KGS 87.450384
KHR 4041.661265
KMF 427.00035
KPW 900.000294
KRW 1416.610383
KWD 0.30868
KYD 0.832361
KZT 463.468603
LAK 22542.892951
LBP 89443.536886
LKR 332.365271
LRD 181.287005
LSL 16.158607
LTL 2.95274
LVL 0.60489
LYD 6.359825
MAD 9.264013
MDL 17.319677
MGA 4300.099399
MKD 53.178616
MMK 2099.791609
MNT 3596.010349
MOP 8.073123
MRU 40.112364
MUR 47.103741
MVR 15.450378
MWK 1731.967674
MXN 17.023504
MYR 4.085904
MZN 63.910377
NAD 16.158607
NGN 1359.570377
NIO 36.760448
NOK 9.442604
NPR 152.41886
NZD 1.677149
OMR 0.381252
PAB 0.998833
PEN 3.368858
PGK 4.486797
PHP 61.465038
PKR 277.41994
PLN 3.72275
PYG 5995.073253
QAR 3.641125
RON 4.526704
RSD 101.421842
RUB 83.996716
RWF 1468.77566
SAR 3.752773
SBD 8.048583
SCR 13.755996
SDG 600.503676
SEK 9.527038
SGD 1.279604
SHP 0.740866
SLE 24.503667
SLL 20969.499227
SOS 570.811185
SRD 37.974504
STD 20697.981008
STN 21.176369
SVC 8.739358
SYP 13001.999906
SZL 16.156273
THB 33.143038
TJS 9.223994
TMT 3.51
TND 2.928476
TOP 2.40776
TRY 47.867504
TTD 6.76693
TWD 32.021604
TZS 2646.873244
UAH 44.681879
UGX 3710.618436
UYU 40.019016
UZS 11890.747223
VES 770.109104
VND 26148.5
VUV 117.940389
WST 2.73449
XAF 566.970915
XAG 0.015456
XAU 0.000229
XCD 2.70255
XCG 1.800078
XDR 0.707052
XOF 566.970915
XPF 103.081378
YER 237.203589
ZAR 16.16923
ZMK 9001.203584
ZMW 18.87722
ZWL 321.999592
  • CMSC

    -0.0250

    21.45

    -0.12%

  • BCC

    -0.8900

    83.24

    -1.07%

  • RBGPF

    0.0000

    71.34

    0%

  • RIO

    -0.4100

    95.68

    -0.43%

  • BTI

    -0.2900

    57.06

    -0.51%

  • NGG

    -0.1500

    81.05

    -0.19%

  • AZN

    -0.7900

    156.45

    -0.5%

  • GSK

    -0.4785

    49.52

    -0.97%

  • BP

    0.2196

    42.53

    +0.52%

  • CMSD

    -0.0100

    21.58

    -0.05%

  • BCE

    0.1500

    23.47

    +0.64%

  • JRI

    0.0635

    12.61

    +0.5%

  • RELX

    -0.2400

    34.43

    -0.7%

  • RYCEF

    0.1300

    20.84

    +0.62%

  • VOD

    0.2000

    16.42

    +1.22%

Nickel Steel Forgings: Essential for Cryogenic Cooling
Nickel Steel Forgings: Essential for Cryogenic Cooling / Photo: © A cryogenic valve body of a nickel-alloy steel: seawater resistant, non-embrittling, and sealed! (The image rights are held by the author of the message.)

Nickel Steel Forgings: Essential for Cryogenic Cooling

Forgings of Nickel Steels, like Valves and Fittings, Make Cooling of Superconductive Coils Possible for Strong Magnetic Fields in Science and Medicine

Text size:

Cryogenics plays a crucial role in various essential fields, including hydrogen and nitrogen processing, LNG transportation, scientific research involving nuclear fusion reactors and particle accelerators, as well as medical imaging technologies like MRI. Building on our articles on "Grain Flow Forging" and "Monel® and 316L for Cryogenics", which covered the basics of forging techniques and cryogenic steel, this article delves deeper into practical and detailed applications.

Nickel (Ni) is used as an alloying element in steels to enhance their toughness and ductility at low temperatures. Steels with a nickel content of 9% or higher are considered resistant to low temperatures and free from embrittlement. Two chromium-nickel steels play a crucial role, not only in cryogenics: 304 and 316, which are two of the most widely used stainless steel grades, each suited to specific applications due to their unique properties.

**Stainless Steels 304 and 316 - The Major Chromium-Nickel Alloys Across Industries**

304 stainless steel, often marked as "18/8" or "18/10" on cutlery and cookware due to its 18% chromium and 8-10% nickel content, offers excellent corrosion resistance. It is ideal for general applications such as kitchen equipment, piping, valves, and boiler components. However, its resistance to chlorides and saltwater is limited, making it less suitable for more aggressive environments. While commonly used for cutlery, it is not recommended for kitchen knives, where carbon steels like Damascus steel and specialised knife alloys, such as X50CrMoV15, should be preferred. Some further knife steels renowned for their superior edge retention and sharpening properties include: S35VN, 440C; XC75; VG-10, all of which are generally harder than 304 steel.

316 stainless steel, by contrast, contains about 16-18% chromium, 10-13% nickel, and 2-3% molybdenum. The addition of molybdenum enhances its resistance to pitting and crevice corrosion, especially in chloride-rich or marine environments. This makes 316 the preferred choice for chemical processing, the food industry, marine equipment, medical devices, and, of course, cryogenics. Many sub-varieties with specific properties, such as 1.4404, 1.4435, and 1.4571, exist. With the abbreviation "F" for forged and "L" for reduced (low) carbon content to improve weldability, F316L is the most requested variant of 316 for forged components in the industrial valve, boiler, and piping industries.

While 316 is better for corrosion resistance, it is less hard. Steels with even higher corrosion resistance are duplex steels and copper-nickel superalloys such as Monel®, which are also great for high-temperature applications like rocket engines and power plants, even when they cannot undergo the same high levels of hardening.

**Liquefied Gases: Hydrogen, Methane, and LNG - Fundamentals of the Energy Transition**

Cryogenics plays a crucial role in the storage and transport of liquefied gases such as hydrogen and LNG (Liquefied Natural Gas). Hydrogen is liquefied at extremely low temperatures (-253°C), significantly increasing its density and enabling efficient storage. LNG, liquefied at -162°C, is a key component in global energy supply. Methane (CH4), the main constituent of natural gas, is used in certain concepts through methanation as an intermediate storage medium, binding hydrogen in a more transportable form. These technologies are vital for the energy transition and, when applied correctly, can contribute to reducing CO2 emissions. Because of the pressures involved, forgings such as valve bodies and fittings must comply with the stringent requirements of the Pressure Equipment Directive (PED). The same applies to pipelines and pressure vessels.

**Science Applications**

While cryogenics is already crucial for the processing of "cold" fluids and gases, it is absolutely essential for the cooling of superconducting magnetic coils in particle storage rings where powerful electromagnets keep particles away from the reactor walls, whether it be the 27-kilometre-long particle accelerator at CERN or the fusion reactors like ITER, with a core (the Tokamak) measuring almost 20 metres in diameter and 12 metres in height. These technologies enable the precise control required for high-energy physics experiments, such as particle collisions and the containment of plasma in fusion reactions, pushing the boundaries of scientific discovery.
These cutting-edge facilities rely on advanced cryogenic technology to maintain the extreme conditions required for their operations. Nuclear fusion is still at the science level, and viable solutions are still decades away. However, for generations to come, it could provide an option for endless, clean energy.

**Advancements in Medical Engineering and Biotechnological Applications**

Cryogenic technology enables the generation of the strong magnetic fields required for high-resolution imaging, which has revolutionised diagnostic medicine and advanced our understanding of the human body. The same mechanism described earlier is applied in large magnetic coils in MRI - the sophisticated medical imaging technology of today. Without ultra-deep cooling using liquid helium at -269°C, superconducting magnetic coils would not exist, and MRI would not be possible.
Cryo-Cooling technology is crucial for biological preservation. Liquid nitrogen is used to store cells such as sperm and eggs, tissues, and even entire organs for transplants or long-term storage, preserving their viability for decades. An extreme example is the controversial cryopreservation of deceased individuals (cryonics), with the hope of future revival. This unproven field relies on currently unattainable assumptions but still has a small niche market.

**About the Author**

Thomas Henneke is a graduate mathematician with a focus on physics, mechanics, and geometry. Since 2010, he has been the Technical Director and co-partner of the precision drop forge KB Schmiedetechnik GmbH in Western Germany. An enthusiast for energy technology and innovative steel applications, he occasionally writes popular science articles on forging techniques, advanced materials, and the charm of his home region: Hagen-Iserlohn-Sauerland. On his blog at drop-forge.com, one can also find further information about the forging equipment and services of the company, as well as additional material about forged valves for cryo, hydro, and nuclear applications. The same applies to pipelines and pressure vessels.



Company description
The drop forge KB Schmiedetechnik GmbH in Germany boasts decades worth of experience as a trusted supplier of pressurised forgings, including valve bodies for pressure applications in the energy sector, such as nuclear-grade forged components and ultra-high-pressure applications. Additionally, the company has extensive expertise in working with chromium-nickel steels like F304, F316L, and duplex steels, as well as nickel-based superalloys like Monel®, tailored for embrittling environments and demanding media or fluids such as seawater, hydrogen, LNG, nitrogen, and cryogenics.

Company-Contact
KB Schmiedetechnik GmbH - precision forge
Thomas Henneke
Buschmühlenstr. 62
58093 Hagen
+49233135080
https://kb-schmiedetechnik.de/about-us.html


Press
KB Schmiedetechnik GmbH - a German drop forge
Thomas Henneke
Buschmühlenstr. 62
58093 Hagen
+492331350855
https://drop-forge.com

W.Tam--ThChM