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When temperature goes quantum

A University of Arizona-led collaboration of physicists and chemists has discovered that temperature behaves in strange and unexpected ways in graphene, a material that has great potential for new technological devices ranging from computing to medicine.

Review gives green light to pursue ITER cryostat manufacturing

Later this year, in mid-September, the first batch of the 54 segments of the ITER cryostat (the huge vacuum chamber that insulates the superconducting magnets of the machine) will leave the Larsen & Toubro factory in Hazira, India, to be delivered to the ITER site for welding and assembly.

Design completed for ITER’s liquid helium plants

The Final Design Review for ITER's liquid helium plants was held on schedule and on budget at ITER Headquarters from November 12-14, 2014. This important project milestone now opens the way for helium plant manufacturing to begin.

Brookhaven dedicates “brightest beacon at the frontiers of discovery”

The National Synchrotron Light Source II (NSLS-II) at Brookhaven Laboratory was dedicated February 6. NSLS-II, which produces extremely bright beams of X-ray, ultraviolet and infrared light, will examine a wide range of materials, including superconductors and catalysts, geological samples, and biological proteins, to accelerate advances in energy, environmental science and...

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Two-Phase Flows

Two-phase flows are those flows in which there is a mixture of two physical states (solid, liquid or vapor). In cryogenic applications, such flows are almost always a mixture of a cryogenic liquid along with its corresponding vapor. A mixture of liquid helium and helium vapor would be a typical...

Supercritical Fluids

A supercritical fluid is defined as a substance whose temperature and pressure exceed those of its critical point. Every pure substance has a critical point that is defined in thermodynamic space by a critical temperature and a corresponding critical pressure. For example, the critical point for helium has a critical...

Brayton Cycle

The Brayton cycle is one of the many thermodynamic cycles used to generate cooling at cryogenic temperatures. Strictly speaking, when referring to cooling we should call this the reverse Brayton cycle as the original Brayton cycle describes the process of power generation or propulsion via a gas turbine. In many...

Air Separation and Liquefaction

by Nils Tellier, PE, President, EPSIM Corporation (CSA CSM) nils@epsim.us All illustrations courtesy EPSIM Corporation Background History of Air Separation and Liquefaction This section builds on a rich history of methods to develop deep refrigeration and cryogenic liquefaction during the 19th Century. You are encouraged to read Cryo Central’s History...

Bose-Einstein Condensate

A Bose-Einstein condensate, first proposed in 1925 by Albert Einstein based on work done by Satyendra Nath Bose (the same Bose from whom the term boson is derived), is a super-cold state of matter in which almost all of the individual atoms have “condensed” down to the lowest possible quantum...

Cold Technology for Pest Control

While it does not reach temperatures cold enough to be called cryogenic, carbon dioxide snow is at the heart of a new way of dealing with unwanted pests. It utilizes a quick freezing process that takes advantage of the properties of carbon dioxide snow and has a number of benefits...

Cryogenic Finishing

The following 3 articles discuss the uses and procedures of various type of cryogenic finishing. 1) By Robin A. Rhodes, Cryogenic Institute of New England, Inc. rrhodes@nitrofreeze.com Cryogenic Deflashing is employed to remove undesired residual mold flash that remains on molded parts after they are removed or ejected from the...

What is the temperature range of cryogenics?

Could you please tell me what is the temperature range of cryogenics? In other words, is -100°F considered cryogenic, or does it start lower? Could I expect to see some extended life in D2 stamping dies? What would the recipe be to achieve the desired results using cryogenics?