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Seco/Warwick Patents Hydrogen Closed-Cycle Hardening System For Heat Treatment In Vacuum

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(Archive News Story - Products mentioned in this Archive News Story may or may not be available from the manufacturer.)

Seco/Warwick Corporation USA
180 Mercer St.
Meadville, PA, 16335
USA



Press release date: August 13, 2008

August 13, 2008 Meadville, PA USA SECO/WARWICK has recently patented a hydrogen closed-cycle hardening system where the heat treatment process is performed in vacuum, and the hydrogen atmosphere is recycled. This system produces excellent process results because the cooling cycle is performed in hydrogen. The most useful application is for steels that are difficult to harden in other gases, and the user does not want to use an oil quench for environmental reasons. Gas quenching consistently provides superior metallurgical results in terms of uniformity and low part distortion.

How It Works
The hydrogen closed-cycle hardening unit consists of a vacuum oven having an internal quenching and circulation system that is adjusted to operate under a pressure of 2 MPa, the internal quenching and circulation system being fitted with conduits and valves for feeding and discharging of a quenching atmosphere; wherein: the oven is fitted with a hydrogen inlet line or a nitrogen inlet line and an operating gas outlet line; and wherein: (a) the oven is connected on one side to an inlet pipe, (i) the inlet pipe has a low-capacity fan; (ii) the inlet pipe is connected to a first conduit between two valves in the first conduit; and (iii) the first conduit is connected to a unit including a first container and a second container such that the first conduit is connected to the first container beyond one of the two valves in the first conduit and the first conduit is connected to the second container beyond the other of the two valves in the first conduit; (b) the oven is connected, on an opposite side from the connection to the inlet pipe, to an outlet pipe; (i) the outlet pipe is connected to a second conduit between two valves in the second conduit; and (ii) the second conduit is connected to the unit including the first container and the second container such that the second conduit is connected to the first container beyond one of the two valves in the second conduit and the second conduit is connected to the second container beyond the other of the two valves in the second conduit; (c) the first container is connected to a third conduit that contains a valve and a flow meter, the third conduit connecting to an external hydrogen source; (i) the first container is equipped with a first independent heating and cooling system; (ii) the first container contains a metal alloy that absorbs hydrogen as a high-pressure hydride, for which an equilibrium pressure of a reversible formation/dissociation reaction is about 0.01 to about 15 MPa at a temperature in a range of about 298 to about 533.degree. K.; (d) the second container contains a metal alloy that absorbs hydrogen as a low-pressure hydride, for which an equilibrium pressure of a reversible formation/dissociation reaction is about 10.sup.-6 to about 2 MPa at a temperature in a range of 293 to about 673.degree. K.; and (i) the second container is equipped with a second independent heating and cooling system; and (e) the first container and the second container are connected by a fourth conduit that contains a valve and a gas flow meter.

The measurements of hydrogen losses in the hardening process carried out in the closed-cycle hydrogen unit according to the invention have shown that the use of conjugated systems of metallic low-pressure and high-pressure hydrides, with the temperature range of the equilibrium pressure of the reversible formation/dissociation reaction of the low-pressure hydride being wider for each hydride systems than that of the high-pressure metal hydride, makes it possible to reduce the hydrogen losses to 5% at most of the total hydrogen quantity used in the process. At the same time, the use of the closed-cycle hydrogen unit eliminates the hazard of explosion or firing during the oven discharge.

Moreover, the use of the system of mutually conjugated low-pressure and high-pressure metallic hydrides makes it fully possible to safely store hydrogen in a combined condition for any long period of time between subsequent hardening processes. SECO/WARWICK Worldwide manufactures industrial heat processing equipment including heat treat furnaces, vacuum furnace technology, atmosphere generators and aluminum reverb melting and holding systems. SECO/WARWICK provides heat treating equipment and services worldwide for customers involved with primary aluminum, aluminum recycling, automotive, aerospace, commercial heat treating, HVAC, electronics, lighting, medical equipment and nuclear applications.

The globally integrated organization includes SECO/WARWICK Corp. (USA), Retech Systems LLC (USA), SECO/WARWICK S.A. (Poland), ELTERMA S.A. (Poland), SECO WARWICK Allied Pvt. Ltd. (India) and SECO/WARWICK Industrial Furnace Co. Ltd. (China).

The company has over 1000 employees worldwide, and is an industry leader in industrial heat processing equipment and processes. More information can be found at www.secowarwick.com.

Contact:
Beth Ryan, Director
Marketing Communications
814/332-8437
bryan@secowarwick.com

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