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Image
Published: 01 December 2006
Fig. 7.98 (a) Combination heating and cooling system. Source: Groos. (b) Liner holder with cooling grooves. Source: Böhler
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Image
in Auxiliary Equipment for Induction Heating
> Elements of Induction Heating: Design, Control, and Applications
Published: 01 June 1988
Fig. 5.1 Simple water-cooling system designed to control temperature with minimum water throughput. From F. W. Curtis, High Frequency Induction Heating , McGraw-Hill, New York, 1950 ( Ref 1 )
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Image
Published: 30 November 2023
Book Chapter
Series: ASM Technical Books
Publisher: ASM International
Published: 01 June 1988
DOI: 10.31399/asm.tb.eihdca.t65220077
EISBN: 978-1-62708-341-6
... Abstract This chapter describes two types of auxiliary equipment required in most induction heating installations: cooling systems and device timers. Water- and vapor-based systems used for cooling the power supply and the induction coil are described. The chapter concludes with a brief...
Abstract
This chapter describes two types of auxiliary equipment required in most induction heating installations: cooling systems and device timers. Water- and vapor-based systems used for cooling the power supply and the induction coil are described. The chapter concludes with a brief discussion of timers, with emphasis on open-loop timing systems.
Series: ASM Technical Books
Publisher: ASM International
Published: 01 December 2006
DOI: 10.31399/asm.tb.ex2.t69980323
EISBN: 978-1-62708-342-3
... the presses and auxiliary equipment for tube extrusion, induction furnaces for billet processing, handling systems for copper and aluminum alloy products, extrusion cooling systems, and age-hardening ovens. Next, the chapter describes the principles and applications of equipment for the production of aluminum...
Abstract
The machinery and equipment required for rod and tube extrusion is determined by the specific extrusion process. This chapter provides a detailed description of the design requirements and principles of machinery and equipment for direct and indirect hot extrusion. It then covers the presses and auxiliary equipment for tube extrusion, induction furnaces for billet processing, handling systems for copper and aluminum alloy products, extrusion cooling systems, and age-hardening ovens. Next, the chapter describes the principles and applications of equipment for the production of aluminum and copper billets. Then, it focuses on process control in both direct and indirect hot extrusion of aluminum alloys without lubrication. The chapter describes the technology of electrical and electronic controls in the extrusion process. It ends with a discussion on the factors that influence the productivity and quality of the products in the extrusion process and methods for process optimization.
Book Chapter
Series: ASM Technical Books
Publisher: ASM International
Published: 01 August 2015
DOI: 10.31399/asm.tb.piht2.t55050335
EISBN: 978-1-62708-311-9
... Abstract This appendix discusses the sizing, scaling, and configuration requirements of the basic components in a quench cooling system, including tanks, pumps, hoses, and inlet and outlet fixtures and the materials from which they are made. quench cooling systems quench rings...
Abstract
This appendix discusses the sizing, scaling, and configuration requirements of the basic components in a quench cooling system, including tanks, pumps, hoses, and inlet and outlet fixtures and the materials from which they are made.
Image
in Auxiliary Equipment for Induction Heating
> Elements of Induction Heating: Design, Control, and Applications
Published: 01 June 1988
Fig. 5.3 Vapor-cooled heat-exchanger system with a pumping station adjacent to the power-supply equipment Source: Water Saver Systems, Inc.
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Image
in Auxiliary Equipment for Induction Heating
> Elements of Induction Heating: Design, Control, and Applications
Published: 01 June 1988
Fig. 5.4 Vapor-cooled heat-exchanger system equipped with a recuperator that returns waste heat to the plant air-circulation system Source: Water Saver Systems, Inc.
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Image
Published: 01 December 2018
Image
in Corrosion in Petroleum Refining and Petrochemical Operations[1]
> Corrosion in the Petrochemical Industry
Published: 01 December 2015
Fig. 2 Real-time monitoring of chemical injection in a cooling-water system with online corrosion rate and pitting tendencies (localization index). October 10—Chemical treatment program transition: Inhibitor was turned off, acid addition was stopped, blowdown was increased, and dispersant
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Image
Published: 30 November 2023
Book Chapter
Series: ASM Technical Books
Publisher: ASM International
Published: 31 December 2024
DOI: 10.31399/asm.tb.hisppa.t56110067
EISBN: 978-1-62708-483-3
... power supply. It then presents an overview of induction heating systems. generator cooling induction heating systems induction power supply inverters induction heating INDUCTION HEATING SYSTEMS are commercially available for a range of industrial processes. Englishman Sebastian de...
Abstract
This chapter provides a discussion on the power supplies of modern induction heating plants. It describes the mode of operation and functional principle of an inverter. The chapter also provides a short note on generator cooling, which is required for the components of the induction power supply. It then presents an overview of induction heating systems.
Image
Published: 01 November 2012
Fig. 6 Erosive wear of a gray cast iron water pump impeller. The sharp corners of the (a) new impeller have been (b) completely rounded off by the abrasive wear of sand in the cooling system. Source: Ref 4
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Image
Published: 01 January 2000
Fig. 27 Failure of the aluminum inner ring of an extruder (for plastics) cooling system due to galvanic corrosion. Note the severe deterioration adjacent to nozzle holes where brass nozzles had been inserted. Source: Nalco Chemical Company
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Image
Published: 30 November 2013
Fig. 4 Erosive wear of a gray cast iron water pump impeller. The sharp corners of the (a) new impeller have been (b) completely rounded off by the abrasive wear of sand in the cooling system. The change in shape of the vanes reduces the efficiency of the pump; if abrasive wear were to continue
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Book Chapter
Series: ASM Technical Books
Publisher: ASM International
Published: 01 March 2000
DOI: 10.31399/asm.tb.aet.t68260245
EISBN: 978-1-62708-336-2
... tremendously in the area of die technology to increase productivity with low production costs. Improvements are still continuing in degassing, filtration, mold, and cooling systems in billet-casting technology as well as homogenizing processes to manufacture billets of improved extrudabilty. Extrusion...
Abstract
This chapter provides a summary of ongoing efforts to improve quality and productivity in the aluminum extrusion industry. It assesses advancements in several areas including extrusion presses and auxiliary equipment, tool and die technology, billet casting, extrusion thermodynamics and tribology, and process control.
Book Chapter
Series: ASM Technical Books
Publisher: ASM International
Published: 30 November 2013
DOI: 10.31399/asm.tb.uhcf3.t53630237
EISBN: 978-1-62708-270-9
.... Thermal fatigue may be prevented in many parts by designing curves rather than straight lines into the system. When this is done, heating and cooling cycles simply cause distortion of the curves, rather than forming tensile residual stresses upon cooling. Expansion loops and bellows in elevated...
Abstract
Elevated-temperature failures are the most complex type of failure because all of the modes of failures can occur at elevated temperatures (with the obvious exception of low-temperature brittle fracture). Elevated-temperature problems are real concerns in industrial applications. The principal types of elevated-temperature failure mechanisms discussed in this chapter are creep, stress rupture, overheating failure, elevated-temperature fatigue, thermal fatigue, metallurgical instabilities, and environmentally induced failure. The causes, features, and effects of these failures are discussed. The cooling techniques for preventing elevated-temperature failures are also covered.
Book Chapter
Series: ASM Technical Books
Publisher: ASM International
Published: 01 August 2015
DOI: 10.31399/asm.tb.piht2.t55050293
EISBN: 978-1-62708-311-9
... supplies). Most maintenance for induction heat-treating systems is centered on the cooling water systems, the high-frequency electrical output connections from the heat station, the induction coil, any mechanical fixturing, and the quench system, because the power supplies and heat stations have very few...
Abstract
This chapter discusses the maintenance needs of major components in induction heat-treating systems, including power supplies, heat stations, capacitors, high-frequency output stages, induction coils, water systems, quench systems, and fixturing.
Book Chapter
Series: ASM Technical Books
Publisher: ASM International
Published: 01 March 2012
DOI: 10.31399/asm.tb.pdub.t53420073
EISBN: 978-1-62708-310-2
... be constructed from time-temperature cooling curves and how they can be used to predict the phases present, their chemical compositions, and relative amounts. It also shows how phase diagrams can be modified to account for nonequilibrium cooling conditions. binary isomorphous systems nonequilibrium...
Abstract
This chapter discusses the unique characteristics of isomorphous alloy systems. It begins with a review of the naming conventions for multi-component systems and the construction of a three-dimensional phase diagram for a two-component alloy system. It explains how phase diagrams can be constructed from time-temperature cooling curves and how they can be used to predict the phases present, their chemical compositions, and relative amounts. It also shows how phase diagrams can be modified to account for nonequilibrium cooling conditions.
Book Chapter
Series: ASM Technical Books
Publisher: ASM International
Published: 01 January 2015
DOI: 10.31399/asm.tb.spsp2.t54410113
EISBN: 978-1-62708-265-5
... This chapter describes the ferritic microstructures that form in carbon steels under continuous cooling conditions. It begins with a review of the Dubé classification system for crystal morphologies. It then explains how cooling-rate-induced changes involving carbon atom diffusion...
Abstract
This chapter describes the ferritic microstructures that form in carbon steels under continuous cooling conditions. It begins with a review of the Dubé classification system for crystal morphologies. It then explains how cooling-rate-induced changes involving carbon atom diffusion and the associated rearrangement of iron atoms produce the wide variety of morphologies and microstructures observed in ferrite. The chapter also describes a classification system developed specifically for ferritic microstructures and uses it to compare common forms of ferrite, including polygonal or equiaxed ferrite, Widmanstatten ferrite, quasi-polygonal or massive ferrite, acicular ferrite, and granular ferrite.
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