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Image
Published: 30 September 2015
Fig. 18 Stone hammer blow testing machine. Courtesy of Erichsen GmbH & Co. KG. Source: Ref 8
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Image
Published: 01 January 2005
Fig. 5 Expanded cross section of hydromechanical ram. Courtesy of GFM GmbH
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Image
Published: 01 December 2008
Fig. 5 Vertical continuous casting. Courtesy of Demag Technica GmbH of SMS
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in Large Probes for Characterization of Industrial Quenching Processes
> Steel Heat Treating Fundamentals and Processes
Published: 01 August 2013
Fig. 9 Sketch of the Liščić/Petrofer probe with handle. Courtesy of Petrofer GmbH
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Image
in Large Probes for Characterization of Industrial Quenching Processes
> Steel Heat Treating Fundamentals and Processes
Published: 01 August 2013
Fig. 10 Photo of the Liščić/Petrofer probe. Courtesy of Petrofer GmbH
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Image
in Processes and Furnace Equipment for Heat Treating of Tool Steels[1]
> Heat Treating of Irons and Steels
Published: 01 October 2014
Fig. 1 Salt bath hardening line with salt recovery systems. Source: Durferrit GmbH
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Image
in Processes and Furnace Equipment for Heat Treating of Tool Steels[1]
> Heat Treating of Irons and Steels
Published: 01 October 2014
Fig. 2 Salt bath hardening line for high-speed steels. Source: Durferrit GmbH
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Image
in Processes and Furnace Equipment for Heat Treating of Tool Steels[1]
> Heat Treating of Irons and Steels
Published: 01 October 2014
Fig. 3 Endothermic gas generator (Endomat). Source: Aichelin GmbH
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Image
in Processes and Furnace Equipment for Heat Treating of Tool Steels[1]
> Heat Treating of Irons and Steels
Published: 01 October 2014
Fig. 15 Graphite-based hot zone. Source: Rubig GmbH&Co KG
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Image
in Processes and Furnace Equipment for Heat Treating of Tool Steels[1]
> Heat Treating of Irons and Steels
Published: 01 October 2014
Fig. 21 Effluent-free salt bath nitrocarburizing line. Source: Durferrit GmbH
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Image
in Processes and Furnace Equipment for Heat Treating of Tool Steels[1]
> Heat Treating of Irons and Steels
Published: 01 October 2014
Fig. 23 Pit-type furnace for nitriding (and carburizing). Source: Aichelin GmbH
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Image
in Processes and Furnace Equipment for Heat Treating of Tool Steels[1]
> Heat Treating of Irons and Steels
Published: 01 October 2014
Fig. 24 Horizontal retort chamber furnace. Source: Aichelin GmbH
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Image
in Processes and Furnace Equipment for Heat Treating of Tool Steels[1]
> Heat Treating of Irons and Steels
Published: 01 October 2014
Fig. 26 Schematic setup of a hot-wall plasma nitriding furnace. Source: Rubig GmbH&Co KG
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Image
in Heat Treating of Cold-Work Tool Steels—Low- and Un-Alloyed Water and Oil Hardening Steels
> Heat Treating of Irons and Steels
Published: 01 October 2014
Fig. 5 CCT diagram for AISI 6F3. Courtesy of Böhler Edelstahl GmbH & Co. KG
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Image
in Heat Treating of Cold-Work Tool Steels—Low- and Un-Alloyed Water and Oil Hardening Steels
> Heat Treating of Irons and Steels
Published: 01 October 2014
Fig. 7 CCT diagram for AISI O1. Courtesy of Böhler Edelstahl GmbH & Co. KG
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in Heat Treating of Cold-Work Tool Steels—Medium-Alloy Air-Hardening, High-Carbon High-Chromium and High-Vanadium-Powder Metallurgy Steels
> Heat Treating of Irons and Steels
Published: 01 October 2014
Fig. 2 CCT Diagram for AISI D2. Courtesy of Böhler Edelstahl GmbH & CoKG
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Image
in Heat Treating of Cold-Work Tool Steels—Medium-Alloy Air-Hardening, High-Carbon High-Chromium and High-Vanadium-Powder Metallurgy Steels
> Heat Treating of Irons and Steels
Published: 01 October 2014
Fig. 3 CCT Diagram for AISI D3. Courtesy of Böhler Edelstahl GmbH & CoKG
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Image
Published: 01 October 2014
Fig. 4 CCT Diagram for AISI 6F3. Courtesy of Böhler Edelstahl GmbH & Co KG Probe Dil. Nr. λ HV 10 RA in % a 0.14 743 >1 b 0.44 743 c 0.70 720 d 1.35 721 e 3.1 707 f 12.8 632 g 22.5 544 h 2.5% 439 j 1.6% 397 ∼10
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Image
Published: 01 October 2014
Fig. 5 CCT Diagram for AISI H11. Courtesy of Böhler Edelstahl GmbH & Co KG Probe Dil. Nr. λ HV 10 RA in % a 1043 0.35 749 7 b 1044 3.5 689 8 c 1046 5% 627 13 d 1047 2% 437 5 e 1048 1% 261 2 f 1073 0.5% 209 g h j
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