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Published: 01 January 2002
Fig. 11 Cross sections through the carburized 1117 steel cylinders from two spool-type hydraulic valves. The cylinder of the valve that operated satisfactorily (a) had little retained austenite in the case, whereas the cylinder of the seized valve (b) had much retained austenite More
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Published: 01 January 2002
Fig. 6 Surface tears caused by fretting damage when aluminum cylinders in Fig. 5 are extruded More
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Published: 01 January 1990
Fig. 21 Multiple-crevice cylinders for use in crevice corrosion testing. Source: Ref 59 More
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Published: 01 January 1996
Fig. 26 Comparisons of fatigue lives of pressurized hydraulic cylinders in laboratory air and simulated seacoast environments at 80% design stress. Sources: Ref 3 , 42 More
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Published: 01 January 1996
Fig. 37 Stress-intensity factors for threaded and unthreaded cylinders More
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Published: 01 January 2005
Fig. 7 (a) Sections of experimental cylinders forged by four different methods. (b) and (c) C-ring sections removed from the cylinders for evaluating resistance to stress corrosion. In (b), stress is applied on the inner wall by means of a turnbuckle; in (c), stress is applied to the outer More
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Published: 01 January 2005
Fig. 4 Schematic of the two main methods of roll-forming aluminum cylinders. (a) Using a solid internal mandrel. (b) Utilizing opposing rollers More
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Published: 01 January 2005
Fig. 3 Grids for strain measurements on upset cylinders More
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Published: 01 January 2006
Fig. 15 Flexible binder with individually controlled hydraulic cylinders More
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Published: 01 January 2006
Fig. 10 Out-of-roundness variations in 44 cylinders of the same diameter produced in a pinch-type roll machine. Dimensions given in inches More
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Published: 01 January 2006
Fig. 53 Flexible flat binder with individually controlled hydraulic cylinders More
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Published: 01 December 2008
Fig. 14 Predicted melting times for vertical steel plates and cylinders, 2.5 mm (0.098 in.) scrap thickness and 0.1% C composition, [(%S) i = 0.03] immersed in stagnant iron-carbon baths at different bath temperatures. Source: Ref 27 More
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Published: 01 August 2013
Fig. 43 Cooling curves for 100 mm (4 in.) long drill rod cylinders of various diameters More
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Published: 01 August 2013
Fig. 6 Cooling curves as a function of gas pressure in 25 mm diameter cylinders quenched in amber furnace (Monotherm 60/60/90; bolt charge with 540 kg gross weight; quench gas: nitrogen; gas velocity: ∼7 m/s) More
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Published: 01 August 2013
Fig. 7 Cooling curves in surface and core of 100 mm diameter cylinders quenched in single-chamber furnace (Monotherm 60/60/90; bolt charge; middle-middle position of the load; quench gas: 6 bar N 2 ; gas velocity: ∼7 m/s; gas reversing applied) More
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Published: 01 August 2013
Fig. 9 Cooling curves for 10 mm diameter cylinders quenched in cold chamber (ModulTherm) with different quench parameters More
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Published: 01 August 2013
Fig. 10 Cooling curves for 50 mm diameter cylinders quenched in cold chamber (ModulTherm) with different quench parameters More
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Published: 01 August 2013
Fig. 5 Cooling curves for 1045 steel cylinders quenched in salt, water, and oil. Thermocouples located in the geometric center. Source: Ref 5 More
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Published: 01 August 2013
Fig. 3 Cylindrical or outer-diameter grinder used on outer diameters of cylinders between centers More
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Published: 01 August 2013
Fig. 4 Centerless grinder for grinding outer diameters of cylinders without the use of centers More