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Supplier: CSA Group
Description: ISO 22826:2005 specifies the requirements for hardness testing of transverse sections of narrow laser and electron beam welded joints in metallic materials. It covers Vickers and Knoop hardness tests in accordance with ISO 6507-1 and ISO 4545, respectively, with test
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Description: ISO 22826:2005 specifies the requirements for hardness testing of transverse sections of narrow laser and electron beam welded joints in metallic materials. It covers Vickers and Knoop hardness tests in accordance with ISO 6507-1 and ISO 4545, respectively, with test
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Description: ISO 9015-2:2003 specifies microhardness tests on transverse sections of welded joints of metallic materials with high hardness gradients. It covers Vickers hardness tests in accordance with ISO 6507-1, normally with test loads of 0,98 N to less than 49 N (HV 0,1 to less than HV
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Supplier: CSA Group
Description: ISO 9015-2:2016 specifies microhardness testing on transverse sections of welded joints of metallic materials with high hardness gradients. It covers Vickers hardness tests in accordance with ISO 6507‑1, normally with test loads of 0,98 N to less than 49 N (HV 0,1 to less
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Description: Provides a uniform procedure for determining density and porosity, hardness, resistivity, transverse strength and ash content of brush materials
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Supplier: CSA Group
Description: Provides a uniform procedure for determining density and porosity, hardness, resistivity, transverse strength and ash content of brush materials
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Supplier: ASTM International
Description: These test methods cover the physical testing of gypsum panel products. The test methos appear in the following order: (1) flexural strength (Method A); (2) core, end, and edge hardness (Method A); (3) nail pull resistance (Method A); (4) humidified deflection; (5) end squareness; (6)
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Supplier: ASTM International
Description: 1.1 These test methods cover the determination of the strength properties of prefabricated architectural acoustical tile or lay-in ceiling panels as follows: Tests Sections Hardness 2 to 7 Friability 8 to 13 Sag 14 to 20 Transverse strength 21 to 26 1.2 Not all of the tests described
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Supplier: ASTM International
Description: may be examined by each method shall be subjected to the limitations in the scope of the respective practices. The different mechanical test requirements for pipes, namely, transverse or longitudinal tension test, flattening test, and hardness or bend test are presented.
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Supplier: ASTM International
Description: classification does not include physical properties, such as structural hardness, friability, sag, linear expansion and contraction, and transverse strength, which may affect the handling, installation, and use of acoustical ceiling products (see Test Methods C367).
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Supplier: Kistler Group
Description: The dynamic response of a mechanical structure while either in a development phase or an actual use environment can readily be determined by impulse force testing. Using a FFT analyzer, the transfer function of the structure can be determined from a force pulse generated by the impact of a
- Minimum Force: 0 lbs
- Maximum Force: 4,496 lbs
- Upper Limit of Frequency Range: 1 kHz
- Operating Temperature: -4 to 158 F
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Supplier: SAE International
Description: this study were to evaluate and compare fatigue, monotonic tensile and CVN impact behavior of SAE 4140 steel with high (0.077% S), low (0.012% S) and ultra low (0.004% S) sulfur contents at two hardness levels (40 HRC and 50 HRC). The longitudinally oriented samples at 40 HRC, where MnS
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Supplier: Hartford Technologies, Inc.
Description: Profile High hardness and dimensional stability make tungsten carbide balls the preferred choice for precision hydraulic valves, high-load bearings, inertial navigation systems, ball screws, linear bearings in slideways, gauging and checking instruments, and meters. Tungsten carbide balls are
- ANSI / ABMA Grade: 10 to 25 #
- Applications: Bearing / Power Transmission, Gaging / Alignment, Valves
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