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longitudinal crack

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Published: 01 January 2000
Fig. 2 Toughness-dependent critical crack length for longitudinal crack in a pipe with an outer diameter of 800 mm (31.5 in.), wall thickness of 47.2 mm (1.86 in.), internal pressure of 20 MPa (2.9 ksi), and a ratio of crack depth to wall thickness of 1.0 More
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Published: 01 January 2002
Fig. 33 Delamination (longitudinal crack) in a tensile specimen. Source: Ref 56 More
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Published: 01 January 2002
Fig. 47 Longitudinal crack and intergranular stress-corrosion cracks in copper air-conditioning absorber tubes. (a) Longitudinal crack in one of the subject absorber tubes. 0.75×. (b) Macrograph of fine, irregular crack observed on the outer surface of the second absorber tube after light acid More
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Published: 01 January 2002
Fig. 48 Micrographic montage of a longitudinal crack in a brass tube from a generator air cooler. The inside diameter of the tube is at the bottom. Etched in potassium dichromate. 100× More
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Published: 01 August 2018
Fig. 16 Longitudinal crack and intergranular stress-corrosion cracks in copper air-conditioning absorber tubes. (a) Longitudinal crack in one of the absorber tubes. Original magnification: 0.75×. (b) Macrograph of fine, irregular crack on the outer surface of the second absorber tube after More
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Published: 01 January 2003
Fig. 9 Micrograph of a longitudinal crack in the heat affected zone of a weld from storage vessel B. Etched with nital. Source: Ref 11 More
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Published: 15 January 2021
Fig. 33 Delamination (longitudinal crack) in a tensile specimen More
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Published: 15 January 2021
Fig. 60 (a) Longitudinal crack in a copper air-conditioning absorber tube. (b) Macrograph of fine, irregular cracks observed in the outside-diameter surface of the copper air-conditioning absorber tube after a light acid cleaning to remove the corrosion product. Original magnification: 2×. (c More
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Published: 15 January 2021
Fig. 61 Micrographic montage of a longitudinal crack in a brass finned tube from a generator air cooler. The inside-diameter surface of the tube is at the bottom of the image. Original magnification: 100× More
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Published: 30 August 2021
Fig. 37 Failure of a tube. (a) Pits. (b) Longitudinal crack. Source: Ref 15 More
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Published: 01 January 2005
Fig. 67 Longitudinal cracks developed in insulated copper piping used to convey refrigerant to food cabinets in supermarkets. Some pipes leaked within weeks of installation. The cause was attributed to certain formulations of elastomeric insulation that yielded ammonia solutions when More
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Published: 01 January 2000
Fig. 1 Methods for calculating maximum loads for piping with longitudinal cracks. Note: exp [ A ] = e A More
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Published: 01 January 2000
Fig. 21 Test results for longitudinally cracked straight pipes (outer diameter, 800 mm, or 31.5 in.; wall thickness, 47.2 mm, or 1.86 in.) under internal pressure (burst test). R e , yield strength; R m , tensile strength; a , crack depth; s , wall thickness More
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Published: 01 January 2003
Fig. 7 Transverse and longitudinal cracks on as-ground weld areas on the inside surface of storage vessel B. (a) Transverse and longitudinal cracks. (b) Transverse cracks. Source: Ref 11 More
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Published: 01 January 2001
Fig. 5 Longitudinal cracks on a delaminated fracture surface indicative of progressive fracture. ∼5× More
Series: ASM Handbook
Volume: 8
Publisher: ASM International
Published: 01 January 2000
DOI: 10.31399/asm.hb.v08.a0003328
EISBN: 978-1-62708-176-4
... Abstract This article provides an overview of the safety aspects and integrity concept for pressure vessels, piping, and tubing. It focuses on the fracture mechanics approaches used to validate components with longitudinal cracks and circumferential cracks and to analyze crack growth behavior...
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Published: 09 June 2014
Fig. 11 Longitudinal internal crack in an axle shaft More
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