Pricelists.org Pricelists.org Logga in Registrera dig

Virtual Testing and Predictive Modeling

☆☆☆☆☆ (0 reviews)
Show price history
Virtual Testing and Predictive Modeling
Lowest price (incl. delivery)
21 468,00 JPY
Typical price1 946,91 PLN
Lowest (90 days)99,99 PLN
Offers6
Last updatedför 1 vecka sedan
See best offer
Price history (90 days)
Full history
2026-08-08 2026-08-15
Prishistorik
UppdateradPris
2026-08-08109,99
2026-08-1599,99
Säljare Product price Delivery Totalt Tillgänglighet Updated
SP SpringerNatureLink Shop INT 21 449,00 JPY 19,00 JPY 21 468,00 JPY Tillgänglig för 4 dagar sedan View offer
SP Springer Nature Author 21 449,00 JPY free 21 449,00 JPY Tillgänglig för 1 vecka sedan View offer
SP SpringerNatureLink Shop INT 149,99 USD 25,00 USD 174,99 USD Tillgänglig för 4 dagar sedan View offer
SP SpringerNatureLink Shop INT 169,99 USD free 169,99 USD Tillgänglig för 4 dagar sedan View offer
SP SpringerNatureLink Shop INT 169,99 USD 15,00 USD 184,99 USD Tillgänglig för 4 dagar sedan View offer
SP SpringerNatureLink Shop INT 177,00 EUR 15,00 EUR 192,00 EUR Tillgänglig för 4 dagar sedan View offer

Priser och tillgänglighet kan ändras. Senast uppdaterad: 08.08.2026 23:26.

0,0
☆☆☆☆☆
0 reviews
5★ 0%
4★ 0%
3★ 0%
2★ 0%
1★ 0%

Product reviews

Rating
No reviews yet — be the first!
Thematerialsusedinmanufacturingtheaerospace,aircraft,automobile,andnuclear parts have inherent aws that may grow under uctuating load environments during the operational phase of the structural hardware. The design philosophy, material selection, analysis approach, testing, quality control, inspection, and manufacturing are key elements that can contribute to failure prevention and assure a trouble-free structure. To have a robust structure, it must be designed to withstand the envir- mental load throughout its service life, even when the structure has pre-existing aws or when a part of the structure has already failed. If the design philosophy of the structure is based on the fail-safe requirements, or multiple load path design, partial failure of a structural component due to crack propagation is localized and safely contained or arrested. For that reason, proper inspection technique must be scheduled for reusable parts to detect the amount and rate of crack growth, and the possible need for repairing or replacement of the part. An example of a fail-sa- designed structure with crack-arrest feature, common to all aircraft structural parts, is the skin-stiffened design con guration. However, in other cases, the design p- losophy has safe-life or single load path feature, where analysts must demonstrate that parts have adequate life during their service operation and the possibility of catastrophic failure is remote. For example, all pressurized vessels that have single load path feature are classi ed as high-risk parts. During their service operation, these tanks may develop cracks, which will grow gradually in a stable manner.

Similar products