![]() Defense Department spokesperson told the Associated Press that the U.S. Russia also maintains its own stocks of DU munitions. "There is no nuclear escalation," British foreign secretary James Cleverly said. "Russia knows this, but is deliberately trying to disinform." ![]() "It is a standard component and has nothing to do with nuclear weapons or capabilities," the spokesperson said. The Kremlin hit back at the announcement, with R ussian President Vladimir Putin saying there was a "nuclear component" to the promised munitions delivery, to which "Russia will have to respond accordingly."īut the British armed forces have "used depleted uranium in its armor piercing shells for decades," a U.K. "Such rounds are highly effective in defeating modern tanks and armored vehicles," Goldie said in a written statement. ![]() "It's so dense and it's got so much momentum that it just keeps going through the armor -and it heats it up so much that it catches on fire," RAND nuclear weapons expert Edward Geist previously told the Associated Press. In 2018, Russian state media publicized the upgrading of Russian main battle tanks, including the T-80BV, to fire depleted uranium (DU) tank rounds. RE: API-650 - Max.Russian crew of the tank T-80 performs during a sports events with elements of fighting "Race of heroes" in Sertolovo outside St. Does the programm do it by itself or do we need to get the values after run it and than calculate them? The refered appendix tell us how to determine the relation between external loads, internal pressure and thermal expansion. ![]() (?)Īnother thing I do not understand yet is when I run the analysis the forces and moments given on the nozzle node are only due to the piping connection or already includes the loads due to the internal pressure and thermal expansion (?) However, whatching the values given by the run analysis it seems that longitudinal force and radial moment are also important. API-650 considerations were made.Īccording API-650, Appendix P, the only important force and moments are the radial force at tank and its circunferencial and longitudinal moments. ![]() The model is defined as well as the data for the type of tank and nozzle, so that CAESAR II can give me the maximum allowable loads, stiffness coefficients and its deflection and rotation. I'm modeling a piping system where I have to know the loads on a tank nozzle due to the piping connection. ![]()
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