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pressure vessel
The depressurization of a high-pressure vessel initially filled with water heated to below the saturation point is investigated.
      
Experimental studies are performed into the variation of the shape of a jet of boiling liquid flowing out of a high-pressure vessel under conditions of high superheating.
      
The possibility of preparing diethyl terephthalate without a catalyst in a rocking cylindrical pressure vessel with the rocking axis passing through the geometric center was examined.
      
This provides a basis for characterizing the dose dependence of the hardening of reactor pressure vessel steel and for comparing the effects of primary radiation damage for fission and fusion reactors.
      
We have studied dynamics of pulsation that develop during the explosion boil-up of overheated water jets emitted via a nozzle from a high-pressure vessel.
      
Experimental facilities used in high pressure sorption of CO2 and/or CH4 on coal comprised a pressure vessel and associated pressurisation and monitoring systems.
      
Research on reasonable winding angle of ribbons of Flat Steel Ribbon Wound Pressure Vessel
      
There is no such kind of pressure vessel exploding on operation for its reasonable structure design.
      
Many explosion experiments on Flat Steel Ribbon Wound Pressure Vessel showed that their limited load pressure is related to the winding angle of the steel ribbons.
      
Research on bursting pressure formula of mild steel pressure vessel
      
Investigation on the temperature distribution and strength of flat steel ribbon wound cryogenic high-pressure vessel
      
The results show that the flat steel ribbon wound cryogenic high-pressure vessel is simpler in structure, safer and easier to manufacture than those of conventional ones.
      
After 35-41 d on their respective diets, rats from each group were placed inside a pressure vessel kept at 27°C under one of two pressure protcols.
      
The classical pressure vessel problem for void damage materials
      
In this paper, the classical pressure vessel problem for void damage materials is studied from the theory of microstructure in linear elasticity.
      
A suitable weight was assigned to each stratified sample according to the actual working states of the pressure vessel, so that the estimation of fatigue crack growth rate equation was more accurate for practice.
      
A 500-mL Bridgemantype pressure vessel constructed of titanium, and equipped with a motor-driven magnetic stirrer was employed.
      
The liquid, pasty or solid substances are decomposed in a specially constructed high-pressure vessel, which is heated to 370° C in a saltpetre bath or electric furnace.
      
A 20 g sample of biological material with a water content of 70-80% was pre-dried in a closed pressure vessel and thereafter burnt in oxygen.
      
The equipment consists of a cylindrical pressure vessel with a safety rapid lock.
      
 

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