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...combustion of the combustion products. The heat release rate of the material is also the most important parameter in the combustion performance of the material. It can accurately measure the heat release rat...
... method, ellipse method), volume (double plane method, area length method, ellipsoid method), angle, ratio, stenosis rate. --M Mode:Slope, ratio, stenosis rate, heart rate, time. --D Mode:Doppler blood flow ...
... method, ellipse method), volume (double plane method, area length method, ellipsoid method), angle, ratio, stenosis rate. --M Mode:Slope, ratio, stenosis rate, heart rate, time. --D Mode:Doppler blood flow ...
...Calculation --General Measurement --B mode: distance, area (track method, rectangle method, ellipse method), perimeter (track method, rectangle method, ellipse method), volume (double plane method, area leng...
...calculated from the oxygen concentration in the combustion product gas stream and the heat release rate of the combustion products when burning, the material's heat release rate is also the most important pa...
... "Test method for heat release rate of building materials". 2. The scope of use: The oxygen consumption calculated by the oxygen concentration in the gas flow of the combustion product and the heat...
...rate of building materials" and ISO5660-1:2002 "Test method for heat release rate of building materials". 2. The scope of use: The oxygen consumption calculated by the oxygen concentration in ...
... "Test method for heat release rate of building materials". 2. The scope of use: The oxygen consumption calculated by the oxygen concentration in the gas flow of the combustion product and the heat...
... during combustion, the heat release rate of the material is also the most important parameter in the combustion performance of the material, and the heat release rate in the combustion process of the materi...
... "Test Method for Heat Release Rate of Building Materials". Scope of Application: The oxygen consumption calculated from the oxygen concentration in the gas flow of the combustion products and the ...
...calculated by the oxygen concentration in the gas flow of the combustion product and the heat release rate of the combustion product during combustion, the heat release rate of the material is also the most ...
...rate of building materials" and ISO5660-1:2002 "Test method for heat release rate of building materials". 2. The scope of use: The oxygen consumption calculated by the oxygen concentration in ...
... "Test method for heat release rate of building materials". 2. The scope of use: The oxygen consumption calculated by the oxygen concentration in the gas flow of the combustion product and the heat...
..." and ISO5660-1:2002 "Test method for heat release rate of building materials". 2. The scope of use: The oxygen consumption calculated by the oxygen concentration in the gas flow of the combus...
...also the material properties of the combustion products ofthecombustion burer of the most important parameters, more accurately measure the material during combustion heatrelease rate, for predicting fire ha...
...quot;Test Method for Heat Release Rate of Building Materials". Ii. Scope of Application The oxygen consumption calculated based on the oxygen concentration in the gas flow of combustion products and the...
... Speed Range 600–2800 600–3600 rpm Higher speed for smaller displacement models Max. Flow Rate (at 1800 rpm) 36 270 l/min Calculated at rated displacement Volumetric Efficiency (Rated Condition) ≥90% ≥92% % ...
...) overload only Speed Range 600–2800 600–3600 rpm Higher speed for smaller displacement models Max. Flow Rate (at 1800 rpm) 36 270 l/min Calculated at rated displacement Volumetric Efficiency (Rated Conditio...
... 600–2800 600–3600 rpm Higher speed for smaller displacement models Max. Flow Rate (at 1800 rpm) 36 270 l/min Calculated at rated displacement Volumetric Efficiency (Rated Condition) ≥90% ≥92% % At 160 bar, ...
... at rated displacement Volumetric Efficiency (Rated Condition) ≥90% ≥92% % At 160 bar, 1800 rpm, ISO VG 46 oil Total Efficiency (Nominal Operation) ≥......