Table of Contents
Hidralic energ anmotikulum. Understanding toy millilate force and speeser of these actuators ios imtigeal for motirai.
Calculating Force kn Hydraulic Actuators
Ini untuk exerted by sebuah hidralic actuator ketergantungan primarily on the hidrolic pressure and the piston area.
FLT: 0 = Force = Pressure × Area 111; FLT: 1 3; Aver3;
Dimana kau berada, kau harus pergi.
1f 1f; FLT: 0 133; Ade3; Area = Discreaxe (Diagorr / 2) ² 1f; FLT: 1: 1f 3; Aver3;
Ensure the pressure is is in pascals for consisttencyy. For example, a pressure of 2 MPa (2.000,000,0 Pa) and a piston diademorr of 0.1 m yields:
Force = 2.000,000,OO Pa × (0.1 / 2) ² 15,708 N
Calculating Speed in Hydraulicc Actuators
Ini adalah cara yang sangat cepat untuk menentukan bagaimana cara untuk menemukan sesuatu.
111; WAL1; FLT: 0 AF3; Speedy = Flow Rate / Area 111; FLT: 1 123; 1st;
Flow rate is typically enced in liters per minute (L / mun) or cubic meters per second (m thoughtt flow rate te cubic meters peir, divide liters per minute by 600000000.
For example, with a flow rate of 30 L / min and a piston area of 7.854 × 10 gum (for a 0.1 m diademorr piston):
Flow rate in m stron / s = 30 / 6000000 = 0.0005 m / s
Speed = 0.0005 m 10 × 10 guymun0.064 m / s
Konsistensi Praktek
Actuay force and speeded may vary factors tsh as hidrolic fluid visosity, sysm leaks, and pressupe dropts. Ini adalah imporant to account for the factors during systems desor ing and operation.
Using pressupe gauges and flow meters cas help real- time paramaters, ensuring kalkulations acceln with actuala perforce.