QuestionJuly 1, 2025

Put each step of operation of the valve-type piston into the correct order. Prompts Step 1 Step 2 Step 3 Step 4 Answers square square The orifice prevents pressure from increasing and the accumulator valve moves against line pressure. Line pressure compresses the spring on the large land side of the valve. Pressure equalizes and fluid stops flowing through the orifice.

Put each step of operation of the valve-type piston into the correct order. Prompts Step 1 Step 2 Step 3 Step 4 Answers square square The orifice prevents pressure from increasing and the accumulator valve moves against line pressure. Line pressure compresses the spring on the large land side of the valve. Pressure equalizes and fluid stops flowing through the orifice.
Put each step of operation of the valve-type piston into the correct order.
Prompts
Step 1
Step 2
Step 3
Step 4
Answers
square 
square 
The orifice prevents pressure from increasing and the accumulator
valve moves against line pressure.
Line pressure compresses the spring on the large land side of the
valve.
Pressure equalizes and fluid stops flowing through the orifice.

Solution
4.3(255 votes)

Answer

1. Line pressure compresses the spring on the large land side of the valve. ### 2. The orifice prevents pressure from increasing and the accumulator valve moves against line pressure. ### 3. Pressure equalizes and fluid stops flowing through the orifice. Explanation 1. Initial Line Pressure Line pressure compresses the spring on the large land side of the valve. 2. Valve Movement The orifice prevents pressure from increasing and the accumulator valve moves against line pressure. 3. Pressure Equalization Pressure equalizes and fluid stops flowing through the orifice.

Explanation

1. Initial Line Pressure<br /> Line pressure compresses the spring on the large land side of the valve.<br />2. Valve Movement<br /> The orifice prevents pressure from increasing and the accumulator valve moves against line pressure.<br />3. Pressure Equalization<br /> Pressure equalizes and fluid stops flowing through the orifice.
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