4. How fast must a gear pump be run to produce a flowrate of 4.0 GPM if the displacement is 0.4 in³?

Precision Machining Technology (MindTap Course List)
2nd Edition
ISBN:9781285444543
Author:Peter J. Hoffman, Eric S. Hopewell, Brian Janes
Publisher:Peter J. Hoffman, Eric S. Hopewell, Brian Janes
Chapter8: Computer Numerical Control
Section8.8: Computer-aided Design And Computer-aided Manufacturing
Problem 6RQ: Why should a toolpath be verified on the screen of a CAM system prior to creating the program code?
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4. How fast must a gear pump be run to produce a flowrate of 4.0
GPM if the displacement is 0.4 in³?
0
5. Draw the schematic symbol for a check-valve.
6. Draw the schematic symbol for a pressure relief valve.
7. Draw the schematic symbol for a 4-way, 3-position, manual
control, spring-centered, closed-center directional control valve.
8. Draw a schematic diagram for a hydraulic system that controls a
double-acting cylinder for a log-splitter. Your design must
include the following components:
a. Electric Motor
b. Hydraulic Pump
c. Foot Valve
d. Pressure relief valve
e. 4-way, 2-position, manually activated, detented directional
control valve
f. Double-acting cylinder
Transcribed Image Text:4. How fast must a gear pump be run to produce a flowrate of 4.0 GPM if the displacement is 0.4 in³? 0 5. Draw the schematic symbol for a check-valve. 6. Draw the schematic symbol for a pressure relief valve. 7. Draw the schematic symbol for a 4-way, 3-position, manual control, spring-centered, closed-center directional control valve. 8. Draw a schematic diagram for a hydraulic system that controls a double-acting cylinder for a log-splitter. Your design must include the following components: a. Electric Motor b. Hydraulic Pump c. Foot Valve d. Pressure relief valve e. 4-way, 2-position, manually activated, detented directional control valve f. Double-acting cylinder
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