• Hydrostatic Pressure Fluids Engineering Training Equipment Educational Equipment Vocational Training Equipment
  • Hydrostatic Pressure Fluids Engineering Training Equipment Educational Equipment Vocational Training Equipment

Hydrostatic Pressure Fluids Engineering Training Equipment Educational Equipment Vocational Training Equipment

No.ZM8142
ZM8142 Hydrostatic Pressure Fluids Engineering Training Equipment Educational Equipment Vocational Training Equipment
Overall dimension
500mm×500mm×500mm
Height of fulcrum above quadrant
100mm
  • Hydrostatic Pressure Fluids Engineering Training Equipment Educational Equipment Vocational Training Equipment

Description

ZM8142 Hydrostatic Pressure Fluids Engineering Training Equipment Educational Equipment Vocational Training Equipment
1. Equipment introduction
1.1 Overview
This device is used to study the total hydrostatic pressure, that is, the total pressure exerted by a stationary liquid on a flat or curved surface in contact with it. Hydrostatic pressure refers to the pressure generated by liquid. Physiologically speaking, hydrostatic pressure is the pressure exerted by the accumulated liquid in a certain part of the body on its surrounding tissues. For example, in physiology, the pressure of tissue fluid on capillary walls. If a part of the water body is isolated from a stationary liquid and studied within the dotted line in the figure, the surrounding force on the surface of the isolation body must be offset to keep the water body in a stationary state, which is hydrostatic pressure. Definition of hydrostatic pressure: When the fluid is in equilibrium or relative equilibrium, the stress acting on the fluid is only normal stress and no tangential stress. At this time, the negative normal stress on the fluid action surface is hydrostatic pressure. powerful.
1.2 Features
(1) Educational applicability: The device has a sturdy structure and can be quickly set up, making it very suitable for daily teaching use in schools and universities.
(2) Experimental function: This device can be used to experimentally study the pressure distribution in a liquid when gravity is considered, the "lateral force" of hydrostatic pressure, the pressure center of the lateral force, and two performance parameters.
(3) Precise readings: The device comes with a transparent measuring container and ruler with millimeter graduations, allowing for precise water level and lever arm readings.
(4) Structure description: including water container, positioning pin, slider, stop pin, water level scale, float, weight and handle and other components.
(5) Balanced design: The water container is designed as an annular segment with a constant cross-section, which can determine the pressure force and pressure center.
(6) Combination of theory and practice: The device design allows the combination of theoretical calculations and experimental observations to verify the theory of hydrostatic pressure.
(7) Easy operation: The use of the device includes steps such as balancing the water container, making measurements, adding additional weight, etc., and recording and evaluating the data through the worksheet in the appendix.
2. Technical parameters
Distance between suspension mass and fulcrum: 275mm
Total depth of fully immersed quadrant: 160mm
Height of fulcrum above quadrant: 100mm
Overall dimensions: 500mm×500mm×500mm
Measuring container capacity: about 1.8 liters
Weight: about 10kg

3. Components list and detailed introduction
3.1 Main part

No

Name

1

Counterweight

2

knob slider

3

Positioning latch

4

water tank

5

water level scale

6

stop pin

3.2 Accessories

No

Name

Qty

1

50gHook weight

1

2

50g weight

1

3

100g weight

1

4

200g weight

3

4. Experiment list
Experiment 1 Theoretical Experiment on Pressure Center
Experiment 2 Vertical pressure center experiment
Experiment 3 Inclined Center of Pressure Experiment