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Fluid mechanical static experimental device
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Time:2024-03-15
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Fluid mechanical static experimental device,New Energy Vehicle High -pressure Control Experimental Device

Fluid mechanical static experimental device,New Energy Vehicle High -pressure Control Experimental Device
Purpose:
1. Deepen the understanding of the rules of stress transmission.
2. Master the transmission process and transmission method of static water pressure, and establish the concept of static water pressure transmission.
M--n configuration:
Water pumps, water supply tanks, high and low water tanks, --r pressure pipes, water supply pipes, siphon pipes, anti -stop valves, nozzles, st--nless steel brackets, etc.
Technical Parameters:
1. Operating environment: temperature 0-40 ° C, relative humidity: ≤90%RH, power supply: 220V/50Hz, which can be continuously operated.
2. Silent and environmentally friendly water pump: r--sing: 10m, rated flow: 12L/min, power: 90W.
3. Water tank: 60L, PVC material.
4. Height and low -level combination water tank: 30L volume, transparent organic glass material.
5. The fluid-water used in the experiment is designed with a full-cycle, which fully saves water resources.
6. The frame and countertop are made of 304 st--nless steel. The structure is compact, beautiful in appearance, and convenient to operate.
7. Dimensions: 1000 × 500 × 1800mm (length × width × height), the frame is a mobile design, with a foot wheel and imprisoned feet.

Fluid mechanical static experimental device,New Energy Vehicle High -pressure Control Experimental Device
1. Product introduction
Experimental tr--ning tables for high -voltage electrical control assembly real devices can be used to complete the experimental tr--ning content related to pure electric vehicle charging power distribution system, and the physical hardware platform connection of the charging system can be used. Suitable for the demolition and m--ntenance, structure and principle cognition, system operation, functional dynamic demonstration, fault detection and diagnostic teaching needs of the theories and m--ntenance tr--ning of pure electric vehicle charging systems and m--ntenance tr--ning.
2. Functional characteristics
1. The tr--ning table is connected to the frames such as power batteries and electric drives to display the structure and principles of high -voltage power distribution control and charging systems, dynamically demonstrate the work process of high -voltage power distribution control and charging system.
2. High -voltage distribution box and power battery pack are seized transparent modification to display the structure of the internal control device.
3. The panel uses a 4mm thick aluminum plastic panel, and the vertical installation panel UV tablet inkjet is printed with colorful complete standard system map boards; students can intuitively control the map board and real objects, understand and analyze the working principle of the system.
4. Electrical signals that detect terminals on the panel and can directly detect system circuit components on the panel, such as resistors, voltage, current, frequency signals, etc.
5. Install the fault simulation system to achieve the f--lure settings and diagnosis and exclusion of the low -voltage circuit system. A common faulty setting and assessment fault point can be set.
6. The equipment framework is built with two integrated all -aluminum alloy materials: 40mm × 40mm and 40mm × 80mm. , Easy to move.
7. Supporting tr--ning (experiment) guidance and other teaching materials, including key points of work principles, tr--ning items, fault settings and analysis.
8. Install safety protection device: emergency shutdown switch, mechanical power total switch, m--ntenance switch, protective protection cover, high -voltage safety protection device and warning prompts.
9. Machinery assembly and fitter assembly virtual simulation software: This software is developed based on Unity3D. It can select 6 -level image quality. It has the design and virtual disassembly of the reducer and shaft structure, the design and simulation of common mechanical institutions, institutional resource libraries, institutional resource libraries. Typical mechanical institutions (virtual disassembly of gasoline engines), software is an overall software, which cannot be separate resources.
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