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Real time 3D Simulation Welding Electrical Training Equipment Quantitative Assessment System

Categories Mechatronics Training Equipment
Brand Name: RM
Model Number: F053
Certification: ISO9001/ISO45001/ISO14001,TUV
Place of Origin: HENAN,CHINA
MOQ: 1 unit
Payment Terms: T/T,Western Union
Supply Ability: 5 unit/30 days
Delivery Time: 30-45 work days
Packaging Details: wooden packing
Product name: Teaching Equipment
Function: Educational training equipment
Application: Training Center,educational training equipment
Type: Electrical and electronic basis examination&training equipment series
Item name: Electrical Teaching Equipment Model,Teaching instrument
Usage: Education School Sensor Experiment,Power Research
Category: Power training equipment,Electrical Engineering Trainer / Motor Technology Trainer
Feature: real and functional
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Real time 3D Simulation Welding Electrical Training Equipment Quantitative Assessment System

Product Introduction

This system combines simulation equipment, real-time 3D technology, and a rendering engine to deliver realistic training, with visual effects and operational feel authentic to real life. During welding drills, trainees can observe the welding arc and the process of welding fluid generation, flow, and cooling, while also hearing the corresponding welding sounds.

The RM-F053 Fusion Welding and Thermal Cutting Practical Training and Assessment Device (Single Station) features a simulation training system for stick arc welding, CO2 gas shielded welding, argon arc welding, and a programmable robotic welding system. It can also be seamlessly expanded to include multiple welding training systems.

This system can be seamlessly integrated with traditional welding skills training, providing an optimal teaching method for flexible, efficient, safe, economical, and environmentally friendly welding simulation training and assessment. Through the welding simulation training system, trainees not only gain the same operational experience as traditional training, but also utilize a series of advanced and unique teaching features, including built-in data acquisition, intelligent expert assistance modules, and a quantitative assessment and evaluation system. Combined with clear and logically integrated welding knowledge explanations, trainees receive precise welding training guidance that is difficult to quantify in traditional teaching practices. This significantly improves the direction and purpose of the training process, effectively shortens the training cycle, and reduces the teaching burden on teachers, achieving a low-cost, low-investment, "intensive teaching, intensive learning, and refined" welding training mechanism.

Technical Foundation

During operator training, multiple sensors in the system transmit real-time welding gun parameters to a computer. The computer processes and analyzes the data, displaying the corresponding welding images and sounds on the display and audio system. Welding training equipment should incorporate the following technologies:

  1. Digital image processing and information technology.
  2. Computer graphics, sensing and control technology.
  3. Various welding operation techniques and safe operating procedures.
  4. Integrate multiple high-tech technologies to present advanced methods of modern vocational education.
  5. The new welding training equipment is a low-cost, highly efficient, and modern welding training solution.
Visual Simulation System Structure

The visual simulation system structure includes:

  1. The data input module is primarily responsible for transmitting welding process parameters and welding gun motion parameter status information to the welding simulation model module and simulation engine module.
  2. The simulation model module is primarily responsible for static geometric modeling of the welding simulation environment, including the workpiece and welding gun, and for performing 3D graphics rendering of weld seam simulation, smoke, lighting, flames, shadows, and other special effects.
  3. The welding simulation engine is the core of the system, primarily exploring the relationship between the welding process, welding gun motion parameters, and weld cross-sectional geometric parameters.
  4. The simulation result output module includes the evaluation system module and other functional submodules. It is primarily responsible for real-time monitoring of the simulation status, outputting dynamic simulation results, and analyzing and evaluating simulation process data.
  5. Training effectiveness evaluation capabilities are provided: real-time visual control information feedback, real-time virtual weld inspection guidance, and real-time evaluation of the trainee's operating skills.
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