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Custom Large Environmental Chamber for Automobile and Parts: Ensuring Quality and Performance

Categories Walk In Chamber
Brand Name: PRECISION
Model Number: WIC-1000
Certification: ISO
Place of Origin: CHINA
MOQ: 1
Price: $6000
Payment Terms: T/T
Supply Ability: 100/month
Delivery Time: 15 working days
Packaging Details: Standard export packaging
Customized support: OEM ODM
Origin: China
Material: Stainless Steel
Controller: Programmable LCD Touch Screen
Temp accuracy:: 0.5°C
Temp uniformity: 0.5°C
Refrigerant: Environmental friendly R23/R404
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Custom Large Environmental Chamber for Automobile and Parts: Ensuring Quality and Performance

Custom Large Environmental Chamber for Automobile and Parts: Ensuring Quality and Performance

1. Introduction

In the highly competitive automotive industry, the quality and reliability of automobiles and their parts are of utmost importance. A custom - built large environmental chamber designed specifically for automotive applications is a crucial asset. This advanced equipment enables manufacturers to simulate a wide array of environmental conditions that vehicles and their components may encounter throughout their lifespan, from extreme heat and cold to high humidity and intense vibrations.

2. Key Features

2.1 Comprehensive Environmental Simulation

  • Temperature Extremes: The chamber can achieve a broad temperature range, typically from - 40°C to 150°C. This allows for the simulation of frigid winter conditions in polar regions and sweltering summer heat in deserts. Precise temperature control, with an accuracy of ±0.5°C, ensures that automotive parts are tested under exacting conditions. For example, engine components can be tested at high temperatures to evaluate their heat resistance and durability during long - distance high - speed driving.
  • Humidity Control: Humidity levels can be adjusted precisely from 20%RH to 95%RH. High humidity can cause corrosion in metal parts, while low humidity can affect the performance of certain materials like rubber and plastics. By simulating different humidity conditions, manufacturers can develop effective anti - corrosion measures and select materials that can withstand varying moisture levels.
  • Vibration and Shock Simulation: Equipped with advanced vibration and shock - generating systems, the chamber can replicate the vibrations and shocks experienced during vehicle operation on different terrains. This includes the constant vibrations on rough roads, the jolts from potholes, and the shocks during heavy - duty driving. Vibration frequencies can be adjusted from 1 Hz to 2000Hz, and shock amplitudes can be precisely controlled to test the integrity and reliability of automotive parts.

2.2 Spacious and Customizable Interior

  • Large - Scale Accommodation: The chamber features a large interior volume, capable of accommodating full - sized vehicles or large automotive components such as engines, transmissions, and chassis. Custom - sized dimensions can range from a length of 0.4 meters to 3] meters, a width of 0.4 meters to 3 meters, and a height of 0.5 meters to 3 meters. This allows for the testing of entire vehicle assemblies or multiple components simultaneously.
  • Flexible Fixturing and Mounting: To securely hold the automobiles and parts during testing, the chamber is equipped with a variety of customizable fixturing and mounting systems. These can be adjusted to fit different shapes, sizes, and weights of the test items. For instance, specialized brackets can be designed to hold a car engine in a running - like position, enabling the testing of its performance under various environmental conditions.

2.3 Advanced Monitoring and Control Systems

  • Real - Time Data Acquisition: A sophisticated monitoring system is integrated into the chamber, continuously collecting data on temperature, humidity, vibration, and other relevant parameters. Multiple sensors are strategically placed to ensure comprehensive data collection. For example, temperature sensors can be attached to critical engine parts to monitor their temperature variations during the test, while vibration sensors can detect any abnormal vibrations that could indicate component failure.
  • Automated Control and Adjustment: The chamber is equipped with an automated control system that allows for precise control of all environmental parameters. Operators can set complex test profiles, including ramping rates for temperature and humidity changes, hold times at specific conditions, and cycling sequences. The system can automatically adjust the parameters based on pre - set algorithms, ensuring consistent and accurate testing conditions.

3. Specifications

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