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Camera a shock termico

Precision Thermal Shock Chambers for Extreme Temperature Testing

Two-zone design achieves rapid temperature shifts from -55°C to +180°C with superior stability and control.

thermal shock chambers

Camera a shock termico Overview

thermal shock chambers

A thermal shock chamber is used to test how materials and components respond to extreme temperature changes. By rapidly switching between high and low temperature zones, it simulates sudden thermal stress that products may experience in real-world environments.
 
LNEYA thermal shock test chambers are engineered for precise temperature control, fast transfer speed, and reliable performance. Ideal for electronics, automotive, and aerospace testing, they help manufacturers ensure product durability, stability, and long-term reliability under harsh conditions.

Camera a shock termico Features

  • Temperature Range: −55°C to +180°C
  • Temperature Zone Switching Time: ≤10 seconds
  • Temperature Recovery Time: ≤5 minutes
  • Control Accuracy: ±1°C
  • Dual-Zone Hot & Cold Chamber Design
  • PID/PLC Intelligent Control System
  • High-Transparency Window
  • Stainless Steel Centrifugal Fan Blades
  • Electric Heating
  • Cascade Refrigeration
  • Variable Frequency Compressor
  • Safety Protection Features
  • SUS304 Stainless Steel Inner Chamber
  • 7-Inch Color Touchscreen
  • PT100 Class-A Platinum Resistance Sensor

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Camera a shock termico Applicazioni

Thermal shock chambers are widely used in industries where components and materials are exposed to rapid temperature changes. By simulating extreme conditions, a thermal shock test chamber allows engineers to evaluate the durability and reliability of electronic parts, automotive components, semiconductors, and other critical devices.
 
During a temperature shock test, products undergo sudden transitions between high and low temperatures, revealing potential weaknesses such as cracks, delamination, or functional failures. Thermal shocking in a controlled environment helps manufacturers identify and address these issues before mass production, ensuring higher product quality and safety.
 
Modern thermal shock testers provide precise control over temperature ranges and switching times, making thermal shock testing more efficient and repeatable. Whether for research, quality assurance, or certification purposes, a thermal shock test chamber is an essential tool for verifying material performance under rapid thermal stress.

Camera a shock termico Related

FAQ

A thermal shock chamber, also known as a thermal shock tester or temperature shock test chamber, is a specialized piece of equipment designed to expose products or materials to rapid changes between high and low temperatures. It helps evaluate how components respond to sudden thermal stress and assess their durability and reliability under extreme conditions.

Thermal shock chambers are used to identify potential weaknesses in products, such as cracking, delamination, or malfunction, before they reach the market. Conducting a thermal shock test ensures higher product quality, reliability, and safety, which is especially important for electronics, semiconductors, automotive parts, and other temperature-sensitive components.

A thermal shock chamber works by rapidly transferring a test sample between hot and cold zones or by quickly changing the chamber temperature. The sample experiences sudden temperature fluctuations, simulating real-world thermal stress conditions. Modern thermal shock testers use precise control systems, such as PID or PLC, to maintain accurate temperature ranges and switching times for repeatable and reliable testing.

A two-chamber thermal shock test chamber typically has one hot zone and one cold zone. The test sample is transferred between these two zones to experience rapid temperature changes. A three-chamber thermal shock chamber adds a middle or transitional chamber, which allows for more complex testing cycles, faster temperature switching, and better simulation of real-world thermal shocks. The choice depends on the required testing standard, sample size, and the speed of temperature change needed.

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