Programmable Thermal Shock Chamber

Programmable Thermal Shock Chamber

分类: ASLI 当前有货
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Reliability Test Systems

Programmable Thermal Shock Chamber

Engineered for rapid thermal stress testing, this chamber evaluates the resilience of material structures and composites subjected to instantaneous transitions between high and low temperatures. It is critical for identifying physical damage or chemical changes caused by thermal expansion and contraction in the shortest possible time.

Product Overview

The ASLI Thermal Shock Chamber features a multi-zone design (High Temp, Low Temp, and Testing) where samples can be tested in static or moving basket modes. Utilizing a touch-control graphical interface and a binary cooling system, it provides high-efficiency stress testing compliant with global standards.

Technical Highlights

  • Testing Temp Range-65°C to +150°C (up to 200°C)
  • Control Accuracy±0.5°C
  • Distribution Uniformity±2°C
  • Max Circulation Cycles9,999 Times
  • Internal MaterialSUS 304# Stainless Steel

Regulatory Compliance

  • GB/T2423.1-1989Low-temp. testing
  • GB/T2423.2-1989High-temp. testing
  • GJB150.5-86Temp. impact test
  • GJB360.7-87Temp. impact test
  • GB/T2423.22-1989Change temp. test

Performance Advantages

Binary Cooling System

Adopts a water-cooled binary cooling architecture for rapid cooling effects during extreme temperature transitions.

Touch-Graph Interface

Equipped with an intuitive touch-control graphical interface for simplified operation and precise test parameter monitoring.

Static Sample Mode

Maintains samples in a static mode while alternating wind routes to distribute thermal shock without physical sample movement.

Extreme Versatility

Offers automated circulation or manual selective shock options with shock times extending up to 999 hours.

System Configurations

Construction Material
Durability: The inner box is crafted from SUS 304# stainless steel, while the outer shell is available in stainless steel or cold-rolled steel with a high-quality paint finish.
Advanced Insulation
Efficiency: High-density, high-temperature resistant foam materials ensure minimal thermal leakage.

Technical Specifications

Category Parameter / Model Specification Detail
Chamber Name Thermal Shock Test Chamber High-rate thermal stress test chamber architecture
Model Options TS-49(A~C) Internal (WxHxD): 400x350x350 mm | External (WxHxD): 1400x1800x1400 mm
Model Options TS-80(A~C) Internal (WxHxD): 500x400x400 mm | External (WxHxD): 1550x1950x1550 mm
Model Options TS-150(A~C) Internal (WxHxD): 600x500x500 mm | External (WxHxD): 1600x2000x1700 mm
Temp Range Type A -40°C to +150°C (200°C Optional)
Type B -55°C to +150°C (200°C Optional)
Type C -65°C to +150°C (200°C Optional)
Control Precision Control Accuracy / Distribution Uniformity ±0.5°C / ±2°C
Structural Material Internal and External Material Inner box: SUS 304# stainless steel | Outer box: Stainless steel or see cold-rolled steel with paint coated
Insulation Insulation Material High temperature resistant, high density, formate chlorine, ethyl acetum foam insulation materials
Automation Shock Time / Cycles Up to 999H / 9,999 Cycles
Connectivity Communication RS-232 and RS-485 interfaces
Cooling System Method Binary water cooling system

Versatile Applications

Electronic Components

Testing durability of circuitry, plastic casings, and rubber seals under rapid temperature shifts.

Material Engineering

Evaluation of composite materials for thermal expansion, contraction, and structural integrity.

Product Development

Establishing baseline metrics for product improvement through intense environmental stress screening.

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