LBT-210RZK Negative-Pressure Environmental Simulation Thermal Vacuum Test Chamber
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Description
Product Introduction:
This product conducts thermal cycling tests on specimens under vacuum conditions. It is suitable for use in the aerospace, intelligent manufacturing, new energy, electronic instrumentation, electrical materials, automotive, metallurgical, and electronics industries, as well as for evaluating the performance characteristics of various electronic components in high‑temperature vacuum environments and for quality management purposes. It is also employed for drying, baking, and heat‑treating materials. In the defense and aerospace sectors, it simulates the vacuum, cold‑black, and solar radiation conditions of space under terrestrial conditions, enabling thermal vacuum and thermal balance tests. Furthermore, it can replicate the extreme temperature variations of the space environment, allowing for thermal vacuum testing of test articles while providing effective control, monitoring, and recording of their temperatures in a vacuum. This furnishes essential experimental conditions for research on related aerospace products. During simulated testing, specimens are typically operated under working conditions, with both operational and environmental parameters measured.
Product Features:
Temperature Monitoring System: K-type, for high-temperature applications
Vacuum level display method: standalone digital vacuum gauge and touchscreen display.
Temperature display mode: color touchscreen digital meter; features real-time temperature logging, curve data batch recording and query, as well as alarm and fault log storage with historical playback and retrieval.
Vacuuming method: Automatic vacuuming
Cabinet structure: An independent control and heating chamber; the vacuum system is connected to the heating chamber via piping.
Equipment material: Inner liner made of high-quality SUS304 stainless steel; outer frame constructed from cold-rolled steel sheet welded to channel steel; surface finished with electrostatic powder coating.
Door seal material: The tightness of the door closure is adjustable, and a one-piece, imported Japanese fluororubber door seal ensures high vacuum levels inside the chamber.
Insulation material: High-temperature-resistant, fireproof aluminum silicate
Safety devices: over-temperature alarm with automatic cutoff of the heating power, leakage protection, filament‑break alarm, phase‑loss protection, grounding, and other protective measures.
Technical Specifications:
| Device Model/Name | DZF-210RZK Negative-Pressure Environmental Simulation Thermal Vacuum Test Chamber |
| Temperature control range | RT+15~+400℃ |
| Vacuum chamber dimensions | 650*600*550mm (Width*Depth*Height) |
| Overall dimensions of the machine | Approx. 1450*1550*1930 mm |
| Ultimate vacuum degree | Limit: 10⁻³ Pa (i.e., 0.001 Pa) |
| Temperature resolution | 0.1℃ |
| Temperature fluctuation degree | ±0.5℃ (under steady-state conditions) |
| Temperature uniformity | ±5.0℃ at 350℃ |
| Heating rate | 400℃/30min |
| Power Supply/Voltage | 380V/50Hz three-phase five-wire system |
| Nitrogen flow rate | 0~100 L/min |
| Main Pump System | Preliminary pump: oil pump (rapidly starts to reduce pressure when the pressure drops from atmospheric to 10 Pa) Secondary pump: composite molecular pump (pressure reduction begins when the pressure drops from 10 Pa to 10⁻³ Pa) |
| Installed capacity | 14KW |
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