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UL1581 ASTM D2436 Air Ventilation Aging Testing Chamber

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UL1581 ASTM D2436 Air Ventilation Aging Testing Chamber

Brand Name : Zhongli

Model Number : ZL-6010A

Certification : ISO,CE

Place of Origin : Guangdong,China

MOQ : 1 set

Price : Negotiable

Payment Terms : T/T, L/C, D/A, D/P, Western Union, MoneyGram

Supply Ability : 100 sets per month

Delivery Time : 7~10 days after the order confirmed

Packaging Details : UL1581 ASTM D2436 Air Ventilation Aging Testing Chamber Packaged in wooden case

Product name : UL1581 ASTM D2436 Air Ventilation Aging Testing Chamber

Power supply : Three-phase 380VAC 50Hz

Ambient temperature : 5~35℃

Ambient humidity : ≤85% R.H

Temperature range : Ambient temperature +25℃~300℃

Control accuracy : ±0.5℃

Resolution accuracy : 0.1℃

Distribution error : ±2.5℃

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UL1581 ASTM D2436 Air Ventilation Aging Testing Chamber

Performance Indicators:

1. Power supply AC380V
2. Power 6KW
3. Temperature range Ambient temperature +25℃~300℃
4. Control accuracy ±0.5℃
5. Resolution accuracy 0.1℃
6. Distribution error ±2.5℃
7. Heating time From ambient temperature to 300℃, approximately 60 minutes.
8. Machine structure and materials

8.1. Inner chamber dimensions: 45cm (depth) × 50cm (width) × 50cm (height).

8.2. Outer dimensions approximately: 1040mm (length) × 650mm (width) × 1275mm (height)

8.3. Inner chamber material: SUS#304 stainless steel, outer case: baked paint.

8.4. Insulation material: High-density rock wool.

8.5. Heater: Spiral tube heater set: AC380V 6KW

Air Exchange Rate Test for Air Exchange Aging Test Chamber

Test Procedure

1. Seal all ventilation holes, doors, thermometer holes, and gaps around the blower (most surfaces can be effectively sealed with pressure-sensitive tape). Connect a standard watt-hour meter to the aging chamber's power system.

2. Control the working chamber temperature of the aging test chamber to 80±2℃ above the ambient temperature. The temperature inside the working chamber is measured from the central test point. The ambient temperature is measured 2m away from the aging chamber, at least 1m away from other surrounding objects, at a position nearly level with the aging chamber's air inlet.

3. When the temperature at the test point in the working space first reaches the control temperature and stabilizes for 2 hours, measure the electrical energy consumed by the aging chamber within 60 minutes.

4. Remove all seals, open the air exchange port, and follow the methods described in Article 2 and Article 3 to measure the electrical energy consumed by the aging chamber within 60 minutes (if the air exchange rate does not meet the specified range, readjust the ventilation opening).

Calculation of Test Results

5. Using the measured temperatures inside the chamber and the ambient temperature when the aging test chamber's air exchange port is sealed or open, calculate the arithmetic averages respectively. Convert the measured electrical energy consumption into average power.

N = 3590 • (P2 - P1) / V • d • △T

Where: N ----- Air exchange rate, times/hour;

P1 ---- Average electrical power consumed when sealed, W;

P2 ---- Average electrical power consumed when open, W;

△T --- Difference between the arithmetic average of the temperature inside the chamber and the ambient temperature, ℃;

V ---- Working chamber volume, L;

d ----- Density of air at the surrounding ambient temperature, g/L.

The calculation result of the above formula should meet the following requirements:

Air Exchange Rate

Forced convection type: Divided into two types, up to 100 times/hour; 100 ~ 200 times/hour should be adjustable.

UL1581 ASTM D2436 Air Ventilation Aging Testing Chamber


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