Product Details

 

ZY6017D-PC Non-Combustibility Apparatus

ZY6017D-PC Non-Combustibility Tester is specifically designed for conducting non-combustibility tests on the main components of homogeneous or non-homogeneous building products in accordance with the ISO 1182:2020 test standard. This testing equipment can maintain a stable temperature of 750°C for extended periods (with a maximum temperature of 900°C) and records data at a frequency of 3 times per second. The equipment features a robust and durable design, equipped with precise sensors and an automated control system to ensure reliable and repeatable test results.

Test Standards

ISO 1182:2020, ASTM E2652

Equipment Standards

EN 13501-1

Apparatus Details

Description

This uniquely designed non-combustibility testing device integrates the furnace, temperature measurement, control system, and data acquisition functions into a single laboratory testing system. The test setup includes a heating furnace, a specimen holder, an airflow hood, thermocouples, a power controller, and a computer control unit.

Standards Compliance:

ISO 1182:2020

<Reaction to fire tests for products -Non-combustibility test>

EN 13501-1

<Fire classification of construction products and building elements> - Part 1: Classification using data from reaction to fire tests

Tester Core Equipment

Heating Furnace

The heating furnace tube is made of bauxite refractory material with a density of (2800 ± 300) kg/m³, measuring 150 ± 1 mm in height, 75 ± 1 mm in inner diameter, and 10 ± 1 mm in wall thickness. K-type thermocouples with a 0.3 mm diameter and an outer diameter of 1.5 mm are arranged in accordance with the ISO 1182:2020 standard. The new thermocouple has undergone artificial aging prior to use to reduce its reflectivity.

Central Control Center

To capture non-combustibility test data for building materials exposed to 750°C for extended periods, the central control system employs temperature sensors with an accuracy of 0.1°C. It precisely records temperature data three times per second and displays the results in real time on a computer graph; within the 700°C measurement range, the error margin is less than ±1°C.

Computer Control Unit

This serves as the “brain” of the entire non-combustibility testing system. The main unit provides a LabVIEW-style user interface and comprehensive safety mechanisms. Throughout the non-combustibility test, it displays real-time testing results, automatically and accurately records key data—including material information, initial temperature, maximum and final temperatures of the furnace and test specimen, required temperature rising, total combustion time, mass loss, and other key factors. Also it can plot precise curves based on the dynamic data. Experimental data can be permanently stored, retrieved, and printed.

Notes: This non-combustible testing machine measures approximately 405 mm (length) × 360 mm (width) × 1,800 mm (height). Please set aside sufficient space for the equipment based on these dimensions and ensure that the unit is in a well-ventilated area throughout the entire testing process.

Core Advantages

Temperature Drift Not Exceeding 2°C

The average temperature inside the test furnace is maintained at +(750 ± 5)°C for at least 10 minutes, with temperature drift (linear regression) not exceeding 2°C over that 10-minute period. Precise temperature control ensures that the impact of temperature drift on the non-flammability test results is minimized.

9 Thermocouples for Accurate Temperature Measurement

To ensure real-time monitoring of the temperature during the test process, we have equipped the test instrument with 9 thermocouples. In addition to monitoring the furnace temperature and sample temperature, we have included one thermocouple to measure ambient temperature and four for calibration.

Automated Processing

Before the test begins, the operator simply enters data according to the system’s preset requirements. The software then simultaneously collects data and plots graphs based on measurements taken during the test. Upon completion of the test, it generates an accurate product report indicating whether the product has passed the test.

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