Plastic Testing Equipment
Firestop inspection furnace
Firestop inspection furnace Technical parameters 1. Implementation standard: New version of GB 23864-2023 "Fireproof Sealing Materials". 2. Main purpose of the equipment: It can conduct fire resistance tests on all vertical sealing materials except for gap sealing materials. 3. Equipment highlights: - Small footprint, easy installation; -Equipped with sealed furnace walls and set up test openings; -Meet the fiber temperature rise curve and power temperature rise curve
Electric Bicycle Material Smoke Density Tester GB/T 8627, ASTM D 2843 TTech-GBT8627
Electric Bicycle Material Smoke Density Tester GB/T 8627, ASTM D 2843 TTech-GBT8627 Product Introduction: In a fire, people are suffocated by smoke or unable to escape due to the inability to see the way, so accurate testing of the smoke density of materials is crucial in preventing fires; The smoke density tester for building materials meets the technical indicators and requirements specified in the national standard GB/T8627-2007. It can be used to measure and describe the
Cone radiation calorimeter
Cone radiation calorimeter Structural characteristics 1.1. Integrated design of 19 inch standard cabinet, beautiful and elegant, easy to operate, avoiding interference factors such as vibration 1.2 Cone Heater - Within a truncated cone, 230V, 5000W, heat output ranging from 0 to 120 kW/m2 1.3. The entire testing process is controlled by a computer with a 19 inch touch screen 1.4. It has functions such as automatic ignition, automatic timing, automatic gas cut-off and shutdown
Long-term Moisture Infiltration Test Equipment
Long-term Moisture Infiltration Test Equipment meet the standard IEC61215-2 MQT13 IEC61215-2 MQT21 IEC61730-2 MST53 IEC62804 Test objective: To determine the ability of components to withstand long-term moisture infiltration effects Main technical parameters: Temperature range RT~150 ℃ Temperature deviation ≤± 1.0 ℃ (full load) Temperature fluctuation ≤ ± 0.5 ℃ (full load) Uniformity of box temperature ≤ 2 ℃ (full load) Sample temperature uniformity ≤ 2 ℃ (after stabilizing
Precision Temperature Humidity Test Chamber
Precision Temperature Humidity Test Chamber meet the standard IEC61215-2 MQT13 IEC61215-2 MQT21 IEC61730-2 MST53 IEC62804 Test objective: To determine the ability of components to withstand long-term moisture infiltration effects Main technical parameters: Temperature range RT~150 ℃ Temperature deviation ≤± 1.0 ℃ (full load) Temperature fluctuation ≤ ± 0.5 ℃ (full load) Uniformity of box temperature ≤ 2 ℃ (full load) Sample temperature uniformity ≤ 2 ℃ (after stabilizing for
High temperature and high humidity test chamber
High temperature and high humidity test chamber High temperature and high humidity test chamber meet the standard IEC61215-2 MQT13 IEC61215-2 MQT21 IEC61730-2 MST53 IEC62804 Test objective: To determine the ability of components to withstand long-term moisture infiltration effects Main technical parameters: Temperature range RT~150 ℃ Temperature deviation ≤± 1.0 ℃ (full load) Temperature fluctuation ≤ ± 0.5 ℃ (full load) Uniformity of box temperature ≤ 2 ℃ (full load) Sample
Firestop fire resistance furnace
Firestop fire resistance furnace Technical parameters 1. Implementation standard: New version of GB 23864-2023 "Fireproof Sealing Materials". 2. Main purpose of the equipment: It can conduct fire resistance tests on all vertical sealing materials except for gap sealing materials. 3. Equipment highlights: - Small footprint, easy installation; -Equipped with sealed furnace walls and set up test openings; -Meet the fiber temperature rise curve and power temperature rise curve
Firestop test furnace
Firestop test furnace Technical parameters 1. Implementation standard: New version of GB 23864-2023 "Fireproof Sealing Materials". 2. Main purpose of the equipment: It can conduct fire resistance tests on all vertical sealing materials except for gap sealing materials. 3. Equipment highlights: - Small footprint, easy installation; -Equipped with sealed furnace walls and set up test openings; -Meet the fiber temperature rise curve and power temperature rise curve requirements
Lab Cone Calorimeter for Material Combustion & Smoke Test
Lab Cone Calorimeter for Material Combustion & Smoke Test Ignition system 2.1, 10kV spark igniter, equipped with a safety stop fire device. The igniter is automatically positioned through a lever connected to the shut-off mechanism 2.2, and the system automatically ignites; Automatic timing; Automatic shut-off and shutdown; Exhaust system 3.1, composed of axial flow fan, stainless steel exhaust pipe, diffuser plate, smoke hood, exhaust pipe, orifice flowmeter and thermometer;
Cone fire calorimeter device
Cone heat flux calorimeter Structural characteristics 1.1. Integrated design of 19 inch standard cabinet, beautiful and elegant, easy to operate, avoiding interference factors such as vibration 1.2 Cone Heater - Within a truncated cone, 230V, 5000W, heat output ranging from 0 to 120 kW/m2 1.3. The entire testing process is controlled by a computer with a 19 inch touch screen 1.4. It has functions such as automatic ignition, automatic timing, automatic gas cut-off and shutdown
Wire and cable bundle combustion and heat release testing device
Product Introduction The wire and cable bundle vertical combustion tester is designed according to the requirements of UL1685, GB18380.31 standards for wire and cable bundle combustion tests and other relevant regulations. And comply with IEC60332-3-10, KSCIEC60332-3-21~25 (Class A~D) standards. When a certain amount of gas is supplied to the box and a standard ignition source is used for ignition, this instrument can be used to test the vertical flame spread to the
Uneven snow load testing system
Uneven snow load testing system Meets standard: IEC 62938 ed.012020-05 Photovoltaic(PV)modules -Non-uniform snow load testing Equipment function: When the component is installed outdoors, it is installed at a 37 ° angle to the ground. When encountering heavy snow weather, the surface of the component will accumulate thick snow. Due to the inclined installation of the component at a certain angle to the ground, the surface with the lowest inclination angle carries the maximum
Grounding continuity testing system
Grounding continuity testing system Meets standard: IEC61730-2 MQT13 Test objective: To demonstrate that all exposed conductor surfaces of the component are mutually conductive and grounded. Equipment Introduction: Photovoltaic Grounding Resistance Tester is specially designed by our company for the grounding resistance characteristics of photovoltaic modules, also known as Grounding Continuity Tester. Programmable output test current DC 10~100A, testing range up to 0.01 μ Ω
Cable penetration seal test furnace
Cable penetration seal test furnace Technical parameters 1. Implementation standard: New version of GB 23864-2023 "Fireproof Sealing Materials". 2. Main purpose of the equipment: It can conduct fire resistance tests on all vertical sealing materials except for gap sealing materials. 3. Equipment highlights: - Small footprint, easy installation; -Equipped with sealed furnace walls and set up test openings; -Meet the fiber temperature rise curve and power temperature rise curve
Medium Fire Test Furnace for Construction Fire Resistance Evaluation
Medium Fire Test Furnace for Construction Fire Resistance Evaluation Other requirements -The furnace top shell is insulated with low insulation materials -The combustion system is capable of generating standard heat within the furnace chamber, Time temperature curve with a duration of up to 240 minutes -The furnace wall lining/insulation layer should be made of ceramic fiber modules or equivalent materials that meet the testing standards in terms of temperature and density
Mid-size Standard Fire Furnace
Mid-size Standard Fire Furnace Other requirements -The furnace top shell is insulated with low insulation materials -The combustion system is capable of generating standard heat within the furnace chamber, Time temperature curve with a duration of up to 240 minutes -The furnace wall lining/insulation layer should be made of ceramic fiber modules or equivalent materials that meet the testing standards in terms of temperature and density -The burner slag should be made of high
TTech-GBT8627 Smoke Density Analyzer for E-Bicycle Materials, GB/T 8627 ASTM D2843 Certified Equipment
TTech-GBT8627 Smoke Density Analyzer for E-Bicycle Materials, GB/T 8627 ASTM D2843 Certified Equipment Product Introduction: In a fire, people are suffocated by smoke or unable to escape due to the inability to see the way, so accurate testing of the smoke density of materials is crucial in preventing fires; The smoke density tester for building materials meets the technical indicators and requirements specified in the national standard GB/T8627-2007. It can be used to
Cone calorimetry tester
Reference standard - ISO 5660: Testing for fire reactions - Heat release rate, smoke production rate, and mass loss rate • ASTM E 1354: Standard test method for thermal and visible smoke release rate of materials • BS 476 Pt.15: Testing of building materials and building structures: - Method for testing product heat release rate • GB/T 16172-2007 Test method for heat release rate of building materials • NFPA 264, Structural characteristics 1.1. Integrated design of 19 inch
PID regulating testing unit
PID regulating testing unit Meet the standards: IEC61215-2 MQT21 IEC62804 Product Introduction The PID power supply has multiple channel outputs, which can provide multiple components for simultaneous testing. The voltage can be continuously adjusted, and the voltage parameters can be displayed in real time. 1. The power supplies are independent of each other and can output different polarities and voltage values at the same time. 2. PID monitoring communication, and
Laboratory Cone Calorimeter Combustion Performance Testing Equipment for Material Heat Release & Smoke Emission Measurement
Laboratory Cone Calorimeter Combustion Performance Testing Equipment for Material Heat Release & Smoke Emission Measurement Ignition system 2.1, 10kV spark igniter, equipped with a safety stop fire device. The igniter is automatically positioned through a lever connected to the shut-off mechanism 2.2, and the system automatically ignites; Automatic timing; Automatic shut-off and shutdown; Exhaust system 3.1, composed of axial flow fan, stainless steel exhaust pipe, diffuser