ISO 5659 Smoke Density Test Apparatus Fire Safety Testing Equipment for Materials
The ISO 5659 Smoke Density Test Apparatus is a vital fire testing machine designed to evaluate the smoke production of materials when exposed to fire. Meeting international standards like ISO 5659, this apparatus is crucial for assessing materials used in construction, automotive, and railway industries. The test helps determine how much smoke a material produces during combustion, which is critical in fire safety assessments.
Key Features:
Accurate Smoke Density Measurement: The Smoke Density Test Apparatus measures the optical density of smoke generated by burning materials, providing a clear indication of a material's smoke emission under controlled fire conditions.
Compliant with International Standards: Fully compliant with ISO 5659, ASTM E662, and BS 6853, ensuring that materials meet global safety and regulatory requirements for fire resistance and smoke emission.
Versatile Testing: Suitable for testing a wide range of materials, including plastics, composites, rubbers, and insulation materials used in various industries such as automotive, construction, and railways.
Real-Time Data: Provides detailed data on the rate of smoke release during a controlled combustion process, helping engineers and manufacturers understand the flammability and smoke toxicity of their materials.
High-Precision Instrumentation: The apparatus features a high-precision optical sensor and smoke chamber that captures real-time data, ensuring that your materials meet the fire safety regulations required by various industries.
Applications:
Construction: Testing building materials like insulation and cladding for smoke toxicity and fire resistance.
Automotive: Ensures vehicle components, such as seat covers and dashboards, do not produce excessive smoke in the event of a fire.
Railway: Ensures railway materials such as seats, flooring, and insulation meet fire safety standards and do not contribute to smoke hazards in case of fire.
Why Choose KDM Globals ISO 5659 Smoke Density Test Apparatus?
At KDM Global, we specialize in providing high-quality, reliable fire testing equipment. Our ISO 5659 Smoke Density Test Apparatus helps manufacturers ensure that their materials meet critical fire safety standards. Whether youre testing for smoke toxicity or flame retardancy, our apparatus ensures accurate, reliable, and compliant results.
Supplier: Paper cups, 2.5oz paper cups, ripple cups, single wall paper cups, coffee cups, tea cups, ice cream cups, pizza box, disposable cups, essential oils, rice, spices, soybean, corn, glass bottles, smoking paper, smoking pre roll cones, pre roll cones, smoking booklets, pre roll conus, smoking pre roll conus
Services: Customize/oem, freight forwarding
Supplier: Glass facade systems including insulated glass systems, tempered glass, laminated glass, sentry glass, heat soak tested glass, aluminium systems of building, facade, industrial applications with new mold and extrusions.
Services: Shipping and transsportation
Buyer: Pvb layers, float glass, aluminium billets, aluminium rolls, galvanized rolls, machinery production lines of relevant products.
JHG fire-resistant glass is combined with borosilicate glass and float glass technology, which fire resistant properties much superior to those of sode lime glass , the main character is : * high performance to bear high temperature , our tempered borosilicate glass 4.0 can withstand 120 minutes fire test . * Ultra light ,borostilicate glass 8% less than sode lime glass * Hign soften point in fire * High ligh transmission * No SO2 pollution ,no self-explosion Borosilicate 4.0 Technical data : Size: 1830*3000mm Density (g/cm�?�³) : 2.28�?�±0.1 Co-efficient of expansion (�?�±)(20-300�¢??) : 4.0�?�±0.1�??10-6k-1 Softening point(�¢??) : 845�?�±10 Light transmission :�?� �¢?�¥90(6mm) Main usage : 4.0 building partition ,facade ,door ,ceiling ,floor 3.3 household application ,optics , lighting
Description: The test apparatus suitable for measuring the smoke emitted by wires and cables burning under specific conditions, such as horizontal combustion of some cables or optical cables, are used as a means of comparing different cables or optical cables or judging whether they meet specific requirements under flaming or flameless combustion conditions. . It meets the test standard of GB/T17651.1-2-19.98 "Determination of smoke density in combustion of cables and optical cables under specific conditions". Performance parameters: Optical measuring device: The light source and receiver should be placed in the middle position outside the sealing window on the opposite wall of the combustion chamber. Measurement range: 0-100%. That is, the optical device will be energized before the blank test. Calibration of transmittance: calibration with transmittance of 25%, 50% and 75%. Standard Fire Source: Standard Fire Source: 1.0L+0.01L Alcohol Plate; Ethanol: 90% +/- 1%; Methanol: 4% +/- 1%; water: 6% +/- 1%. Control system: adopt DETECION control procedure and ZWH 4500 acquisition control card. Operating interface: WINDOWSXP operating interface, DETECION control program, perfect security mechanism. During the test, the measurement results are displayed in real time and the perfect curve is plotted dynamically.
SATINATED GLASS The acid etching or satina process is the removal of silisyum particles from the surface of glass using acid. In this way microscopic cavities occur on the glass surface and due to the refraction occurring in different directions our eyes perceive the glass to be white. It's greatest advantage against sanded glass is that it does not allow fingerprints and that it's cleaning is much easier. It has a much finer surface compared to sanded glass. â?? Our satina products are usually used in the interior decoration and furniture sectors. We can process clear float, extra clear, tinted ,reflective glasses and mirrors as a satina glass. Our satina products can be tempered, curved , and laminated. FEASIBILITY Max. Size: 2500 x 3210 mm, Max. Thickness: 19 mm Min. Size: 1605 x 2250 mm, Min. Thickness: 3 mm