Flask Stand, Silicon Manufacturer,Supplier and Exporter in India
Product Code : SCL-ELE-11905
The multi-stage Silicone Flask
Stand is engineered for high-thermal stability support of round-bottom and
flat-bottom vessels in University and Research laboratories. Featuring a 12-step interior geometry for
graduated vessel diameter compatibility, it meets ASTM safety standards for
anti-slip glassware handling. Calibrated for extreme temperature environments (-50°C to +250°C), it is optimized
for high-enrollment chemistry and TVET curricula.
Technical Specifications
|
Tender Specification |
OEM Technical Detail |
|
Material Grade |
High-Purity Polysiloxane
(Laboratory-Grade Silicone) |
|
Interior Geometry |
12-step concentric inner wall
for multi-vessel stabilization |
|
Operational Temperature Range |
-50°C to +250°C |
|
Vessel Compatibility |
Round Bottom Flasks, Flat
Bottom Flasks, Beakers |
Key Pedagogical Outcomes
·
12-Step
Graduated Inner Wall: Allows students to
secure a variety of glassware sizes with a single instrument, supporting
"Complex Synthesis and Distillation" modules.
·
Extended
Thermal Range (-50°C to +250°C): Enables safe observation of cryogenic and high-heat reactions,
reinforcing "Thermodynamics and Phase Transition" curricula.
·
High-Traction
Elastomeric Surface: Eliminates accidental
displacement of volatile chemical reagents, reinforcing "Laboratory Safety
and Hazardous Material Handling" protocols in Vocational training.
International Logistics & Compliance
To ensure long-term
polymer integrity during transcontinental maritime transit, all stands are
treated with anti-static inhibitors and secured in moisture-barrier primary
packaging within export-grade seaworthy crating (ISPM-15 compliant).
International procurement documentation includes the Manufacturer’s
Authorization Form (MAF), Batch-specific Certificate of Conformance (CoC), and
IQ/OQ/PQ certification for institutional quality audits. The component is fully
tropicalized; the silicone compound is batch-tested for operational stability
in environments reaching 45°C and 90% humidity to prevent premature material
fatigue or surface tackiness.
