Density Rod Manufacturer,Supplier and Exporter in India
Product Code : SCL-M-11517
The Thermal Density Indicator Rod is a precision-machined
aluminum cylinder engineered to demonstrate the relationship between fluid
temperature and buoyancy. Calibrated for high-sensitivity response to water
density fluctuations, it is optimized for Secondary and University-level
thermodynamics modules. This apparatus facilitates empirical observation of the
Kinetic Molecular Theory and complies with ASTM E1274 standards
for material uniformity.
Technical Specifications
|
Tender Specification |
OEM Technical Detail |
|
Material Grade |
Laboratory-grade Machined
Aluminum |
|
Dimensions |
0.65" Diameter x
3.5" Length (16.5mm x 88.9mm) |
|
Unit Weight |
0.5 oz. (14.17g) |
|
Calibrated Response |
Positive buoyancy in H2O
< 20°C; Negative buoyancy in H2O
> 40°C |
|
Surface Finish |
Anodized/Machined for
corrosion resistance |
Key Pedagogical Outcomes
·
Precision-Machined Aluminum Density: Allows students to "Analyze" the
infinitesimal density shift of water across a thermal gradient, supporting
advanced fluid dynamics modules.
·
Calibrated Buoyancy Threshold: Facilitates the "Evaluation" of
Archimedes' Principle as a function of temperature-dependent volume expansion
in liquids.
·
Integration with Activity Guide: Students "Apply" the scientific
method to predict sinking/floating transitions, reinforcing Application of the Kinetic Molecular Theory.
International Logistics & Compliance
This School Instrument is prepared for global institutional
distribution via export-grade seaworthy crating (ISPM-15
compliant), utilizing anti-corrosive internal packaging to protect
the machined surface during transit. Standard documentation for international
procurement officers includes the Manufacturer’s Authorization
Form (MAF), Certificate of Conformance (CoC), and Laboratory
Activity Guides in English. The tropicalized design
is tested for material stability in environments reaching 45°C and 90% humidity, ensuring the aluminum's
oxidation layer remains stable across diverse climates.
