Rising Table with Capillary Tube Clamp
Product Code : SCL-MH-11959
Engineered for the empirical determination of surface tension via the capillary rise method, this apparatus facilitates precise vertical displacement of fluid reservoirs relative to fixed-position capillary tubes.1 Designed for University and Secondary Physics laboratories, it supports experimental protocols aligned with ASTM D1331 standards. The ruggedized assembly ensures high-repeatability data acquisition in fluid dynamics and molecular physics curricula.
Technical Specifications
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Tender Specification |
OEM Technical Detail |
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Material Grade |
Heavy-duty powder-coated cast iron base; Nickel-plated mild steel vertical rod |
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Adjustment Mechanism |
Fine-thread lead screw for precision vertical table displacement |
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Clamping System |
Integrated multi-bore capillary tube clamp with parallel alignment lock |
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Base Dimensions |
Approximately 200mm x 125mm (Stabilized footprint) |
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Rod Height |
450mm - 600mm (Standardized for laboratory bench clearance) |
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ISO Compliance Code |
Manufactured under ISO 9001:2015 Quality Management Systems |
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HS Code |
9023.00.00 (Instruments, apparatus and models, designed for demonstrational purposes) |
Key Pedagogical Outcomes
Feature: Fine-pitch Lead Screw Mechanism. -Outcome: Enables micrometer-scale vertical adjustment of the reservoir, supporting accurate meniscus alignment for Fluid Mechanics Module 2.1.
Feature: Multi-tube Clamp Assembly. Outcome: Facilitates simultaneous comparison of capillary rise across varying bore diameters, reinforcing Jurin’s Law and the inverse relationship between radius and height.
Feature: Stabilized Cast Iron Foundation. Outcome: Minimizes vibration-induced surface disturbances, ensuring the integrity of surface tension (gamma) calculations during high-precision metrology exercises.
Feature: Chemical-Resistant Table Surface. Outcome: Permits the use of diverse surfactants and reagents without structural degradation, extending the instrument's utility across Chemistry and Physics departments.
International Logistics & Compliance
As a specialized Educational Instrument OEM, we ensure all units are prepared for global distribution via export-grade seaworthy crating (ISPM-15 compliant) to prevent transit-induced misalignment. Documentation included with every consignment comprises the Manufacturer’s Authorization Form (MAF), IQ/OQ/PQ Certification, and comprehensive Technical Manuals in English. The apparatus features a tropicalized design, utilizing corrosion-resistant coatings tested for sustained operation in laboratory environments reaching 45°C and 90% humidity.
Why Source from the OEM?
Procuring directly from the OEM ensures vertical integration of the manufacturing process, from the initial sand casting of the base to the precision threading of the rising mechanism. Unlike third-party traders, our components are batch-tested for lead-screw linearity and clamp parallelism to ensure uniform performance across large-scale tenders. Direct factory spares availability and specialized technical support eliminate procurement lag, providing a sustainable decadal lifecycle for institutional laboratory assets.
