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Custom Closed-End Quartz Tube Plug for High-Temperature Sealing-TOQUARTZ®

TOQUARTZ® Quartz Tube Plugs are precision-engineered from high-purity fused quartz (≥99.99% SiO₂). Available in both transparent and opaque variants with optional hanging loops, these end caps provide reliable sealing solutions for high-temperature furnaces, laboratory equipment, and vacuum systems. Withstanding temperatures up to 1100°C for continuous operation, our quartz stoppers deliver exceptional thermal stability and chemical resistance.
No MOQ
Custom Design
Factory Direct
Tech Support

Key Features of Quartz Tube Plug

TOQUARTZ® quartz tube plugs combine exceptional material properties with precision engineering to deliver reliable performance in demanding laboratory and industrial environments. Our high-purity quartz end caps excel where standard materials fail.

Temperature Resistance

Chemical Resistance

Precision Engineering

Quartz Glass Heat Insulation Plug Tube with Excellent Chemical Inertness
TOQUARTZ® Quartz Glass Tube Plug

Technical Specifications of Fused Quartz Tube Plug

TOQUARTZ® quartz tube plugs and end caps are manufactured to exacting standards to ensure consistent performance in critical applications.

ParameterValue/RangeTest Standard
Chemical Properties
SiO₂ Purity≥99.99%ASTM E222-23
Trace Impurities (Fe, Al, K)<10 ppmICP-MS Analysis
Physical Properties
Density2.2 g/cm³ASTM C693-93
Thermal Expansion Coefficient5.5×10⁻⁷/°C (20–300°C)ASTM E228-22
Thermal Conductivity1.4 W/(m·K)ASTM E1461-22
Max Working Temperature1100°C (continuous)Internal Testing
Mechanical Tolerances
Dimensional Precision±0.2mm (standard)ISO 2768-1
Surface Roughness (Ra)≤0.4 µmISO 4287:1997
Note: We offer custom specifications to meet your specific requirements. Contact our engineering team for consultation.

TOQUARTZ® Solving Challenges with Quartz Glass Tube Plug

Quartz Tube Plugs for High-Temperature Furnace Applications

Laboratory and industrial tube furnaces require reliable end caps that maintain atmosphere integrity at extreme temperatures. Standard ceramic or metal end caps often fail due to thermal expansion mismatch, chemical attack, or thermal shock, leading to experiment contamination and costly downtime.

Key Advantages

TOQUARTZ® solution

A German lab equipment OEM reported ceramic end caps cracking after 15–20 thermal cycles, causing 12% test failure rate. After switching to TOQUARTZ® plugs, they achieved 100+ cycles with zero cracking and reduced downtime by 80%. The client also noted improved gas retention and no contamination in high-acid vapor environments. This led to a 3-month extension of component replacement intervals and 18% cost savings.

Quartz Glass Tube Plugs for Vacuum System Sealing

Vacuum systems in research and semiconductor applications require end caps that maintain reliable vacuum integrity while withstanding high temperatures and corrosive environments. Leakage at end seals can compromise entire processes, resulting in extended downtime and wasted materials.

Key Advantages

TOQUARTZ® solution

A U.S. university lab using metal-sealed end caps faced 18% vacuum failure rate in plasma reactors. TOQUARTZ® plugs with precision-ground ends reduced leak rate to <1×10⁻⁹ mbar·L/s, verified via helium leak test. Outgassing dropped by 92%, improving vacuum stability and reducing chamber cleaning frequency. The lab extended maintenance intervals from 2 weeks to 6 weeks.

Fused Silica Tube Plugs with Loop for Vertical Suspension Systems

Vertical furnace systems require reliable components that can withstand high temperatures while supporting the weight of suspended tubes and materials. Traditional metal hooks and connectors introduce contamination risks and often fail at high temperatures, causing safety hazards and equipment damage.

Key Advantages

TOQUARTZ® solution

A Japanese materials institute used metal hooks in vertical furnaces, which deformed at 900°C and caused sample drops. TOQUARTZ® loop-integrated plugs held 1.5 kg loads for 72h at 1000°C with no deformation or fracture. Contamination from metal ions was eliminated, improving crystal growth purity by 15%. The institute standardized TOQUARTZ® plugs across 4 furnace lines, reducing defect rates by 22%.

TOQUARTZ® Custom Fused Silica Tube Plug Services

TOQUARTZ® offers comprehensive customization services for quartz tube plugs to meet your exact specifications. Our engineering team works directly with you to design and manufacture the perfect solution for your application.

Dimensional Customization

Material Options

Custom Design Process

Usage Guidelines for Quartz Tube Plug

Proper handling, installation, and maintenance of quartz tube plugs ensures optimal performance and extends service life. Follow these guidelines to maximize the value of your TOQUARTZ® products.

Handling & Storage

Installation

Thermal Cycling

Cleaning & Maintenance

Need Engineering Support for Your Quartz Tube Plug Application?

Our technical team provides free project consultation to help you select the right quartz stopper tube or
develop a custom solution for your specific requirements.
Contact us today for expert assistance.

Why Partner with TOQUARTZ

Direct Factory Advantage

As a direct manufacturer, we can cut out the numerous intermediate links.

Engineering Expertise

Technical team guides clients from material selection to design optimization, translating specs into deliverables.

Flexible Manufacturing

Handling standard & custom orders via small-batch expertise and prototyping rigor to meet urgent deadlines.

Quality
Assurance

Pre-shipment 3-step validation:
1. dimensional accuracy,
2. material purity ,
3. performance thresholds

Global Supply Chain

Reliable global logistics to industrial hubs (DE/US/JP/KR priority) with trackable milestones.

FAQ

Q: What is the difference between quartz tube plugs and ceramic end caps?

A: Quartz tube plugs offer several advantages over ceramic alternatives:

(1) Higher temperature capability with less deformation,
(2) Lower thermal expansion for better sealing at varying temperatures,
(3) Superior chemical resistance, especially to acids and halogens,
(4) Better thermal shock resistance, reducing cracking during cycling,
(5) Higher purity with fewer contaminants that might affect sensitive processes.

A: TOQUARTZ® quartz tube plugs can withstand continuous operation at 1100°C and short-term exposure (up to 2 hours) at temperatures up to 1450°C. The softening point of our high-purity quartz is approximately 1780°C. For applications above 1100°C, we recommend discussing specific requirements with our technical team to ensure proper thickness and design parameters.

A: Yes, TOQUARTZ® quartz tube plugs are suitable for vacuum applications up to 10⁻⁶ Torr. For optimal vacuum sealing, we recommend our precision-ground sealing surfaces (≤0.4 µm Ra) and using appropriate vacuum-compatible gaskets or O-rings. Our high-purity quartz material has minimal outgassing compared to other materials, making it ideal for clean vacuum environments.

A: Transparent quartz tube plugs offer excellent UV and visible light transmission (>95%) and are ideal for applications requiring visual monitoring or UV exposure.
Opaque (milky) quartz tube plugs contain microscopic air bubbles that scatter light, resulting in reduced transparency but improved infrared reflection.
Opaque versions are preferred for thermal applications where heat retention is important or where light transmission must be minimized.

A: Quartz has excellent thermal shock resistance compared to other materials, but proper thermal cycling protocols extend service life. For optimal performance, we recommend heating rates not exceeding 10°C/minute and cooling rates not exceeding 15°C/minute from temperatures above 800°C. Uniform heating and cooling prevents thermal stress concentration. Our quartz tube plugs typically withstand hundreds of thermal cycles when proper protocols are followed.

Contact our engineering team for technical consultation and pricing. We’ll help you select the optimal specifications for your application requirements.

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