Description
Product Overview
The Aqur2020 Crucible Triangle set is engineered for laboratories that demand reliable, heat‑resistant support during high‑temperature experiments. Each package contains five triangular supports, each measuring 65 mm in length, crafted from premium ceramic pipe material that can endure temperatures well beyond typical laboratory heating ranges. The ceramic tubes are hollow, allowing iron reinforcement wires to run through the core, which dramatically increases load‑bearing capacity while preserving the lightweight nature essential for easy handling. The triangular geometry provides a stable three‑point base that cradles rounded crucibles, distributing heat evenly and preventing localized stress that could cause the crucible to crack or burst. Designed to integrate seamlessly with standard lab tripods, the supports fit snugly onto tripod heads, creating a secure platform that minimizes wobble and reduces the risk of accidental spills. The surface of each support is smooth yet textured enough to grip the crucible without slipping, ensuring consistent positioning throughout the heating cycle. With a product dimension of 0.39 × 0.39 × 0.39 inches and a weight of 1.41 ounces per set, the supports are compact enough to store conveniently yet robust enough to handle the demands of routine analytical chemistry, materials synthesis, and educational demonstrations. The Aqur2020 brand, recognized for its commitment to quality laboratory equipment, guarantees that each support meets stringent safety standards, providing peace of mind for researchers, instructors, and students alike.
Beyond its functional attributes, the Crucible Triangle set reflects thoughtful design considerations that address common laboratory challenges. The heat‑resistant ceramic composition resists thermal shock, allowing rapid temperature changes without compromising structural integrity. The iron reinforcement not only adds strength but also improves thermal conductivity, helping to dissipate heat more evenly across the crucible’s base. This dual‑material approach reduces the likelihood of hot spots that can lead to uneven reactions or sample degradation. Additionally, the supports are chemically inert, ensuring that no contamination is introduced into sensitive experiments. Their neutral gray color blends unobtrusively with typical lab environments, while the sleek triangular silhouette adds a modern aesthetic to the workspace. Whether used in a research university, a commercial R&D facility, or a high‑school chemistry lab, the Aqur2020 Crucible Triangle set delivers consistent performance, durability, and safety, making it an indispensable component of any heating apparatus.
Temperature stability is further enhanced by the ceramic’s low thermal conductivity, which slows heat transfer to the support itself, allowing the crucible to retain heat longer and reducing energy consumption. The design also incorporates a slight curvature at the contact points, aligning with the natural curvature of most crucibles and providing a gentle cradle that distributes pressure evenly. This thoughtful geometry minimizes the formation of stress concentrations that could otherwise lead to micro‑cracks over repeated heating cycles. For laboratories that require batch processing, the set of five supports enables simultaneous heating of multiple crucibles, improving throughput and experimental efficiency. Each support is individually packaged to protect the ceramic surfaces from scratches during shipping, ensuring that the product arrives in pristine condition ready for immediate use.
Usage
The supports are ideally employed whenever a crucible must be heated over an open flame, a hot plate, or within a furnace. In a typical workflow, the user places the triangular support onto a tripod, positions the crucible on the three‑point base, and then applies heat. This arrangement keeps the crucible elevated, allowing gases to escape freely and preventing direct contact with the heating element, which can cause uneven heating or damage. Researchers conducting metal alloy synthesis, inorganic precipitation, or organic compound distillation benefit from the stable platform, as it reduces the chance of accidental tipping during vigorous boiling or rapid temperature shifts. In educational settings, instructors can demonstrate safe heating techniques to students, showing how the triangular support mitigates the risk of crucible breakage and promotes proper laboratory etiquette. The supports also prove valuable in quality‑control laboratories where repeatable heating conditions are essential for accurate analytical results. Because the supports are compatible with a wide range of tripod models, they can be integrated into existing equipment without the need for additional adapters or modifications. Their lightweight nature allows for quick repositioning, while the robust construction ensures they can withstand repeated cycles of heating and cooling, making them suitable for daily use in busy lab environments.
Beyond standard heating, the Crucible Triangle can be used in specialized applications such as glassblowing workshops, where small crucibles hold molten glass, or in forensic laboratories for sample preparation that requires precise temperature control. The ability to stack multiple supports, if needed, provides flexibility for experiments that involve layered heating or simultaneous processing of several crucibles. Users appreciate the ease of cleaning; the ceramic surfaces can be wiped with a lint‑free cloth or rinsed with distilled water, and the iron core does not rust under normal laboratory conditions. Overall, the versatility of the Aqur2020 supports makes them a go‑to solution for any scenario that demands reliable, heat‑resistant crucible stabilization.
In addition to conventional heating, the supports can be employed in microwave‑assisted synthesis when used with appropriate microwave‑compatible tripods, as the ceramic material is transparent to microwave radiation and does not absorb energy, thereby preventing overheating of the support itself. The triangular shape also facilitates easy removal of the crucible after cooling; users can lift the crucible by grasping the edges without disturbing the support, streamlining the workflow and reducing handling time. For labs that operate under strict safety protocols, the supports help maintain a clear separation between the heated crucible and the surrounding workbench, reducing the risk of accidental contact with hot surfaces.

Why Choose Us
Choosing the Aqur2020 Crucible Triangle means selecting a product backed by a manufacturer with a proven track record in laboratory safety and equipment reliability. Aqur2020 adheres to rigorous quality control processes, testing each support for thermal resistance, load capacity, and dimensional accuracy before it leaves the factory. This commitment to excellence translates into a support that consistently performs under demanding conditions, reducing the likelihood of unexpected failures that could jeopardize experiments or endanger personnel. The brand also offers responsive customer service; any inquiries regarding product specifications, compatibility, or warranty claims are addressed promptly by knowledgeable technical staff. In addition, Aqur2020 provides comprehensive documentation, including material safety data sheets and usage guidelines, ensuring that users have all the information needed to operate the supports safely and efficiently. The company’s dedication to sustainability is reflected in the use of recyclable ceramic materials and responsibly sourced iron, aligning with the growing emphasis on environmentally conscious laboratory practices. By investing in these supports, laboratories not only gain a durable, high‑performance tool but also benefit from the peace of mind that comes with a reputable supplier committed to ongoing innovation and support.
The Aqur2020 manufacturing process incorporates precision molding techniques that ensure each triangular support meets exact dimensional tolerances, guaranteeing uniform fit across all units. This consistency is crucial for reproducible experimental conditions, as even minor variations in support height or angle can affect temperature gradients within the crucible. Moreover, the company continuously monitors feedback from scientific users to refine product designs, demonstrating a commitment to iterative improvement. By selecting Aqur2020, laboratories gain access to a product line that evolves alongside emerging research needs, ensuring long‑term relevance and adaptability.
Furthermore, the Aqur2020 Crucible Triangle set is competitively priced, offering exceptional value without compromising on quality. The combination of heat‑resistant ceramic and reinforced iron core delivers a level of durability typically found in higher‑priced alternatives, allowing institutions to stretch their budgets while maintaining safety standards. The product’s positive customer reviews, reflected in an average rating of 4.4 stars, attest to its reliability and user satisfaction. Whether you are upgrading existing equipment or outfitting a new laboratory, the Aqur2020 supports provide a trustworthy solution that aligns with both performance expectations and fiscal considerations.
Key Features
- Heat‑resistant ceramic construction tolerates extreme temperatures, preventing deformation and ensuring stable crucible support throughout heating cycles.
- Triangular three‑point design offers superior stability, reducing wobble and minimizing the risk of spills or crucible breakage.
- Iron reinforcement within the hollow ceramic pipes enhances load‑bearing capacity, allowing the supports to hold heavier crucibles safely.
- Universal compatibility with standard laboratory tripods enables seamless integration into existing setups without additional adapters.
- Dedicated Aqur2020 customer support provides technical assistance, warranty coverage, and detailed usage documentation for optimal performance.
FAQ
Can the supports be used with a Bunsen burner?
Yes, the triangular supports are designed to sit on a tripod positioned over a Bunsen burner. The heat‑resistant ceramic material tolerates the flame’s temperature, while the iron core maintains structural integrity, allowing safe heating of crucibles without direct contact with the burner. Users should ensure the tripod is stable and the crucible is properly centered on the support to achieve even heating and avoid accidental tipping.
What is the maximum weight each support can hold?
Each support is engineered to bear up to approximately 200 grams, thanks to the internal iron reinforcement. This capacity is sufficient for most laboratory crucibles, including those made of porcelain, alumina, or quartz, ensuring reliable performance during typical experiments. For exceptionally heavy crucibles, users should verify the weight specifications and consider using additional supports to distribute the load evenly.
Are the supports compatible with all tripod sizes?
The supports feature a standard 10 mm diameter base that fits most common laboratory tripods. For tripods with slightly larger or smaller heads, the smooth ceramic surface can be gently adjusted to achieve a secure fit without the need for additional accessories. The design’s flexibility ensures a stable connection across a wide range of equipment, making it a versatile addition to any lab.
How should I clean the supports after use?
After cooling, wipe the ceramic surfaces with a lint‑free cloth or rinse with distilled water to remove residues. The iron core is corrosion‑resistant under normal laboratory conditions, so no special cleaning agents are required. Ensure the supports are completely dry before storage to prevent any moisture‑related issues. Regular cleaning helps maintain the supports’ appearance and performance over many heating cycles.
Do the supports come with a warranty?
Aqur2020 provides a one‑year limited warranty covering manufacturing defects. If a support fails due to material or workmanship issues within this period, the company will replace the item or issue a refund, subject to proof of purchase. Warranty claims are processed quickly through the dedicated support team, ensuring minimal disruption to laboratory operations.




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