Nom de marque:
HAINUO
Model Number:
HN32HS
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Hollow Glass Bubbles are advanced materials composed primarily of a chemical composition that includes SiO2, Na2O, CaO, MgO, and Al2O3. These microspheres are engineered to provide exceptional performance in a variety of industrial applications due to their unique physical and chemical properties. With a true density ranging between 0.44 and 0.48 g/cm³, Hollow Glass Bubbles are remarkably lightweight, making them an ideal choice as lightweight fillers in numerous manufacturing processes.
One of the key advantages of Hollow Glass Bubbles is their excellent thermal insulation capabilities. Their hollow structure traps air within the microspheres, which significantly reduces heat transfer. This property makes them highly effective in applications where thermal insulation is critical, such as in building materials, paints, and composite structures. By incorporating Hollow Glass Bubbles, manufacturers can enhance the thermal insulation of their products, which helps in energy conservation and improves overall performance.
In addition to their thermal insulation properties, Hollow Glass Bubbles contribute to substantial cost reductions in production. Due to their low true density, they enable manufacturers to reduce the overall weight of materials and products without compromising strength or durability. This reduction in weight translates to lower shipping costs, easier handling, and improved efficiency in various industries. Moreover, the use of Hollow Glass Bubbles as fillers means that less raw material is required, further driving down production expenses and helping businesses reduce cost effectively.
The versatility of Hollow Glass Bubbles is evident in their wide range of applications. They are extensively used in rubber manufacturing, where they improve the mechanical properties of rubber compounds while reducing weight. In the ocean and marine industries, Hollow Glass Bubbles provide buoyancy and thermal insulation, making them valuable for underwater equipment and vessels. The automobile sector also benefits significantly from these microspheres, as they contribute to lighter vehicle components that enhance fuel efficiency and reduce emissions.
Another notable characteristic of Hollow Glass Bubbles is their low thermal expansion. This feature ensures dimensional stability under varying temperature conditions, which is crucial for applications involving thermal cycling or exposure to extreme temperatures. Products that incorporate Hollow Glass Bubbles maintain their shape and structural integrity better than those made with conventional fillers, leading to increased durability and longer service life.
In paints and coatings, Hollow Glass Bubbles serve as effective fillers that improve texture, reduce cracking, and enhance thermal insulation without adding excessive weight. Their chemical inertness and resistance to moisture make them suitable for harsh environments, extending the lifespan of coatings on buildings, vehicles, and industrial equipment.
Overall, Hollow Glass Bubbles represent a cutting-edge solution for industries seeking to improve product performance while reducing costs. Their combination of lightweight properties, thermal insulation, low thermal expansion, and chemical stability makes them indispensable in modern material science. By integrating Hollow Glass Bubbles into rubber, ocean, and automobile applications, manufacturers can achieve superior product quality and operational efficiency.
In summary, the unique composition of SiO2, Na2O, CaO, MgO, and Al2O3, combined with the remarkable physical properties of Hollow Glass Bubbles, enables their broad application as lightweight fillers, thermal insulators, and cost-saving additives. Their ability to reduce cost while enhancing thermal insulation and mechanical performance positions them as a valuable component in the future of advanced materials and industrial solutions.
| Chemical Resistance | High |
| Cost | Reasonable |
| True Density | 0.44-0.48 g/cm³ |
| Thermal Conductivity | 0.108 W/m·K |
| Moisture Content | < 0.5% |
| Application | Rubber, Ocean, Automobile Vehicle |
| Applications | Lightweight Fillers, Insulation, Composites, Paints |
| Bulk Density | 0.15 - 0.30 g/cm³ |
| Chemical Composition | SiO2, Na2O, CaO, MgO, Al2O3 |
| Compressive Strength | Up To 100 MPa |
This product helps prevent cracks, maintain dimensional stability, and reduce thermal expansion in various applications.
The HAINUO Hollow Glass Bubbles, model number HN32HS, are versatile materials designed to enhance a wide range of industrial and commercial applications. With a true density ranging from 0.44 to 0.48 g/cm³, these hollow glass bubbles offer an excellent balance of lightweight properties and structural strength, making them ideal for use in polyurethane molding processes. Their reasonable cost combined with superior performance makes them a preferred choice for manufacturers looking to optimize material efficiency without compromising quality.
One of the primary application occasions for HAINUO HN32HS hollow glass bubbles is in foam cushioning materials. Their low moisture content of less than 0.5% ensures stability and durability in foam products, providing enhanced cushioning and impact resistance. These bubbles significantly improve the foam's performance by reducing density while maintaining compressive strength, which can reach up to 100 MPa. This makes them perfect for packaging, automotive seating, and protective padding where lightweight yet strong cushioning is essential.
Another critical scenario where HAINUO hollow glass bubbles excel is in reducing thermal expansion in composite materials. Their low thermal conductivity of 0.108 W/m·K helps in minimizing heat transfer, which is crucial in applications requiring thermal insulation and dimensional stability under varying temperature conditions. By incorporating these bubbles into polyurethane molding, manufacturers can produce components that are more resistant to thermal deformation, thereby improving the longevity and reliability of the final products.
In addition to polyurethane molding and foam cushioning, the HAINUO HN32HS hollow glass bubbles are also widely used in coatings, adhesives, and sealants to enhance mechanical properties and reduce weight. Their high compressive strength and stable moisture content allow them to perform well in harsh environments, making them suitable for aerospace, automotive, and construction industries.
Overall, the HAINUO Hollow Glass Bubbles HN32HS offer a cost-effective solution to improve the performance and durability of materials across various applications. Their unique combination of low density, low thermal conductivity, high compressive strength, and minimal moisture content makes them indispensable in polyurethane molding, foam cushioning materials, and applications focused on reducing thermal expansion. These qualities ensure that products manufactured with HAINUO hollow glass bubbles are lightweight, strong, and thermally stable, meeting the demanding needs of modern industries.
HAINUO offers customized Hollow Glass Bubbles model HN32HS, made from high-quality glass material. These bubbles feature a wall thickness of 1 - 2 microns and a low thermal expansion, making them ideal for various applications including lightweight fillers, insulation, composites, and paints. Our customization services aim to reduce cost by optimizing the bulk density, which ranges from 0.15 to 0.30 g/cm³, ensuring efficient material usage. These hollow glass bubbles are especially beneficial for automotive applications, providing lightweight and durable solutions that help reduce cost while enhancing performance. Trust HAINUO to deliver tailored products that meet your specific industry needs.
Our Hollow Glass Bubbles product is supported by a dedicated technical team committed to ensuring optimal performance and customer satisfaction. We offer comprehensive technical support services including product selection guidance, application advice, and troubleshooting assistance to help you achieve the best results.
Our experts are available to provide detailed information on the physical and chemical properties of our hollow glass bubbles, helping you to integrate them seamlessly into your formulations and processes. We also offer customized solutions tailored to your specific needs and applications.
In addition to technical support, we provide a range of services such as training sessions, on-site consultations, and product demonstrations to ensure you are fully equipped to utilize hollow glass bubbles effectively. Our goal is to assist you throughout the product lifecycle, from initial inquiry to after-sales support.
We are committed to continuous improvement and welcome feedback to help us enhance our products and services. Trust our team to provide the expertise and assistance you need to maximize the benefits of hollow glass bubbles in your applications.
Q1: What are HAINUO HN32HS Hollow Glass Bubbles used for?
A1: HAINUO HN32HS Hollow Glass Bubbles are primarily used as lightweight fillers in composites, coatings, adhesives, and sealants to improve strength, reduce density, and enhance insulation properties.
Q2: What is the typical size of the HAINUO HN32HS Hollow Glass Bubbles?
A2: The HAINUO HN32HS model features microspheres with an average diameter tailored for optimal dispersion and performance, typically ranging from 30 to 50 microns.
Q3: Are HAINUO HN32HS Hollow Glass Bubbles resistant to chemicals?
A3: Yes, the HAINUO HN32HS Hollow Glass Bubbles have excellent chemical resistance, making them suitable for use in harsh chemical environments without degradation.
Q4: How do HAINUO HN32HS Hollow Glass Bubbles affect the density of materials?
A4: Incorporating HAINUO HN32HS Hollow Glass Bubbles significantly reduces the density of the composite materials, resulting in lighter products while maintaining strength and durability.
Q5: Can HAINUO HN32HS Hollow Glass Bubbles withstand high temperatures?
A5: Yes, the HAINUO HN32HS model exhibits good thermal stability and can withstand elevated temperatures, making them suitable for various industrial applications.
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