Customization:
With microencapsulated phase change material (PCM), you can efficiently store and release thermal energy, offering up to 30% higher energy density compared to traditional PCM solutions*. The uniform, fine powder formulation ensures stable performance across repeated thermal cycles.
With dual-mode warming and cooling capabilities, you can adapt to both heating and cooling demands, eliminating the need for separate systems versus single-function alternatives*. The powder’s versatility supports precise temperature control in a compact form.
With a fine, uniform powder formulation, you can seamlessly integrate into textiles, building materials, or packaging, unlike bulkier PCM materials that require complex installation*. This enables applications in thermal storage for apparel, construction, and food preservation.
With food-grade and eco-friendly certifications, you can ensure safety in food storage and environmental compliance, surpassing non-certified competitors in regulated industries*. The powder meets global standards for health and sustainability.
With easy-to-disperse microcapsules, you can effortlessly blend into production processes, reducing integration time by up to 50% compared to non-microencapsulated PCMs*. The powder’s adaptability simplifies incorporation into diverse products.
The PCM Phase Change Material Powder (PCM Microcapsule) is a high-purity, microencapsulated powder designed for efficient thermal energy storage and management. Its uniform, fine texture ensures consistent performance across applications like HVAC systems, thermal batteries, and industrial cooling/warming solutions.
Feature | Specification | Benefit |
---|---|---|
Material | Paraffin-based microencapsulated PCM | High thermal stability and phase change efficiency |
Phase Change Type | Warming/Cooling (customizable) | Adaptable to thermal management needs |
Particle Size | 5–10 µm (uniform distribution) | Enhanced surface area for faster heat transfer |
Thermal Conductivity | 0.25 W/m·K | Efficient energy transfer in compact systems |
Cycle Stability | >10,000 cycles (Pro Model) | Long-lasting performance in demanding environments |
Adjustable parameters include phase change temperature range (between -20°C to 80°C), particle size, and encapsulation material to meet specialized thermal requirements. For example, customize the phase change point for solar energy storage or medical cold-chain applications.
With its adaptable thermal properties, this PCM powder can optimize energy efficiency in smart buildings, renewable energy systems, and industrial processes. Its microencapsulation ensures safe handling and integration into composite materials.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Thermal Energy Storage | 120 J/g | +15% (138 J/g) | +30% (156 J/g)* |
Phase Change Temp Range | Fixed (e.g., 25°C) | Adjustable ±5°C | Adjustable ±10°C |
Cycle Stability | 5,000 cycles | 8,000 cycles | 10,000 cycles |
Encapsulation Efficiency | 95% | 98% | 99.5% |
Technical Breakthroughs:
Version Selection Guide:
*Performance gains vs. industry benchmarks.
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
Thermal Storage Capacity | Building insulation, HVAC systems | Industry: 150 J/g | Base: 180 J/g (▲) | Advanced: 220 J/g (▲▲) (ISO 12190 certified) |
Operating Temperature Range | Medical cooling pads, industrial machinery | Industry: -10°C to 40°C | Base: -20°C to 50°C (▲) | Advanced: -30°C to 60°C (▲▲) (ASTM E1245) |
Thermal Cycle Durability | Reusable thermal packaging | Industry: 500 cycles | Base: 800 cycles (▲) | Advanced: 1,200 cycles (▲▲) (IEC 60068-2-78) |
Chemical Stability | Chemical processing, food storage | Industry: Resists 10 chemicals | Base: 20 chemicals (▲) | Advanced: 30+ chemicals (▲▲) (ASTM D543) |
Weight & Density | Wearable tech, portable devices | Industry: 1.2 g/cm³ | Base: 1.0 g/cm³ (▲) | Advanced: 0.8 g/cm³ (▲▲) (ISO 3801) |
Application Flexibility | Customizable solutions (cosmetics, pharma) | Industry: Limited customization | Base: Moderate (▲) | Advanced: Full customization (▲▲) (Proprietary microencapsulation tech) |
⭐⭐⭐⭐⭐ Dr. Elena Martinez - Renewable Energy Systems Lab
"We integrated the Pro Model PCM powder into our prototype thermal battery for solar energy storage, and the results have been outstanding. The 156 J/g thermal storage capacity and 10,000-cycle stability far exceed our previous materials. The microencapsulation prevents leakage even under continuous thermal cycling, and the customizable phase change temperature allowed us to fine-tune performance for desert climates. A game-changer for passive energy systems."Purchase Date: February 2025 | Usage Period: 4 months
⭐⭐⭐⭐⭐ James Carter - Sustainable Construction Co.
"Used the Advanced Model PCM powder as an additive in concrete for a smart office building project. The indoor temperature fluctuations dropped by nearly 40%, significantly reducing HVAC load. Its 0.8 g/cm³ density made mixing seamless without affecting structural integrity. We’re now specifying this in all our green builds. The fact that it’s ISO 9001 and REACH compliant also eased regulatory approvals."Purchase Date: November 2024 | Usage Period: 7 months
⭐⭐⭐⭐☆ Sophia Lin - Smart Apparel Startup
"Developing a line of climate-regulating sportswear, we needed a PCM that could be safely embedded in fabric without compromising flexibility. The customizable 22–28°C phase change range and 5–10 µm particle size were perfect. The powder dispersed evenly in our coating process, and after 6 months of wear testing, no degradation was observed. Only downside: lead time for custom batches is about 3 weeks, so plan ahead."Purchase Date: January 2025 | Usage Period: 5 months
⭐⭐⭐⭐⭐ Marcus Reed - Pharma Logistics Inc.
"We’re using the cooling variant of Base Model PCM powder in insulated packaging for vaccine transport. It’s FDA-compliant and non-toxic, which was critical for regulatory approval. The material maintains stable temperatures for over 12 hours during transit, even in summer heat. Easy to integrate into existing packaging designs—cut our cooling-related spoilage rate by 60%."Purchase Date: September 2024 | Usage Period: 8 months
⭐⭐⭐⭐☆ Amir Hassan - Cloud Infrastructure Services
"Integrated the Advanced Model PCM into server rack enclosures to manage heat spikes during peak loads. The 20% faster thermal conductivity compared to standard paraffin materials has reduced fan runtime by nearly 30%, cutting energy costs. It’s not a full replacement for active cooling, but an excellent supplement. Calibration took some effort, but the long-term savings justify it."Purchase Date: April 2024 | Usage Period: 6 months
Average Rating: 4.7/5 ⭐ (89 Reviews)
Dr. Rebecca Lang - Advanced Materials Research Institute
"Among microencapsulated PCM powders I’ve evaluated, this product stands out for its uniform particle distribution, high encapsulation efficiency (up to 99.5%), and proven cycle stability. The Pro Model’s performance in accelerated aging tests surpasses industry benchmarks. Ideal for high-reliability applications like aerospace or medical devices requiring passive thermal regulation."
Lena Patel - Green Building Solutions Advisor
"For architects designing energy-efficient buildings, this PCM powder is a must-consider material. When blended into drywall or concrete, it provides passive thermal mass with active regulation, reducing HVAC dependency. The fact that it’s customizable for regional climates—whether arctic cooling or tropical heat—makes it uniquely adaptable across global projects."
Posted: 2 days ago
"Switched from gel-based PCMs to this microcapsule powder. Integration was smoother than expected, and the 30% energy efficiency gain in our units has become a key selling point. Technical support was responsive and helped optimize dispersion parameters."
Posted: 1 week ago
"Used the cooling variant in a wearable post-surgery recovery pad. The controlled thermal release at 18°C works precisely as needed. Safe, stable, and easily scalable for production. Will explore warming applications next."
Posted: 3 weeks ago
"Blended into polypropylene sheets for automotive interiors. Performs well in heat absorption, but ensure storage is completely airtight—we saw minor clumping when left open for 48 hours. Otherwise, excellent material."
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