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HS Code |
988080 |
| ChemicalName | Cyclotrimethylenetrinitramine |
| CommonName | RDX |
| CASNumber | 121-82-4 |
| MolecularFormula | C3H6N6O6 |
| MolecularWeight | 222.12 g/mol |
| Appearance | White crystalline solid (wet with water) |
| WaterContent | ≥15% |
| Density | 1.82 g/cm³ (pure, dry) |
| ExplosiveClass | High explosive |
| SolubilityInWater | Insoluble (dry), dispersed in water at ≥15% |
| MeltingPoint | 204 °C (decomposes) |
| Stability | Stable when wetted with water |
| Sensitivity | Much less sensitive when wetted |
| UNNumber | UN 0072 (wetted with ≥15% water) |
As an accredited Cyclotrimethylenetrinitramine [Water Content ≥15%] factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Cyclotrimethylenetrinitramine [Water Content ≥15%], 500g, packaged in a sealed, high-density polyethylene bottle within a secondary, UN-approved safety container. |
| Shipping | Cyclotrimethylenetrinitramine [Water Content ≥15%] must be shipped as a hazardous material under strict regulations. It should be packed in UN-approved containers, kept away from heat, sparks, and open flames, and clearly labeled. Transport requires compliance with international and local laws, ensuring secure handling and documentation for explosive substances. |
| Storage | Cyclotrimethylenetrinitramine [Water Content ≥15%] should be stored in a cool, dry, and well-ventilated area away from heat, sparks, open flames, and incompatible materials. It must be kept in tightly sealed, labeled containers and protected from physical damage. Storage areas should be equipped with appropriate spill containment and explosion-proof features, adhering strictly to applicable regulatory and safety standards for explosive substances. |
Applications of Cyclotrimethylenetrinitramine [Water Content ≥15%] in Industrial ManufacturingAs the direct manufacturer of high-moisture Cyclotrimethylenetrinitramine, we supply customers across key energetic material sectors that require precise application know-how. Highlighted below are the principal downstream industrial pathways, each described with process-specific compliance details, dosing ranges, integration procedures, and the actual finished goods produced. 1. Military and Commercial Explosives FabricationOur material plays a central role in the formulation of cast-loaded munitions and shaped charges where the high-energy content and controlled granulation with specified water content minimize dust hazards during blending. Producers incorporate it as the primary energetic phase for filling large caliber shells, boosters, and certain demolition charges. Exact solids content aligns with each user’s desired explosive power and handling properties, with additive rates carefully balanced for safety and targeted detonation characteristics. Industry compliance standards
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2. Rocket Propellant ManufactureWithin solid propellant plants, our product functions as a core oxidizer component, providing the oxygen-rich environment essential to sustained rocket thrust. Its moisture threshold supports safe handling in high-throughput blending operations while maintaining compatibility with polymeric binders. Adjusting the energetic ratio allows engineers to finetune burn rates and tailor mechanical strength for various missile and space-launch platforms. Industry compliance standards
Typical usage ratio
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3. Detonator and Blasting Cap AssemblyIn detonator cartridge factories, the material provides the active energetic layer that ensures reliable transfer of ignition from the firing pin to the booster charge. With its regulated water content, production lines achieve high reproducibility in pellet pressing or needle loading, supporting tight quality assurance criteria for safety-sensitive devices used in mining, seismic, and defense applications. Industry compliance standards
Typical usage ratio
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4. Industrial Mining Explosives (Bulk and Cartridge)Mining explosives operations utilize this material as a critical ingredient in the preparation of high-energy bulk charges and cartridge explosives for use in blasting galleries, open-pit mines, and quarrying. Its moisture specification aligns with automated blending lines to limit electrostatic hazards and dusting, while supporting controlled sensitivity for pumpable emulsions and pre-packaged explosives destined for rigorous field deployment. Industry compliance standards
Typical usage ratio
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5. Specialty Pyrotechnic DevicesManufacturers of advanced pyrotechnic articles integrate this ingredient to achieve targeted burn rates, luminous output, and controlled ignition properties in safety and signaling devices. Its controlled hydration supports precise compaction in multi-component formulations, where interactions with oxidizers and stabilizers must be repeatable for electronic or mechanical actuation in the end product. Industry compliance standards
Typical usage ratio
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Every time we start a fresh batch of Cyclotrimethylenetrinitramine with water content at or above 15%, we do so with deep respect for both the product and the industries that rely on it. This material, also referred to in many labs as RDX, requires accuracy throughout its entire production life — from raw material selection right through to drying and packing. Each stage influences both the safety profile and the consistency of the final product, and as the company behind every kilogram produced in our plant, we have learned a few things that set this grade apart.
Anyone who has handled dry RDX knows the risks posed by static electricity, friction, and impact. By supplying Cyclotrimethylenetrinitramine with water content at a minimum of 15%, we answer a critical need in the energetic materials sector. This level directly manages dusting, reduces sensitization to accidental ignition, and allows safe storage and processing under industrial conditions. We maintain this specific moisture content by drying each batch precisely and testing it just before packing. Many customers look for this specification because their own plant protocols align with it — too little water, and the material can become hazardous; too much, and you lose efficiency in downstream steps like granulation or solvent processing.
This grade of Cyclotrimethylenetrinitramine emerges from our reactors with strict control over particle size, moisture levels, and purity. We have witnessed that holding water content at or just above 15% gives the best compromise between handling safety and processability. Our typical production choices aim for particles that stay free flowing, neither caking up nor drying out prematurely. Through years of refinement, we have learned that starting with some extra water helps reduce static build-up during transfer, especially on dry days or in winter. Our in-house labs run measurements for acidity, water by Karl Fischer titration, and chemical stability after each batch, which means our partners receive a consistent product, every shipment.
Some buyers ask if there is much practical difference between the 7% water content variant, which some suppliers sell, and our ≥15% grade. After decades in the field, we say yes — it matters. The lower-moisture grades can draw static far more easily and may even dust out of bags, seeding risk into your production environment. In applications where you plan to further dry, melt, or slurry the product, starting with an extra margin of water supports both safety and ease of handling. We have shipped containers of both types across different climates: regions with higher average humidity see the 15% material perform better in storage, while dry climates benefit from improved anti-static behavior. Feedback from production supervisors tells us they see fewer issues with bridging in hoppers and improved downstream yields when working with our product.
Another clear difference comes up in the context of storage. We package this material in heavy-duty liners and drums designed specifically to prevent dehydration. Customers storing the lower-moisture grades over months, especially in conditions with low ambient humidity, see visible changes in texture and increased risk of crystallization. Our ≥15% grade maintains its physical properties throughout the storage period, provided containers remain properly sealed. All these adjustments reflect both regulatory guidance and best practice in real-life explosives manufacturing.
Cyclotrimethylenetrinitramine with this moisture level finds broad use across both civilian and defense-related energetic applications. Commercial mine blasting agents often favor this material for the way it blends with plasticizers or waxes. Our long-term customers cite trouble-free batching and reduced operator risk among the top benefits. In the defense sector, the 15% moisture variant becomes the go-to grade for pre-compounding with binders, where dry powders simply would not meet the same safety thresholds.
We have collaborated repeatedly with partners on scale-ups for slurry explosives and PBX manufacturing. These projects always circle back to the basic property of this grade: safely energetic, still easy to incorporate. Purity plays a key role, and our analytical teams chase every detail, right down to trace acids or metallic residues. This diligence prevents cross-reactions with other components used in downstream blending. Customers in the pyrotechnics business also value the predictable moisture range, which supports stable burn rates and minimizes unscheduled ignition risks during compounding.
Inside our facility, making a safe and compliant product means controlling every detail. We manage pH and temperature from the nitration stage forward, not just relying on automated controls but involving our most experienced operators at each transfer and filtration point. Small choices matter: the exact wash water temperature, timing, and the way we handle intermediates directly shape the final water content and texture. We learned long ago that skimping on washing leaves behind acidic residues, which can show up unexpectedly during storage, cutting shelf-life or even causing unwanted color changes.
Every single package leaving our site includes a certificate, but behind that document stand real tests: Karl Fischer for moisture, gas chromatography for trace nitrosamines, and particle size measurement. Human checks back up automated readouts, especially during final packing. Finer powders require particular care to ensure moisture does not drift outside the guaranteed window. Some industries want a coarser cut, but for most, our established particle distribution supports robust, repeatable mixing and safe conveying through bulk systems.
Supplying this material to partners in regulated sectors drives home the importance of transparency and thoroughness. We control the origin of every drum of precursor, and our personnel complete regular training aligned with local guidance. Every year brings updated standards for trace organic contaminants and transport documentation. Modern laboratories require certainty that nothing in the ingredient list poses a surprise risk. As the manufacturer, standing behind our product does not just mean answering calls if problems arise — it means proving reliability every day, every batch, with a chain of test results and an open line to anyone using our material in their process.
Environmental topics also shape our workflow. Our water usage, treatment of waste streams, and solvent recovery do not just meet minimum thresholds but drive new investments. The byproducts from Cyclotrimethylenetrinitramine production need careful handling, especially when scaling up. Teams on site design practices not just for local compliance but in line with the bigger environmental expectations facing the entire chemical sector.
Our story with this product lives in the moments when careful control makes a difference. Years back, a minor drop in the drying chamber caused a near-miss due to a single faulty sensor. We invested immediately in dual-layered controls, and today, our drying and granulating lines run with constant monitoring. Staff receive hazard sessions tailored to energetic materials, and no operator moves alone through risk zones. This approach grew directly out of experience — real lessons, not just industry checklists.
Packing lines handle every drum gently, and internal audits include random moisture spot checks before shipping. Emergency drills run more frequently than the required minimum, and procurement managers on the customer side often comment about the confidence we bring to their own teams. Our plant safety record reflects this attention, with every incident reviewed as openly as every routine order. This transparency flows from the fact that we stand face to face with the realities behind the statistics.
Improving our Cyclotrimethylenetrinitramine [Water Content ≥15%] over the years came from close partnerships with clients in mining, defense, and chemical synthesis. Equipment upgrades, like better water sensors and sealed filling heads, followed reports from end users about little practical quirks they faced on their lines. Real feedback, especially from those actually loading the product into their reactors or presses, shaped upgrades in packaging and labels.
One frequent request involved batch size and container design. Bigger drums offer easy bulk handling, but a few sites told us that smaller, sealed bags fit into their process steps with less spillage and waste. In response, our factory now fills both bulk and smaller units, drawing from the same ultra-clean storage tanks. This move required rethinking our process flow so that every container type preserves the moisture and purity promises set by the main production run.
The market for energetic compounds shifts every year. Regulatory developments, new downstream needs, and increased environmental scrutiny each shape how we plan production and R&D. One clear trend: interest in automated, closed systems for loading and processing. This means even greater focus on the precise water range in our product, ensuring compatibility with both traditional and state-of-the-art lines.
Research teams at our facility work on new detection and control methods around clock. Moisture control now applies advanced in-line sensors, while process analytics refine our understanding of trace impurities. We share these results openly with our largest customers, and regular on-site audits let clients see the systems in action. Engineers rely on this visibility because unplanned changes to material quality can disrupt hundreds of downstream steps, costing both time and safety.
Today’s procurement managers rightly demand complete origin tracking and sustainability plans. All raw materials moving into our Cyclotrimethylenetrinitramine go through a chain-of-custody system, which lets buyers trace every input. Our site welcomes audits, and we communicate both successes and improvement areas the same way. Transparency protects not only our own name but the operational trust our customers place in us — and in a product that must perform predictably under strict conditions.
Several teams on site focus on reducing plant emissions and recycling both water and solvent streams wherever possible. This long-term philosophy reflects both the larger company direction and customer requirements. Today, no part of the chain is too insignificant to miss inspection, from the condition of incoming chemicals to the vetting of haulage contractors making final deliveries. This holistic approach runs through every layer of the operation and underpins our ability to supply a consistent, compliant product batch after batch.
Every technical recommendation we make comes from lived experience. Safety and product quality go hand in hand, not as a marketing phrase but as part of day-to-day plant reality. Years spent troubleshooting unexpected trends in water content, refining granulation to avoid bridges, and setting up better final checks built the knowledge that our clients depend on. Market pressures sometimes ask for tweaks — faster delivery, or a shift to more customized particle distributions — but the baseline always rests on rigorous in-plant control.
Our engineers document patterns in storage behavior. Several times, storage at customer sites in tropical climates revealed a need for double-bagged shipping containers, since even a small breach led to caking or slight mold. Listening to this feedback resulted in tighter standards here in the plant, better protecting every shipment en route. In weekly meetings, we review not just test reports, but actual customer stories from the floor, folding every lesson into future standard operating procedures.
Industry groups study Cyclotrimethylenetrinitramine [Water Content ≥15%] as a benchmark for safe energetic production. We participate in technical committees, supplying real data on performance under both transport and storage stress. Our lab teams supply anonymous sample sets and feedback to guideline writers and update our test protocols in line with emerging best practice. Through these collaborations, we help raise both quality and safety bar for everyone working with RDX-based materials.
Documenting each change — whether it is a minor tweak in procedural control, or a shift to more robust sampling — gives others in the sector a proven model for improvement. As regulatory frameworks in Europe, North America, and Asia grow more rigorous, our foundational data supports both internal and external compliance. This open sharing culture grew from the practical reality that user safety, not just product certification, drives real-world trust.
Spending years around Cyclotrimethylenetrinitramine translates into a respect for the balance between energy and stability. Water content at or just above 15% stands as more than a statistic or a checkbox; it carries practical realities through storage, transport, and handling. Our team, from production engineers to floor supervisors, brings lived experience to every discussion with clients. Whether troubleshooting a filling issue, running an audit, or developing a new analytic method in our labs, we recognize that every improvement begins with a deeper look at real performance and user experience.
This perspective shapes our entire operation — from raw material vetting to cylinder filling and right through final dispatch. Every member of the team sees the finished product as the start of someone else’s process, not the end of our own. It is that commitment to responsibility, clarity, and safety that continues to drive us to produce Cyclotrimethylenetrinitramine [Water Content ≥15%] you can truly rely on.