Products

Cyclotrimethylenetrinitramine [Water Content ≥15%]

    • Product Name: Cyclotrimethylenetrinitramine [Water Content ≥15%]
    • Alias: RDX
    • Einecs: 209-333-2
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications

    HS Code

    234666

    Chemical Name Cyclotrimethylenetrinitramine
    Common Name RDX
    Cas Number 121-82-4
    Molecular Formula C3H6N6O6
    Molar Mass 222.12 g/mol
    Appearance White crystalline solid (when wet)
    Water Content ≥15%
    Explosive Classification High explosive (phlegmatized with water)
    Solubility In Water Slightly soluble
    Melting Point 204 °C (decomposes)
    Boiling Point Decomposes before boiling
    Density 1.77 g/cm³ (dry)
    Sensitivity Lowered due to water content
    Un Number UN 0072
    Hazard Statements Explosive; Harmful if swallowed or inhaled

    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 & Storage
    Packing 500g of Cyclotrimethylenetrinitramine (RDX) [Water Content ≥15%] is supplied in a sealed, UN-approved HDPE bottle with hazard labeling.
    Shipping Cyclotrimethylenetrinitramine [Water Content ≥15%] must be shipped as a hazardous material, in compliance with relevant transport regulations (such as UN 0229 for RDX, wetted). It should be packed in approved, tightly sealed containers, clearly labeled, and protected from heat, shock, and incompatible materials to ensure safe transit.
    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. Keep the container tightly closed and protected from physical damage. Store in non-combustible containers, away from strong acids, bases, and reducing agents. Store under water or wet conditions to prevent drying out and minimize explosion risk.
    Application of Cyclotrimethylenetrinitramine [Water Content ≥15%]

    Applications of Cyclotrimethylenetrinitramine [Water Content ≥15%] in Industrial Manufacturing

    Cyclotrimethylenetrinitramine with controlled water content represents a precise energetic ingredient for industrial-scale production environments. As the raw material manufacturer, we tailor particle size, purity, and handling specifications to support established downstream industries. The following scenarios detail recognized B2B uses, regulatory expectations, and value-chain processing requirements.

    1. Military Propellants Manufacturing

    Military-grade solid propellants often utilize energetic nitramines to balance burn rate, stability, and mechanical performance in modern munitions. Cyclotrimethylenetrinitramine with ≥15% water content reduces dust and lowers sensitivity during large-scale batch blending, supporting safe process operations. Our supply integrates directly at the slurry or paste formulation phase, enabling compliance with established defense supply protocols and client-specific grain design. Robust downstream QC ensures consistent kineticity and compatibility with plasticizers, binders, and energetic co-components.

    Industry compliance standards

    • U.S. MIL-STD-286 Testing Methods for Explosives
    • NATO AQAP-2000 Series Defense Product Quality Assurance
    • REACH Annex XVII, Entry 63 for Explosives
    • UN Recommendations on the Transport of Dangerous Goods

    Typical usage ratio

    • Comprises 30–45% of propellant mass, varied by energy requirements and thermal profile
    • Adjust loadings to accommodate binder content and targeted burning rate modifiers

    Downstream process integration

    • Direct addition to high-shear slurry mixers under controlled temperature conditions
    • Dispersion with polymeric binders prior to extrusion, casting, or pressing into charges
    • Water content retained until final drying phase to minimize dust and ignition risk

    Final product types

    • Tank gun propellants
    • Artillery charge increments
    • Missile motor propellant grains
    • Naval gun propulsion cartridges

    2. Commercial Explosives Blending

    Bulk commercial explosives manufacturing uses energetic nitramines as powerful performance boosters in mining, quarrying, and tunneling operations. Our controlled-moisture grade simplifies compliance during open-plant dosing and conveyor transfer, reducing static risk and facilitating direct integration into emulsion and slurry lines. Explosive formulation plants require precise granular consistency for uniformity, detonation reliability, and safe intermediate handling. Strict quality regimes trace our raw material from receipt through every batch blend.

    Industry compliance standards

    • EN 13631 Series Explosives for Civil Uses: High Explosives
    • U.S. OSHA 29 CFR 1910.109 Explosives and Blasting Agents
    • Australian Explosives Act 1961 & associated codes
    • Transport Canada TDG Clear Language Regulations

    Typical usage ratio

    • Used at 8–18% mass within emulsion and slurry explosive systems
    • Adjusted according to intended VOD (velocity of detonation) and energy class

    Downstream process integration

    • Introduced as a pre-wetted granular phase within aqueous oxidizer matrices
    • Combined in paddle or ribbon blenders before emulsification
    • Blend proceeds immediately to packaging or bulk transfer for site delivery

    Final product types

    • Cap-sensitive emulsions (cartridge and bulk)
    • Water gel explosives
    • ANFO/Nitramine blends for quarry and construction blast-holes
    • Seismic exploration charges

    3. Gas Generator Tablet Production

    Precision gas generation tablets for automotive airbags and inflators frequently use energetic nitramine powders to achieve rapid and reliable inflation on triggering. Our high-water-content cyclotrimethylenetrinitramine allows automatic tablet presses to operate with reduced dust and improved compacting safety. Integration occurs during powder blending phases, closely monitored to ensure particle homogeneity, consistent burn profiles, and full material traceability. Final gas output and burn residue characteristics directly depend on upstream quality and process regimes.

    Industry compliance standards

    • ISO 26262 Road Vehicles – Functional Safety
    • FMVSS No. 208 – Occupant Crash Protection
    • UN ECER94 & ECER95 Airbag Systems
    • IATF 16949 Automotive Quality Management

    Typical usage ratio

    • 15–28% by weight in pyrotechnic gas generator blends
    • External lab validation for pressure rise and burn time determines batch ratio

    Downstream process integration

    • Powder mixing under negative-pressure hoods prior to tablet pressing
    • Moisture maintained until post-forming heat treatment for safety
    • Tablets undergo density and uniformity QC before module assembly

    Final product types

    • Driver airbag inflator tablets
    • Passenger-side airbag charge units
    • Side curtain airbag gas generators
    • Pre-tensioner initiator charges

    4. Demolition and Perforating Charge Assembly

    Specialized demolition and oilfield perforating charges require high-energy explosives with custom detonation profiles. Our material’s water stabilization enables safe on-site mixing and device filling processes in mobile or remote field conditions. Professional loadmasters use precise dosimetry according to charge geometry and casing strength. Stock shipments support both standardized and proprietary charge designs for infrastructural demolition or hydrocarbon well perforation.

    Industry compliance standards

    • API RP-67 Perforating Operations (Oil & Gas)
    • ATEX Directive 2014/34/EU for Explosive Atmospheres
    • U.S. NRC Title 10 CFR Part 39 (Well Logging)
    • BAM Standard Testing for Explosives (Germany)

    Typical usage ratio

    • 18–39% by weight per assembled charge, tailored to wall thickness and application target
    • On-site engineers adjust for environmental temperature and humidity

    Downstream process integration

    • Wet-mixed into pre-formed charge cases or perforating gun assemblies
    • Material retained moist until final arming and encapsulation
    • End-line QC on loaded charges for detonation velocity and brisance

    Final product types

    • Shaped perforating charges for oil and gas wells
    • Structural demolition cutters
    • Precise mining demolition cartridges
    • Bridge and infrastructure clearing packets

    Free Quote

    Competitive Cyclotrimethylenetrinitramine [Water Content ≥15%] prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please contact us at +8615365186327 or mail to admin@ascent-chem.com.

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    Certification & Compliance
    More Introduction

    Cyclotrimethylenetrinitramine [Water Content ≥15%]: Direct Insights from the Manufacturer

    Built on Years of Process Know-How

    We work with Cyclotrimethylenetrinitramine [Water Content ≥15%] every day, handling its production on the line—not just seeing it on paper or as a purchased raw material. For our team, this compound isn’t just a listing in a catalog, but the result of carefully controlled nitration and crystallization processes that leave no margin for error. We have spent years diagnosing temperature profiles, fine-tuning cooling stages, and assuring the final material meets rigorous internal benchmarks before entering the drying phase—where the water content is deliberately held at or above fifteen percent for a reason.

    Model, Specifications, and What Matters on the Plant Floor

    Our batches of Cyclotrimethylenetrinitramine with a water content of no less than 15% come out as a finely tuned material with predictable physical traits. We keep particle size strictly within target ranges, minimizing dust and optimizing pour flow. Moisture content isn't a trivial metric for us—it touches directly on safety and processing. Lowering the water content would elevate risks nobody in manufacturing should ignore. At this level, we see stable granularity, a damp-to-the-touch texture, and reliable batch-to-batch handling.

    No absurd promises here: the 15% and higher water content means the material behaves consistently in any equipment built for energetic materials. It runs cool through conveyors, pellets without grain shatter, and resists electrostatic charging better than drier grades. Several manufacturing partners use it in slurry production and melt-pour lines, telling us the moisture level gives them peace of mind under mixing and during storage. Handling bulk energetic substances on a daily basis, we’ve come to respect the direct line between moisture content and safety margins, both during transport and feedstock prep.

    How Usage in the Field Drives Our Process

    End users include ordnance manufacturers and propellant compounding teams who need Cyclotrimethylenetrinitramine that delivers reliable performance every time. We hear feedback from process technicians who blend it into plastic-bonded explosives and from engineers designing water-slurry detonators. They come to us for the higher water grade because it allows for safer manual and automated handling in the early stages, before final desensitization and charging. Some military users expect predictable rheology when mixing; others want a product with excellent shelf stability over typical warehouse storage intervals. We’ve aligned our controls to suit both needs—providing them a product that doesn’t lump, doesn’t separate under gentle agitation, and always runs within expected viscosity ranges.

    Even the logistics and packaging groups appreciate working with material at this moisture level. Bulk transport barrels are less prone to static charge buildup. The slightly damp load forms a soft pack inside the liner, reducing the risk of shifting or stress cracking over long transfers. Downstream, the receiving operator doesn’t have to tackle clumped cakes or partially dried blocks—our shipping department won’t release a batch unless each drum performs during simulated transit trials.

    How Cyclotrimethylenetrinitramine [Water Content ≥15%] Stands Apart

    We routinely get asked why we don’t offer only ultra-dry or fully anhydrous grades. Experience tells us there’s no one-size-fits-all answer. We run multiple reactors side by side, testing samples at different drying endpoints. Drier grades above 99% active, with less than 7% water, serve a narrower set of users—those who run fully enclosed automated lines with advanced ventilation and real-time static discharge. The required infrastructure to handle these dry forms adds extra cost. There’s a narrower safety window, demanding greater operator expertise and backup controls.

    By keeping our standard water content at no less than 15%, we cut down on accidental initiation hazards. This has real meaning on the shop floor, not just in compliance files. One case is manual blending—when operators work batch-by-batch with basic mixer setups. The slightly higher moisture content gives more buffer against friction, pressure spikes, and dry-contact heating. Plant leaders looking to meet both productivity and safety targets always push for better margin in energetic material storage. Our 15%+ grade is less likely to produce fines under vibration, and it resists caking under mild compaction. These properties make a difference in actual workflow.

    For research labs and development teams, the higher water content doesn’t inhibit precision in dosing or formulation work. Progress on new melt-cast explosives and composite propellants often starts in small-lot batches. Lab workers tell us that this grade flows readily from storage containers and dissolves uniformly in common binders without hot spots. Early-stage formulation can run longer at room temperature without worry over accidental exothermic onset. The intermediate moisture also simplifies recovery and cleanout during test runs. Our feedback loop leads us to continually check the real-world impact of this water content—optimizing consistency and safety hand-in-hand.

    Process, Purity, and Practical Experience

    Our production backbone relies on stainless steel nitration vessels, followed by high-efficiency centrifugation to strip acidic impurities. We wash the precipitate repeatedly before the water content is stabilized and sampled for microanalysis. Microbial loads and impurity profiles are monitored batch by batch, but the chief concern remains the physicochemical stability at intended moisture levels. This extends not only to chemical stability but also to clumping tendencies, pack integrity, and friction behavior under stress.

    Seasoned workers check each lot with tactile and visual cues alongside formal lab reports. Powder that feels sticky or packs unevenly raises an internal flag. Every operator knows the tell-tales of an under-dried or over-dried batch and pulls suspect product from the line immediately. Quality doesn’t only reside in specification sheets. It shows up in how material handles under a scoop in the production pit, how it pours from a transfer drum, and how the product breathes under normal warehouse humidity.

    Over the years, production staff replaced older drying ovens with microprocessor-controlled rotary dryers. The new equipment lets us keep water content above 15% without temperature swings, holding the integrity of each granule. Production managers spend as much time checking incoming utility water and acid strength as they do final product grades. This vigilance has paid off: we see fewer off-spec rejections and more stable downstream performance, which saves our customers time and money.

    The Trade-Offs: Why 15% Water Means More Than a Number

    People outside production often want everything drier, assuming it’s “purer.” Our hands-on experience shows that’s wishful thinking if safety is the goal. At 15% water, Cyclotrimethylenetrinitramine resists many triggers that could lead to unwanted ignition. Try to run this material bone dry in a humid climate, and you’ll watch it pick up just enough moisture to change its character. Pack it too wet, and it shows clumping during extended storage or loses free-pouring behavior. We’ve fine-tuned our endpoint drying steps to sit right at the performance-safety intersection.

    In comparison, the highly dried version starts to behave differently. We have seen a greater tendency for powder statics, which complicates container transfers and can lead to dangerous situations—especially in smaller operations without advanced air systems. Some users seek ultra-dry grades for specialty detonators or laboratory studies, and we supply according to those requests, but heavy guardrails are always needed. Most customers want a material that can move through existing workflow, not one that needs a redesign of the storage room or extra training on new hazards.

    We put every new process improvement through field trials with our regular users, gathering data on handling, safety audits, and feedback on transfer efficiency. Many end-users in Asia and Europe have told us that the slightly wet Cyclotrimethylenetrinitramine reduces loss during transfer and sharpens compliance with evolving workplace standards. Even as safety organizations push toward tighter regulation, our approach matches up—they see fewer reportable incidents and steadier process yields.

    Long-Term Stability and Material Integrity

    Product longevity matters. Moisture content plays a major role in stability—which means both chemical and mechanical properties over time. We validate every production lot for shelf-life. Storage protocols guide our warehouse crew: ambient humidity stays low, barrels rotate by age, batch tags never skipped. The 15% water grade stores well under standard conditions and even transfers robustly through varying climate zones. Our analysis shows very little drop-off in performance over a year under controlled storage, which reduces loss and keeps production lines going without hiccups.

    We run our own in-house accelerated aging tests. Material integrity remains crisp at 6, 12, and even 18 months, provided storage parameters are respected. Customers running into trouble with drier forms—caking, dusting, static events—see none of these issues at this moisture mark. Missing open drums or barrels left ajar during monsoon weather have shown more resilience to absorbing extra humidity. Field users report back—no degradation or separation evident. That’s peace of mind for QC teams and procurement managers alike.

    Supporting Operational Safety Beyond Compliance

    Making energetic materials isn’t about ticking boxes; it’s about keeping every hand in the process safe. At the plant, no shift leader wants to explain injuries or halt production on account of preventable incidents. For Cyclotrimethylenetrinitramine, moisture means safety. Over the past decade we’ve worked with multiple regulatory audits, incorporating findings into every step of our workflow. Internal training focuses on practical knowledge: handling slightly damp stock is fundamentally safer than handling dry, and nobody cuts corners.

    We’ve seen first-hand the effectiveness of job-rotation protocols and dual-operator systems when working with this grade. Every plant visit from a buyer or regulatory team results in tours of our drying and packing rooms, with hands-on demonstration of our handling approach. Our staff not only follows documentation but lives the best practice—barrels are never opened outside designated containment, and enough ventilation flows through every loading dock to keep workers clear of inadvertent inhalation risk. Supporting documents are always available for traceability, but our real quality is proven in every shift that ends without a safety event.

    Global Demand, Regional Differences, and Supply Chain Realities

    Cyclotrimethylenetrinitramine demand moves with trends in ordnance manufacturing, mining, and advanced energetic R&D. Over the last five years, we’ve scaled our plant throughput to match growing demand, but maintain strict batch controls to avoid quality drift. Regional trends shape packaging: Asian buyers ask for drum packaging with added humidity buffers, while European customers often require tamper-evident seals and RFID tagging for traceability.

    Our logistics team stays in close contact with customers’ warehouse managers, planning shipments to suit regional weather and storage setup. The 15% water product can tolerate moderate shifts in temperature or vibration without transforming in texture or losing its safety edge. By talking to actual users and logistics experts, we optimize our containerization and labelling—not to create marketing angles, but to cut down risk and bring operational assurance. Deliveries arrive in condition ready for immediate use, which lowers downtime at our customers’ end and keeps our feedstock flowing into production smoothly.

    Solutions for Industrial and Research Users

    Every day, we answer calls from engineers, chemists, and procurement officers facing unique production challenges. Often, they want guidance on blending Cyclotrimethylenetrinitramine with polymers or emulsifiers. We advise starting with this higher moisture grade for initial blends—it resists exothermic surges during mixing and opens the window for safe thermal ramp-up. For teams developing new energetic systems, this intermediate water step simplifies pilot trials. Cleanout is easier and repeat runs can start back-to-back, which saves both solvent and time.

    Some R&D partners conduct process scale-ups using our product as an intermediate. They report smoother transitions from lab to pilot plant and fewer rejected lots due to agglomeration. By staying in active conversation with technical users, we build guidance drawn from actual runs, not theoretical recommendations or generic literature. Our technical staff welcomes these feedback loops, running side-by-side comparison tests with drier and wetter forms to dial in optimal parameters for downstream compounding, melt-casting, and slurry formation.

    Our Commitment: Being a Manufacturing Partner, Not Just a Supplier

    Every operator here knows this material, from the smell in the drying hall to the clack of the packed barrels. We don’t see Cyclotrimethylenetrinitramine as just a commodity to shift through supply chains. Each ton sold reflects back on us—bringing home what matters on the production floor, in customer plants, and at the loading docks. We don’t promise broad claims we can’t back up. Our focus remains on consistent batch-to-batch quality, honest communication, and field-tested improvements that directly support users’ safety, line efficiency, and process requirements.

    We invest in operator training and preventative maintenance as much as we do in laboratory analytics. Every person in our chain takes real ownership—strict control of water content isn’t just a spec, but a core part of the safety engineering in our operation. Team members share responsibility in process audits and continuous improvement, seeking input from the end-users and integrating feedback sooner, not later. Our technical staff spends time in customer facilities, validating performance and learning new challenges before refining any process change.

    Continuous Evolution Based on User Experience

    Over the years, rapid shifts in regulations, advances in energetic material science, and the pressures of delivering high-purity product worldwide have shaped how we manage Cyclotrimethylenetrinitramine [Water Content ≥15%]. Our upgrades in production technology, quality control, and logistics rest on decades of empirical data from operators, not just compliance standards. Every incident review, no matter how minor, reshapes our procedures and prompts investment in better monitoring or handling infrastructure.

    Customers regularly flag new challenges. We take those back to R&D—adapting drying curves, updating microbial safety checks, or refining anti-caking processes. That cycle of listening, adapting, and revalidating helps us keep products both practical and safe. As demand for precision grows, we collaborate closely with industry engineers, not just selling material but acting as a bridge between batch production and applied innovation. That’s how we see our responsibility—not as a detached manufacturer, but as an engaged production and safety partner.

    Conclusion

    Cyclotrimethylenetrinitramine [Water Content ≥15%] represents a balance struck between factory safety, handling convenience, and process reliability. Every property you see—from particle flow to storage stability—traces back to deliberate production choices honed through practical experience. Our conversations with operators, QC managers, and field applicators shape every batch that leaves our plant. What sets our product apart is the groundwork we’ve laid in process control and the deep respect we maintain for safety, consistency, and user feedback. For us, it’s never just another order—each drum carries the trust between manufacturer and customer, shaped by shared commitment to precision, safety, and performance.

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