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  • HPHT Cubic Press Synthetic Diamond Making Machine for Lab Grown Diamond
  • HPHT Cubic Press Synthetic Diamond Making Machine for Lab Grown Diamond
  • HPHT Cubic Press Synthetic Diamond Making Machine for Lab Grown Diamond
  • HPHT Cubic Press Synthetic Diamond Making Machine for Lab Grown Diamond
  • HPHT Cubic Press Synthetic Diamond Making Machine for Lab Grown Diamond
  • HPHT Cubic Press Synthetic Diamond Making Machine for Lab Grown Diamond
HPHT Cubic Press Synthetic Diamond Making Machine for Lab Grown Diamond

HPHT Cubic Press Synthetic Diamond Making Machine for Lab Grown Diamond

  • >= 1 Pieces
    $400,000

Customization:

Customized logo(Min.Order: 1 pieces)
Customized packaging(Min.Order: 1 pieces)
Graphic customization(Min.Order: 1 pieces)

HPHT Cubic Press Synthetic Diamond Making Machine for Lab Grown Diamond

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Synthetic Diamond Production: Designed to manufacture high-purity lab-grown diamonds using High-Pressure High-Temperature (HPHT) technology, enabling precise control over pressure and temperature during the diamond crystallization process.
  • Hot Forging Process: Utilizes hydraulic power to apply extreme pressure and heat, ensuring consistent material integrity and efficiency in diamond synthesis.

Key features

  • 1. Material Technology: Corrosion-Resistant Steel Construction

  • With a corrosion-resistant steel body, ensure durability under extreme high-pressure/high-temperature (HPHT) conditions. This robust material outperforms conventional aluminum alloys in harsh industrial environments*.

  • 2. Interactive Design: Symmetrical Multi-Arm Pressure Distribution

  • With a precision-engineered symmetrical star-like design, achieve uniform pressure distribution across the diamond synthesis area. This optimizes crystal formation efficiency compared to uneven pressure systems*.

  • 3. Performance Parameters: High-Pressure Hydraulic System

  • With a hydraulic system capable of reaching industry-leading pressure levels, accelerate diamond crystal formation up to 30% faster than traditional forging presses*. Ideal for lab-scale or industrial diamond production.

  • 4. Scenario Solutions: Continuous Industrial Operation

  • Designed for uninterrupted operation in commercial or laboratory settings, this hot forging hydraulic press ensures reliable diamond synthesis even during prolonged HPHT cycles. Tailored for scalability in industrial applications*.

  • 5. Certification Standards: ISO Safety Compliance

  • Certified to meet ISO safety standards for high-pressure industrial equipment, guaranteeing operator safety and compliance with global manufacturing regulations.

Product details

HPHT Cubic Press Synthetic Diamond Making Machine for Lab Grown Diamond

The HPHT Cubic Press Synthetic Diamond Making Machine is a precision-engineered hydraulic press designed for laboratory-scale diamond synthesis. Built with durable metal alloys (steel/aluminum), it features a symmetrical, star-like segmented design for optimal pressure distribution and fluid/gas flow control. Ideal for research and industrial applications, it offers customizable parameters to meet specific diamond synthesis requirements.

Technical specifications

FeatureSpecificationBenefit
Forging Force5,000 tons (adjustable)Ensures uniform pressure for high-quality diamonds
Temperature RangeUp to 1,500°CSupports HPHT (High Pressure High Temperature) processes
MaterialStainless steel/aluminum alloyResists corrosion and thermal stress
Automation LevelManual operationPrecision control for R&D and small-scale labs
Flow Control Ports8 customizable portsEnables tailored fluid/gas path configurations

Customization guide

Adjustable parameters include:

  • Port size/number: Tailor fluid flow for different diamond growth rates.
  • Segment angles: Optimize pressure distribution for varying material thickness.
  • Temperature zones: Customize heating profiles for specific alloy compositions.

Get inspired

With its modular design and precision engineering, this machine empowers researchers and manufacturers to explore new diamond synthesis techniques. Whether producing gemstones or industrial-grade diamonds, the adaptable flow control and temperature management ensure consistent results.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Forging Force5,000 tons+50% (7,500 tons)+100% (10,000 tons)
Max Temperature1,500°C1,800°C2,000°C
Automation LevelManualSemi-AutoFully Auto
Port CustomizationFixed portsAdjustable portsModular segments

Supplier's note

  1. Technical Breakthroughs:

    • The Pro Model’s 2,000°C temperature capability exceeds industry standards by 25%, enabling synthesis of ultra-hard diamond variants.
    • Modular segments allow 30% faster setup adjustments compared to traditional presses.
    • Fully automated systems reduce human error by 40%, ensuring consistent diamond quality.
  2. Version Selection Guide:

    • Base Model: Ideal for academic labs prioritizing cost efficiency and manual precision.
    • Advanced Model: Best for mid-scale production needing semi-automation and higher throughput.
    • Pro Model: Suited for industrial clients requiring extreme pressure/temperature and full automation.

With the Pro Model’s 10,000-ton forging force, you can synthesize diamonds at scales previously limited to larger facilities. Pair this with its 2,000°C capability to achieve flawless crystal structures, ensuring durability for aerospace or cutting-edge semiconductor applications.

Frequently asked questions

  • Which HPHT diamond press model is best suited for small-scale laboratory setups?

  • How do I clean and maintain the rotary valve component of the HPHT press?

  • What materials are used in the HPHT press, and why are they suitable for diamond synthesis?

  • Can the machine be customized for specific high-pressure diamond synthesis needs?

  • Is the hydraulic system designed for continuous operation in industrial labs?

  • What certifications does the HPHT press have for safety and performance?

  • How does the hot forging hydraulic press ensure precise temperature control during synthesis?

  • What after-sales support is available for technical issues or customization requests?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Pressure CapacityLab-scale diamond synthesisIndustry Standard: 5 GPa (ISO 16044)
Our Base: 6 GPa
Our Advanced: 8 GPa ▲▲ (20% increment)
Base: Cost-effective for small batches
Advanced: Industrial-scale production
Base: Limited to low-volume labs
Advanced: Higher energy costs
Temperature ControlHigh-temperature HPHT processesIndustry Standard: 1,400°C (ASTM E23)
Our Base: 1,500°C
Our Advanced: 1,800°C ▲ (21% hotter)
Enables stable growth of Type IIa diamondsAdvanced requires specialized cooling systems
Automation LevelAutomated production linesIndustry Standard: Manual calibration
Our Base: Semi-automated (ISO 10218)
Our Advanced: Fully automated ▲▲▲
Advanced reduces human error by 40%Base requires skilled operators
Energy EfficiencyEnergy-sensitive facilitiesIndustry Standard: 15 kWh/GPa
Our Base: 12 kWh/GPa ▲
Our Advanced: 9 kWh/GPa ▲▲▲ (40% savings)
Advanced cuts operational costs by $8k/month (tooltip: Based on 2,000hr/yr)Base lacks regenerative braking systems
Maintenance RequirementsHigh uptime critical environmentsIndustry Standard: 40hr/month downtime
Our Base: 25hr/month ▲
Our Advanced: 12hr/month ▲▲▲
Advanced uses self-lubricating alloys (ASTM F1898)Base requires biweekly manual lubrication
ScalabilityExpandable manufacturing setupsIndustry Standard: Single-chamber systems
Our Base: 2-chamber ▲
Our Advanced: Modular 4-chamber ▲▲▲
Advanced supports 300% faster batch turnoverBase cannot integrate with existing multi-chamber setups

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