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  • Model HTD7370 HPHT Cement Curing Chamber for Curing Tensile or Compression Specimens of Oil Well Cements
  • Model HTD7370 HPHT Cement Curing Chamber for Curing Tensile or Compression Specimens of Oil Well Cements
  • Model HTD7370 HPHT Cement Curing Chamber for Curing Tensile or Compression Specimens of Oil Well Cements
  • Model HTD7370 HPHT Cement Curing Chamber for Curing Tensile or Compression Specimens of Oil Well Cements
Model HTD7370 HPHT Cement Curing Chamber for Curing Tensile or Compression Specimens of Oil Well Cements

Model HTD7370 HPHT Cement Curing Chamber for Curing Tensile or Compression Specimens of Oil Well Cements

  • 1 - 19 Sets
    $45,397
  • >= 20 Sets
    $31,935

Customization:

Customized logo(Min.Order: 2 pieces)
Customized packaging(Min.Order: 2 pieces)
Graphic customization(Min.Order: 2 pieces)

Model HTD7370 HPHT Cement Curing Chamber for Curing Tensile or Compression Specimens of Oil Well Cements

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Cement Curing: Designed for curing tensile or compression specimens of oil well cements under high pressure and high temperature (HPHT) conditions.
  • Laboratory Equipment: Essential for ensuring the integrity and performance of cement in oil well applications.

Key features

  • 1. Advanced Material Technology

  • With its high-pressure, high-temperature resistant construction, the HTD7370 ensures reliable curing of oil well cements in extreme conditions.

  • 2. Interactive Design

  • With an intuitive touchscreen interface, you can easily set and monitor curing parameters for precise control over cement specimen preparation.

  • 3. Superior Performance Parameters

  • With its capability to maintain stable pressure and temperature, the HTD7370 delivers consistent curing results, ~20% more efficient than traditional models* [*Disclaimer: Based on internal testing; actual results may vary].

  • 4. Versatile Scenario Solutions

  • With adaptability for both tensile and compression specimens, the HTD7370 is ideal for diverse oil field applications, from research labs to on-site testing.

  • 5. Certification Standards

  • With compliance to industry standards, the HTD7370 meets rigorous safety and performance certifications, ensuring quality and reliability in demanding environments.

Product details

Model HTD7370 HPHT Cement Curing Chamber for Curing Tensile or Compression Specimens of Oil Well Cements

The Model HTD7370 HPHT Cement Curing Chamber is designed for curing tensile or compression specimens of oil well cements. This advanced lab equipment is essential for oil field operations, ensuring the integrity and performance of cement used in high-pressure, high-temperature environments.

Technical specifications

FeatureSpecificationBenefit
MaterialStainless SteelEnhanced durability and longevity
SizeCustomizable dimensionsFits various lab configurations
Pressure RangeUp to 20,000 psiSuitable for extreme conditions
Temperature RangeUp to 300°CReliable in high-temperature settings

Customization guide

Adjustable pressure and temperature parameters to meet specific oil well cement testing requirements.

Get inspired

With the Model HTD7370, you can ensure precise and reliable curing of cement specimens, optimizing the performance of your oil well operations.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Pressure Range10,000 psi+15%+30%*
Temperature Range200°CEnhancedPremium
MaterialStandard SteelUpgraded AlloyStainless Steel

Supplier's note

  1. The Pro version's enhanced pressure range—30% above the industry benchmark—enables safe and effective testing in extreme conditions. When paired with its stainless steel construction, this ensures long-lasting performance in high-demand environments.
  2. Choose the Base Model for standard lab applications, the Advanced Model for slightly more demanding scenarios, and the Pro Model for the most challenging conditions, ensuring optimal results for your specific needs.

Frequently asked questions

  • Which model suits small oil field labs for curing cement specimens?

  • How to maintain the HPHT Cement Curing Chamber for optimal use in oil well cement testing?

  • What materials are used in the construction of the HPHT Cement Curing Chamber for durability?

  • Can I customize the HPHT Cement Curing Chamber for specific oil well cement tests?

  • Is the HPHT Cement Curing Chamber's design validated for technical accuracy in oil well cement specimen curing?

  • What are the advantages of using the HPHT Cement Curing Chamber in oil field operations?

  • How does the HPHT Cement Curing Chamber compare with other oil field lab equipment in terms of efficiency?

  • Are there specific cleaning instructions for the HPHT Cement Curing Chamber used in oil well cement labs?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Silent Operation EquipmentOpen-plan officesNoise Level: 43 dBA (quieter than refrigerator hum)Enhances concentration and productivityMay be more expensive due to noise-cancelling technology
Chemical-Resistant GearChemical laboratoriesWithstands 50+ chemical exposures (ASTM D543)Long-lasting and durable in harsh environmentsPotentially heavier, impacting mobility
High-Pressure EquipmentOil well cement testingMax Pressure: 10,000 psi (suitable for HPHT conditions)Suitable for extreme testing conditionsRequires specialized maintenance
Lightweight MaterialsPortable lab setups150 GSM (ISO 3801)Easy to transport and handleMay offer less protection against environmental factors
Thermal Insulation GearCryogenic operationsInsulation: R-Value of 5.0 (efficient thermal barrier)Reduces energy costs by maintaining temperature stabilityBulkier design may restrict space
Advanced Filtration UnitsCleanroomsFiltration: HEPA-rated (captures 99.97% of particles)Ensures high-quality air standards and reduces contaminationRequires regular filter replacement

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The Product Description is generated by third-party, and Alibaba.com is not liable for any risks related to inaccuracies or the infringement of third-party rights.

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The comparison data is based on manufacturer information and industry standards. Actual results may vary depending on individual use cases. It is advisable to verify details with the supplier for the most accurate information.