Chemicals Chemical Reagents

Dry Screening Method Diameter Tester GB / T 14799 For Geotextile Effective Pore

Price Negotiable
Price: Negotiable
MOQ: 1 set
Delivery Time: 5-7 days
Brand: ZL
Product Description
GB/T 14799 Geotextile Effective Pore Diameter Testing Machine
This dry screening method diameter tester is designed for measuring the characteristic pore size of single-layer geotextiles and related products using the dry sieving principle. The instrument is suitable for all types of geotextile products.
Application Scope
Suitable for measuring characteristic pore size of single-layer geotextiles and related products using dry sieving methodology. Compatible with all geotextile product types.
Compliance Standards
  • GB/T 14799
  • JTGE50 Highway Geosynthetics Test Regulations
  • SL235 Geosynthetics Test Regulations
Technical Specifications
Sieve Diameter 200mm
Sieve Stack Height 400mm
Amplitude of Screen Seat 8mm
Shaking Frequency 221 times/min
Vibration Frequency 147 times/min
Radius of Gyration 12.5mm
Power Supply 380V, 0.37 kilowatts
Dimensions 750*480*850mm
Total Weight 70kg
Machine Certification
GB/T 14799 Testing Machine Certification Document
Testing Machine Quality Certificate
Geotextile Testing Equipment Specifications
Manufacturing Company Business License
Company Awards and Recognition Certificates
Business License & Fame Certificates Wall
Manufacturing Facility
Manufacturing Company Outdoor Facility View
Company Outdoor View
Company Reception and Office Area
Reception Area
Expert Team
Professional Sales Team
Technical Engineering Team
Industry Exhibition Participation
Geotextile Testing Equipment Exhibition Display
Industry Trade Show Booth
Technical Exhibition Demonstration
Product Showcase at Industry Event

Get in Touch

Have questions about our products or want to discuss a custom order? Our team is ready to help you.

Company Dongguan Zhongli Instrument Technology Co., Ltd.
Location No.62, Xinhe Management of Area, Wanjiang District, Dongguan city, Guangdong province ,China
Contact Person Fiona Zhong

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