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ABRASION RESISTANCE TESTING MACHINE FOR GEOTEXTILE
ABRASION RESISTANCE TESTING MACHINE FOR GEOTEXTILE
ABRASION RESISTANCE TESTING MACHINE FOR GEOTEXTILE
ABRASION RESISTANCE TESTING MACHINE FOR GEOTEXTILE
ABRASION RESISTANCE TESTING MACHINE FOR GEOTEXTILE
ABRASION RESISTANCE TESTING MACHINE FOR GEOTEXTILE

ABRASION RESISTANCE TESTING MACHINE FOR GEOTEXTILE

Price 1.00 INR/ Piece

MOQ : 1 Piece

ABRASION RESISTANCE TESTING MACHINE FOR GEOTEXTILE Specification

  • Port Size
  • Standard 6 mm air inlet
  • Measuring Range
  • 0~20 mm wear depth
  • Number of Specimens
  • 1~4 (simultaneous testing)
  • Resolution
  • 0.001 mm
  • Specimen Size
  • 100 mm x 200 mm
  • Interface Type
  • RS232/USB
  • Gas Pressure
  • 0.4~0.6 MPa
  • Response Time
  • Instantaneous (Real time measurement)
  • Humidity
  • 20~80% RH (operating range)
  • Hardness
  • Test plate: HRC 58-62
  • Features
  • Robust construction, adjustable test parameters, digital counter
  • Max Height
  • 250 mm
  • Test Range
  • 0~10000 cycles
  • Equipment Type
  • ABRASION RESISTANCE TESTING MACHINE FOR GEOTEXTILE
  • Temperature
  • 15~35C
  • Operating Voltage
  • 220V AC
  • Mounting Type
  • Table Top
  • Product Type
  • ABRASION RESISTANCE TESTING MACHINE FOR GEOTEXTILE
  • Frequency
  • 50 Hz
  • Display Type
  • Digital LCD
  • Power Supply
  • AC 220V, 50Hz
  • Weight
  • 6 0.01 Kilograms (kg)
  • Accuracy
  • 0.01 mm
  • Application
  • Geotextile Abrasion Resistance Tester is used to determine the resistance of geotextile or geotextile-related products to abrasion using an abrasion tester by Sand Paper/Sliding Block Method
  • Usage
  • Civil Engineering Testing Equipment
  • Automation Grade
  • Semi-Automatic
  • Capacity
  • Up to 4 specimens
  • Machine Weight
  • 6 0.01 Kilograms (kg)
  • Test Speed
  • 20~60 cycles/min (adjustable)
  • Test Width
  • Up to 60 mm
  • Test Stroke
  • 20~60 mm
  • Control Mode
  • Digital/Manual
 

ABRASION RESISTANCE TESTING MACHINE FOR GEOTEXTILE Trade Information

  • Minimum Order Quantity
  • 1 Piece
  • Supply Ability
  • 100 Pieces Per Month
  • Delivery Time
  • 4 Week
  • Sample Policy
  • Contact us for information regarding our sample policy
  • Packaging Details
  • Wooden Box / Corrugated Box
  • Certifications
  • ISO 9001 : 2015
 

About ABRASION RESISTANCE TESTING MACHINE FOR GEOTEXTILE

Applications:

Geotextile Abrasion Resistance Tester is used to determine the resistance of geotextile or geotextile related products to abrasion using an abrasion tester by Sand Paper OR Sliding Block Method. It is only applicable to geotextile, not to geomembranes, geogrids. A predetermining electromagnetic counter allows the sample to be abraded to the desired number of strokes.


Furtherdetails available on our website.

The Price mentioned here are subject to change as per the capacity,specifications and application of the user.



Advanced Testing Technology

Our abrasion resistance tester integrates stepper motor-driven precision and robust digital control, allowing you to adjust test speed and cycle rate according to different testing requirements. This ensures consistent and accurate evaluation of geotextile durability for civil engineering applications.


Versatile and Efficient Operation

The machine accommodates up to four specimens simultaneously, with a test range of up to 10,000 cycles and adjustable stroke and speed. Its user-friendly digital LCD display delivers real-time wear measurements, while the mechanical clamp system securely holds samples during testing.


Comprehensive Compliance and Safety

Designed to meet ASTM D3884, ISO 12947, and EN 530 standards, the equipment includes overload protection and an emergency stop switch, guaranteeing operator safety. Export-worthy packaging safeguards the machine during transportation, and the noise level is kept comfortably below 68 dB.

FAQs of ABRASION RESISTANCE TESTING MACHINE FOR GEOTEXTILE:


Q: How does the abrasion resistance testing machine operate for geotextile samples?

A: This machine utilizes a stepper motor to drive the abrasion process, where geotextile samples are mechanically clamped and subjected to wear using standard sandpaper or a sliding block. The digital control mode lets operators adjust speed, test cycles, and stroke, ensuring precise and reproducible results.

Q: What standards does the abrasion resistance tester comply with?

A: The equipment follows international standards for abrasion resistance testing, including ASTM D3884, ISO 12947, and EN 530. This ensures that test outcomes are recognized and accepted globally for quality control and research purposes.

Q: When should I use this machine in civil engineering projects?

A: The tester should be used during research, development, and quality assurance phases to evaluate the durability and lifespan of geotextile materials. Regular use helps verify product compliance with industry standards before deployment in civil engineering applications.

Q: Where can this abrasion resistance tester be installed?

A: The machine is designed as a table-top unit with a maximum height of 250 mm, making it suitable for laboratory environments, manufacturing quality control rooms, or university research centers.

Q: What is the typical testing process on this machine?

A: Start by preparing up to four geotextile specimens of 100 mm x 200 mm size. Secure them using the mechanical clamp, set test parameters via digital/manual control, and commence abrasion testing. The LCD displays real-time wear depth, allowing for instant analysis of results.

Q: How does the machine enhance test accuracy and efficiency?

A: It features precise sample clamping, digital LCD measurements with 0.001 mm resolution, and instantaneous response. The adjustable versatility (test speed, stroke, cycles) improves efficiency and ensures reliable data for all types of geotextile testing.

Q: What are the benefits of using a stepper motor-driven geotextile abrasion tester?

A: The stepper motor offers refined control over abrasion cycles and speed, leading to repeatable and consistent testing outcomes. Its robust construction, adjustable parameters, and compliance with global standards enhance reliability and user confidence.

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