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Compression and Concrete Flexural Beam Testing Machine 300kN, Automatic
Compression and Concrete Flexural Beam Testing Machine 300kN, AutomaticFlexural FrameSupertest Software V7.2Printer40.1 x 40 x 160 mm Mortar Prism Compression Device50 mm (2”) Mortar Cube Compression Device
Standard: EN 196-1, ASTM C 109, EN 12390-5, ASTM C78, C293 Compression and Concrete Flexural Beam Testing Machine 300kN, Automatic Compression and Concrete Flexural Beam Testing Machine 300kN, Automatic is a combination of compression and flexural test machines to measure the resistance to compres ...Read more

Compression and Concrete Flexural Beam Testing Machine 300kN, Automatic
NL 3027 X / 002


  • Description

Standard: EN 196-1, ASTM C 109, EN 12390-5, ASTM C78, C293

Compression and Concrete Flexural Beam Testing Machine 300kN, Automatic

Compression and Concrete Flexural Beam Testing Machine 300kN, Automatic is a combination of compression and flexural test machines to measure the resistance to compression and bending (flexure) of cement and mortar by applying controlled forces to specimens.

The purpose of these tests is to determine which material parameters are best for construction like strength, elasticity, and deformation characteristics, which ensure the safety and durability of materials in various applications ranging from construction and manufacturing to research and development.

This automated Low Range machine comes with a dual range test method, it can perform mortar compression and concrete beam flexural tests. Built-in industrial computer with touch screen functional and equipped with Testmaster Software V7.2. Supplied with compression jig and concrete beam flexural device.

Features of Compression and Concrete Flexural Beam Testing Machine 300kN, Automatic

  1. Dual Range Test Method: Capable of performing both mortar compression and concrete beam flexural tests, allowing for versatility in testing different materials and applications.

  2. Automated Operation: The machine is automated, reducing the need for manual intervention and ensuring consistent and accurate test results.

  3. Industrial Computer with Touch Screen: Equipped with a built-in industrial computer featuring a user-friendly touch screen interface for easy operation and control.

  4. Testmaster Software V7.2: Comes with advanced Testmaster Software V7.2, which provides comprehensive data acquisition, analysis, and reporting capabilities for efficient testing procedures.

  5. Compression Jig and Concrete Beam Flexural Device: Supplied with necessary fixtures and accessories for conducting compression and flexural tests on cement, mortar, and concrete specimens.

  6. Low Range Machine: Designed for low-range testing, suitable for materials used in construction and manufacturing where lower forces are typically applied.

  7. Measurement of Material Parameters: Enables measurement of various material parameters including strength, elasticity, and deformation characteristics crucial for ensuring the safety and durability of materials in construction applications.

  8. Controlled Forces: Capable of applying controlled forces to specimens during testing, allowing for accurate determination of material properties.

Technical Specifications:

 Model Number    NL 3027 X / 002
 Capacity  300 kN
 Speed Control Range  0.1 - 10 kN/S
 Resolution  0.01 kN
 Platen Diameter  Ø 160 mm Top & Bottom
 Measuring Change  0.2 - 100% F.S
 Accuracy  1% (Class 1)
 Loading Rate Error  ±1%
 Approx. Weight  293 kg
 Dimension / Main Frame (mm)     850 x 510 x 1335 (LWH)
 Power  220 V,50/60 Hz, 1 Ph,1 Hp,750 W,5 Amp   

Set Consists Of :

 Model Number    Parts Description
 NL 4008 X / 005 - P001  Concrete Beam Flexural Device
 NL 3027 X / 002 - P005  Compression Platen Set
 NL 3027 X / 002 - P006  Distance Piece 40 mm
 NL 3027 X / 002 - P007  Distance Piece 95 mm

Optional Accessories :

 Model Number    Parts Description
 NL 3027 X / 002 – P 002  50 mm (2”) Mortar Cube Compression Device
 NL 3027 X / 002 – P 003  40.1 x 40 x 160 mm Mortar Prism Compression Device
 NL CP-200  Computer Printer

Standard

  1. EN 196-1 (European Standard): This standard specifies the method for determining the strength of cement using compressive strength tests. It outlines procedures for preparing and testing mortar specimens under defined conditions, including curing, before subjecting them to compression testing.

  2. ASTM C109 (American Society for Testing and Materials): ASTM C109 is the standard test method for the compressive strength of hydraulic cement mortars. It provides procedures for preparing mortar specimens and testing them under controlled conditions to determine their compressive strength. This standard is widely used in the United States and other countries.

  3. EN 12390-5 (European Standard): EN 12390-5 specifies the method for determining the flexural strength of concrete specimens. It outlines procedures for preparing and testing concrete beams under defined conditions, including curing, before subjecting them to flexural testing.

  4. ASTM C78 (American Society for Testing and Materials): ASTM C78 is the standard test method for the flexural strength of concrete (using a simple beam with third-point loading). This standard provides procedures for preparing and testing concrete beams under controlled conditions to determine their flexural strength. It is widely used in the United States and other countries.

  5. ASTM C293 (American Society for Testing and Materials): ASTM C293 is the standard test method for the flexural strength of concrete (using a simple beam with center-point loading). Similar to ASTM C78, this standard provides procedures for preparing and testing concrete beams under controlled conditions to determine their flexural strength but uses a different loading configuration.

Test Procedure

  1. Preparation of Specimens: Prepare the test specimens according to the relevant standards or specifications. This may involve casting concrete or mortar specimens in molds of specified dimensions and curing them under controlled conditions.

  2. Mounting Specimens: Secure the specimens in the loading frame of the testing machine according to the test method being used. Ensure proper alignment and support to prevent any lateral movement during testing.

  3. Adjustment of Testing Parameters: Set the testing parameters such as load rate, displacement rate, or strain rate depending on the specific test requirements and standards being followed. These parameters may vary based on the material being tested and the desired test conditions.

  4. Initiation of Test: Start the test by applying the specified load or displacement to the specimen using the compression or flexural loading mechanism of the testing machine. Ensure that the loading is applied uniformly and steadily to avoid any sudden shocks or fluctuations.

  5. Data Acquisition: Monitor and record the load and displacement or deformation data continuously throughout the test using the built-in sensors or external measurement devices connected to the testing machine. This data will be used to analyze the mechanical behavior of the specimen during testing.

  6. Maintenance and Calibration: After completing the test, perform any necessary maintenance tasks on the testing machine and ensure that it is properly calibrated for accurate and reliable performance in future tests. Regular maintenance and calibration are essential to ensure the integrity of test results and the long-term reliability of the testing equipment.



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