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XHS-09T Drop Tower Impact Testing Machine

Product Description of XHS-09T Drop Tower Impact Testing Machine

The XHS-09T is primarily used to evaluate the impact performance, impact resistance, and specimen damage of materials under dynamic loads. The testing method employs spring-accelerated impact, measuring the forces and deformations experienced by the specimen during impact while observing damage phenomena such as bending, cracking, or fracture. Through software-based data analysis, the system can determine impact force, impact energy, impact velocity, material absorbed energy, damage dissipated energy, and critical damage thresholds.


Test Standards of XHS-09T Drop Tower Impact Testing Machine

1.GB/T 2611-1992 "General Technical Requirements for Testing Machines"

2.ASTM D 7136/D 7136M-05Standard Test Method for Measuring the Damage Resistance of a Fiber-Reinforced Polymer Matrix Composite to a Drop-Weight Impact Event

3.ASTM D 7192-05 Standard Test Method for High Speed Puncture Properties of Plastic Films Using Load and Displacement Sensors

4.ASTM D 3763-02Standard Test Method for High Speed Puncture Properties of Plastics Using Load and Displacement Sensors

5.ISO 6603-2000Plastics-Determination of puncture impact behaviour of rigid plastics

6.ISO 11343-2003 Adhesives-Determination of dynamic resistance to cleavage of high-strength adhesive bonds under impact conditions-Wedge impact method

7.ISO 8256-2004 Plastics-Determination of tensile-impact strength

8.Complies with standards such as GB, JIS, ASTM, and DIN.


Product Features of XHS-09T Drop Tower Impact Testing Machine

    1.The system features a fully enclosed design with transparent protective enclosures on all sides to prevent splashing from fractured specimens while enabling real-time monitoring of internal conditions. Equipped with dual safety doors featuring self-locking interlocking mechanisms, opening either door automatically cuts off the control circuit and halts all equipment operations to ensure operator safety.

2.Impact velocity range: 0–4.8 m/s; using American PCB sensors or Xinghua sensors.

3.Impact energy and impact height: The impact energy shall not be less than 100 J, and the impact height shall not be lower than 1.2 m; experimental dynamic error: ≤1%; the hammer lifting mechanism is primarily controlled by a servo motor, with lifting accuracy exceeding 2 mm.

4.The grab-pull hammer device is a specially designed self-locking mechanism capable of automatically zero-point positioning for samples of various specifications; the hammer body can withstand impacts ranging from 3 kg to 10 kg by adding weights.

5.The high-speed data acquisition card features a high-precision A/D converter with a resolution of no less than 16 bits and supports data acquisition at speeds of at least 1 MHz.

6.The punch prevents secondary impacts, with a sensor installed above it.

7.Control System: Operated by computer control, the system unit can be set to International Units, metric units, or imperial units. Test condition units and test result units can be independently configured (and may differ) with automatic mutual conversion capabilities. The system features automatic identification, calibration, and balance functions for sensors.

8.The software directly displays raw test data, including dual-Y-axis graphs such as load-time, load-displacement, and velocity-time curves, and supports re-analysis of test results.

9.The software features real-time online fault diagnosis capabilities, automatically monitoring various components—including fixtures, pneumatic clamps, and rebound mechanisms—under different operating conditions.

     10. The system features automatic sensor calibration, with built-in fixture library data that enables automatic calculation of loading linkage lengths and punch masses, as well as automatic determination of measurement sensor adjustment positions.


Technical Parameter of XHS-09T Drop Tower Impact Testing Machine


order number

project

technical parameter

1

bombardment energy

3100J (Other energy is availbale)

2

shock height

0.11.2m (Other height is availbale)

3

Maximum impact velocity

4.8m/s

4

Maximum Hammer Stroke Speed

1~2m/min

5

Hammer head positioning accuracy

2mm

6

Static linear error of the impact force sensor

1%FS

7

A/D Sampling Resolution

16bits

8

Maximum Sampling Frequency

1.25MHz

9

Experimental Dynamic Error

1%

10

source

220V±10%50Hz±10%


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