Back to Top
 

   Return to POLYMER AND PACKAGING TESTING ←   Plastic Testing Equipment - PTS/JJ Test ←  

 

 

Impact Pendulums

 

 

The PTS IT Series Impact Testers provide complete turnkey testing solutions, including all essential accessories required to begin testing immediately.

 

PTS low-capacity impact testers feature an automatic release mechanism, ensuring accurate, repeatable, and operator-independent testing.

 

All PTS impact testers are manufactured in an ISO 9001-certified facility, guaranteeing high quality standards, reliability, and consistent performance.

 

 

We Offer the Following:

  .

.
....................────────..................... 

HIT-2492

Charpy and Izod Impact Pendulum

Test Methods: Charpy and Izod Impact Velocity: 2.9 m/s (Charpy) 3.5 m/s (Izod) Touchscreen control interface High-precision impact energy measurement Suitable for plastics and engineering materials...
.
.
 contactarnos
.
.
.......................────────........................ 

HIT-2494

Charpy and Izod Impact Pendulum

.

Test Methods: Charpy and Izod Impact Velocity: 3.8 m/s (Charpy) 3.5 m/s (Izod) Touchscreen control interface Advanced impact testing capabilities Designed for quality control and research laboratories...
 
.
 contactarnos
.

....................────────.....................

XJJD

Charpy and Izod Impact Pendulum

 .

Charpy and Izod testing methods

Available with:

Digital display

Mechanical dial display

    Reliable and accurate impact energy measurement

    Suitable for routine laboratory testing...

     

    .
     
     contactarnos
    .

    ......................────────...................... 

    XJUD

    Charpy and Izod Impact Pendulum

     .
    High accuracy and excellent stability Easy operation CE-certified design Widely used in laboratories worldwide Reliable impact resistance evaluation...
     
    .
     contactarnos
     
    .
    ......................────────......................

    XJLD

    Tensile Impact Pendulum

    .
    Designed for tensile impact testing Suitable for thermoplastic materials Accurate determination of impact behavior under tensile loading Ideal for material development and quality control applications...
     
    .
     contactarnos
     
     .
    ......................────────......................

    XJU

    Computerized Impact Pendulum

     .
    Computer-controlled impact testing system Determines impact brittleness characteristics of materials Advanced data acquisition and analysis capabilities Suitable for research and industrial laboratories...
     
    .
     contactarnos
    .
    ......................────────......................

    XJC-15

    Free-Fall Impact Tester

     .
    Designed primarily to determine the impact resistance of plastic profiles, doors, and similar products Accurate free-fall impact testing Ideal for evaluating resistance to accidental impacts during service...
     
    .
     contactarnos
     
    ..
    ......................────────......................

    XJB

    Free-Fall Impact Tester

     .
    Falling impact energy: 30 J Dart mass range: 50 g to 2000 g in 5 g increments Impact height: 660 mm (Method A) 1500 mm (Method B) Designed for evaluating impact resistance of plastic materials and products Complies with internationally recognized testing procedures...
     
    .
     contactarnos
     
    ..............
    Los péndulos de impacto, principalmente los de tipo Charpy e Izod, sirven para medir la tenacidad o la resistencia al choque de materiales (metales, plásticos, compuestos), determinando cuánta energía absorben antes de romperse. Son fundamentales en laboratorios para control de calidad, investigación y para predecir la deformación ante

       No tiene un plugin pdf, pero puede descargar el archivo pdf.

     


     

          (Agrandar)

    cargas rápidas. 
    Tipos de Ensayo:  Charpy: El más común, golpea la muestra apoyada en dos extremos. Izod: La muestra se sujeta verticalmente en un solo extremo.
    Estos ensayos son críticos para predecir cómo se comportará un material bajo condiciones reales de carga, evitando fallos estructurales.