DLF 1600

Discovery Laser Flash DLF 1600’s source module is a freestanding unit employing a custom Class 1 35 J Nd:Glass laser pulse source. It provides a collimated, monochromatic energy pulse to specimens heated up to the temperature of 1600°C. The laser radiation is delivered via a proprietary fiber optic delivery wand which ensures a 99% homogenized laser pulse. Leading to much more accurate measurements than any direct firing laser pulse instruments. The laser source produces a 300 µs to 400 µs pulse width.

Celda de intercambio de superficies de contacto

Celda de intercambio de superficies de contacto Cambie la química de subfases durante la reología de las superficies de contacto. Descripción Tecnología Aplicaciones Recursos Celda de intercambio de superficies de contacto La Celda de intercambio de superficies de contacto amplía la oferta de productos patentados de TA Instruments para la reología de superficies de contacto…

Accesorio de celda de presión de alta sensibilidad

Accesorio de celda de presión de alta sensibilidad Acceda a una caracterización viscoelástica completa de fluidos en entornos presurizados. Descripción Tecnología Características Especificaciones Aplicaciones La nueva Celda de presión de alta sensibilidad (HSPC) para el DHR permite la caracterización viscoelástica completa de fluidos en entornos presurizados. El HSPC es el único dispositivo que proporciona una…

Reología del polvo

Reología del polvo Descripción Características y beneficios Tecnología Aplicaciones Video Recursos El accesorio para reología del polvo amplía las capacidades del reómetro híbrido Discovery (DHR, por sus siglas en inglés) a los polvos, lo que permite la caracterización de los comportamientos durante el almacenamiento, la dispensación, el procesamiento y el uso final. El desarrollo de…

Accesorio de humedad relativa

Accesorio de Humedad Relativa Control de temperatura y humedad confiable integrado para reología y análisis mecánico dinámico. Descripción Características Geometrías de pruebas Rendimiento Aplicaciones Vídeo El accesorio DHR-RH es un nuevo sistema ambiental para el reómetro híbrido Discovery que permite un control preciso de la temperatura y la humedad relativa de la muestra. El accesorio…

Multi-Specimen Fatigue

<< Ver todos los instrumentos de pruebas cardiovasculares Instrumentos de medición de fatiga para varias muestras Aceleración de los estudios de fatiga y durabilidad de ciclos altos mediante la combinación de 16 muestras de carga simultánea con un rendimiento dinámico líder en la industria y fiabilidad de los instrumentos.   Descripción Tecnología Configuraciones Especificaciones Aplicaciones…

DMA de fuerza alta ElectroForce DMA 3200

DMA de fuerza alta DMA 3200 El DMA 3200 combina décadas de tecnologías de análisis mecánico dinámico líder en el mundo y de fatiga de vanguardia en una única plataforma de prueba exclusiva y altamente versátil. La tecnología del motor ElectroForce® patentada y sin fricción, el diseño mecánico superior, el control ambiental eficaz y la…

DLF 1200

The Discovery Laser Flash DLF 1200 employs a custom Class 1 Nd:Glass Laser pulse source to provide a collimated, monochromatic energy pulse with a 300 μs to 400 μs pulse width. Ideal for labs that need to measure thermal diffusivity, heat capacity or thermal conductivity at temperatures up to 1200°C, or require the power of a laser in a compact benchtop instrument.

Equipped with a liquid nitrogen-cooled IR detector, DLF 1200 provides high precision, quick response, non-contact measurements in air, inert gas or vacuum to 10-3 torr. Simple to operate and safe to use, easy to maintain and very economical to operate, these systems are suitable for research and development programs, as well as quality control.

DXF 900

The Discovery Xenon Flash (DXF) source module employs a High Speed Xenon-pulse Delivery source (HSXD) which has considerably higher efficiency, lower costs and less maintenance than equivalent systems. A reflective optic configuration of our design effectively harnesses the power of a Xenon flash tube and, with the aid of proprietary wave guides, delivers it to the specimen inside the Environmental Module. DXF 900 produces a pulse width of 400 μs to 600 μs and uniformly concentrates the power from the flash source directly on the entire face of the specimen. Due to this optimized optical arrangement and the broad light spectrum, specimens as large as 25 mm in diameter can be illuminated with sufficient energy to make a high-accuracy measurement. The use of large samples diminishes errors associated with inhomogeneity and permits representative measurements of poorly dispersed composites.

DXF 500

The Discovery Xenon Flash (DXF) source module employs a High Speed Xenon-pulse Delivery source (HSXD) which has considerably higher efficiency, lower costs and less maintenance than equivalent systems. A reflective optic configuration of our design effectively harnesses the power of a Xenon flash tube and, with the aid of proprietary wave guides, delivers it to the specimen inside the Environmental Module. DXF 500 produces a pulse width of 400 μs to 600 μs and uniformly concentrates the power from the flash source directly on the entire face of the specimen. Due to this optimized optical arrangement and the broad light spectrum, specimens as large as 25 mm in diameter can be illuminated with sufficient energy to make a high-accuracy measurement. The use of large samples diminishes errors associated with inhomogeneity and permits representative measurements of poorly dispersed composites.

DXF 200+

The Discovery Xenon Flash DXF 200 employs a High Speed Xenon-pulse Delivery source (HSXD) with considerably lower cost and less maintenance than a laser and generates equivalent results. A reflective optic configuration of our design effectively harnesses the power of a Xenon flash tube and, with the aid of proprietary wave guides, delivers it to the specimen inside the Environmental Module. DXF 200 produces a pulse width that is shorter (400 μs to 600 μs) than many commercial laser-based systems, while uniformly concentrating sufficient power from the flash source directly on the entire face of the specimen. Due to this optimized optical arrangement and the broad light spectrum, specimens as large as 25 mm in diameter can be illuminated with sufficient energy to make a high-accuracy measurement. The use of large samples diminishes errors associated with inhomogeneity and permits representative measurements of poorly dispersed composites.