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Gaotefu Online Capillary Rheometer

NegotiableUpdate on 05/19
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Overview

Gaotefu online capillary rheometer can provide real-time rheological and molecular structure information of polymers. The online rheometer can continuously transmit data to determine the properties and processing performance of materials. The product has corresponding level certification and can be used in hazardous areas. One of its prominent features is its compact size. The width is only 150mm. MBR is the smallest online rheometer among similar products. It can be installed smoothly even in small spaces. The measuring head weighs only 30 kilograms and does not require expensive installation costs. The newly designed mold replacement system makes mold replacement easier.

Product Details

The products produced by German company Gottfried are distributed in various fields across the country, playing an important role in hundreds of sets of equipment in nearly 200 units including Sinopec, PetroChina, Degussa, SABIC, DSM, Ales, Bayer, L/G China, Donghua University, Beijing Institute of Technology, Qingdao University, Beijing Institute of Technology, Tianjin University of Technology, Shanghai Boru, South China University of Technology, China Academy of Textile Sciences, Beijing Institute of Chemical Technology, China Inspection and Quarantine. Gaotefu online capillary rheometer can provide real-time rheological and molecular structure information of polymers. The online rheometer can continuously transmit data to determine the properties and processing performance of materials. The product has corresponding level certification and can be used in hazardous areas. One of its prominent features is its compact size. The width is only 150mm. MBR is the smallest online rheometer among similar products. It can be installed smoothly even in small spaces. The measuring head weighs only 30 kilograms and does not require expensive installation costs. The newly designed mold replacement system makes mold replacement easier.

高特福在线毛细管流变仪

Characteristics of Gaotefu Online Capillary Rheometer:
*Flange type measurement is directly installed on the material supply line and independently controls electronic components
*Compact design
*The sample mold can be replaced
*Large measurement range, with a shear rate range of 1:1000
*The system can operate at constant speed (shear rate) or constant pressure (shear stress)
*Operate, evaluate, and visualize from the user end through personal computers, built-in industrial workstations, or process control systems
Single point or multi-point measurement
Provide the following test results based on the selected operation:
*Melt index MFR and melt volume index MVR, with or without temperature compensation
*FRR (flow rate ratio), the ratio of two consecutive MFR/MVR measurements, corresponding to laboratory tests of different weights
*Apparent shear stress, shear rate, and viscosity
The test results can:
*Display in color on PC screen
*Provided through analog signal 4.20mA
*Request to connect through the host via serial port interface
*Accessing databases through the internet
*Output in the form of test data logs on the printer
*The product has Ex II 2 G EEx de ia c/k IIC T2/T3 certification and can be used in Class 1 and Class 2 hazardous areas

A capillary rheometer is an instrument used to measure the deformation and flow properties of fluids or semi-solid materials under external forces. It can study the rheological properties of samples by applying different forces or shear strains, providing important information about the flow behavior, viscosity, elasticity, and other properties of materials. Main function:
1. It can be used to measure the viscosity of samples, including shear viscosity, dynamic viscosity, etc., to understand the flow properties of materials at different strain rates.
2. The rheological behavior of materials can be studied, such as the relationship between shear stress and shear rate, the shape of rheological curves, etc., to reveal the rheological properties of materials.
3. It can be used to evaluate the properties of materials, such as viscoelasticity, plastic deformation, rheological properties, etc., to help understand the performance of materials in practical applications.
4. The relationship between the structure and properties of fluids can be studied, such as the influence of polymerization degree and molecular weight of polymer solutions on rheological properties.
5. It plays an important role in industrial production and can be used for quality control and product development to ensure that the rheological properties of the product meet the requirements.
6. It can be used to evaluate the rheological properties of drugs, such as the viscosity of drug solutions and the flowability of ointments.