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Viscoelasticity measuring instrument Product List and Ranking from 15 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Mar 18, 2026~Apr 14, 2026
This ranking is based on the number of page views on our site.

Viscoelasticity measuring instrument Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Mar 18, 2026~Apr 14, 2026
This ranking is based on the number of page views on our site.

  1. TA Instruments Japan (TAInstruments) Tokyo//Testing, Analysis and Measurement
  2. アイ・ティー・エス・ジャパン Chiba//Testing, Analysis and Measurement
  3. レオ・ラボ Tokyo//Testing, Analysis and Measurement
  4. 4 null/null
  5. 5 高周波粘弾性 本社/ラボ Gunma//Testing, Analysis and Measurement

Viscoelasticity measuring instrument Product ranking

Last Updated: Aggregation Period:Mar 18, 2026~Apr 14, 2026
This ranking is based on the number of page views on our site.

  1. Dynamic Mechanical Analysis (DMA) Measurement Device 'RSA-G2' TA Instruments Japan (TAInstruments)
  2. Dynamic Mechanical Analysis Device "DMA850" TA Instruments Japan (TAInstruments)
  3. Product Catalog: Rotational Rheometer 'Discovery HR' TA Instruments Japan (TAInstruments)
  4. 4 Product catalog available: Rotational viscoelastic measurement rheometer 'ARES-G2' TA Instruments Japan (TAInstruments)
  5. 5 It can measure up to 1000Hz! High-load high-frequency viscoelastic measurement device. レオ・ラボ

Viscoelasticity measuring instrument Product List

31~55 item / All 55 items

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Contracted measurement services, high-frequency viscoelasticity, ultrasonic propagation, sound speed, attenuation rate.

You can easily examine viscoelasticity at unprecedented megahertz (MHz) high frequencies.

If you could send a sample, there would be no need for proficiency in measurement or to maintain expensive equipment. Recently, measurement accuracy has improved, allowing for more precise measurements of inkjet inks and similar materials than before. The measurement of megahertz hysteresis loss in liquids such as inks can also be performed similarly to solids. In the high deformation properties of inks for inkjet printers (IJ), which involve high-speed droplet ejection, the Cox-Merz rule, which treats strain rate (1/s) and deformation frequency (rad/s) as equivalent, (https://www.cerij.or.jp/service/05_polymer/rheology_freq-dependence.html) may allow for evaluation. (No freezing occurs even at megahertz) ☆ This was published in the Journal of Applied Physics. "Characterization of Inkjet Ink and Skin Layer Properties by Ultrasonic Viscoelastic Measurement" https://iopscience.iop.org/article/10.35848/1347-4065/adc609/pdf

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[Viscoelasticity Measurement Example] ONRH Type Rheometer

Supports rheological measurements of various samples! Introducing examples of viscoelastic measurements with the ONRH type rheometer.

We would like to introduce a case study of viscoelasticity measurement using the 'ONRH-type rheometer' handled by Daicai Giken. In a measurement example through sample observation, when measuring foam hand soap, changes were observed where the viscosity increased in response to the foam becoming finer. The materials explain the shear rate dependence of viscosity, as well as frequency dependence and viscoelastic strain amplitude dependence, using graphs. 【Features】 ■ Supports rheological measurements of various samples ■ Temperature control with a dedicated constant temperature bath ■ Collaboration of rheological measurements with other measuring devices *For more details, please refer to the PDF materials or feel free to contact us.

  • Analytical Equipment and Devices
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Dynamic Viscoelasticity Measurement Device "Rheosol-G Series"

Compatible with various samples such as solutions and gel-like substances! Since it is a purely domestic product, support is also smooth.

The "Rheosol-G Series" is a dynamic viscoelastic measurement device aimed at predicting reaction rates based on the unique physical properties of each material by measuring the continuous changes in the processes of melting and solidification. It primarily applies dynamic shear forces to pellet and paste-like samples. For thermoplastic resins, it evaluates changes in dynamic viscosity and liquid elasticity during the melting process, while for thermosetting resins, it assesses the temperature at which the minimum melting viscosity transitions to the curing reaction and the solidification process. 【Features】 ■ Capable of a wide range of measurements and analyses from steady flow viscosity to dynamic viscoelastic modulus ■ Rotational strain control method ■ Suitable for evaluating the viscoelastic properties of various liquid samples ■ The liquefaction behavior of samples can be observed from viscosity curves on the temperature axis ■ Molecular structures can be inferred from various information *For more details, please refer to the PDF document or feel free to contact us.

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Vesmeter: Viscoelasticity Measurement Device for Skin for University Research Institutions

A viscoelasticity measurement device with enhanced reproducibility featuring pressure and angle sensors has arrived!

The Vesmeter E-100HSV is a research measurement device that can non-destructively and with high reproducibility measure the viscoelasticity (firmness and softness) of the skin. While inheriting the performance of the conventional model (E-100HS), it is equipped with two new features: - Pressure sensor: Real-time display of measurement pressure adequacy - Angle sensor: Quantification of the probe's tilt (contact posture) This significantly reduces variability factors caused by differences in the operator's technique and environment, enabling the acquisition of highly reproducible data. Additionally, - Suction type: The skin is stretched, local stress is uneven, and it is greatly influenced by the surface condition of the subject. - Vibration type: Waveform noise can easily mix into the response. Commonly, it overcomes the challenges of other methods where the measurement results cannot be scaled because they are not physical quantities, allowing for accurate evaluation in a natural skin state. Measurements take about 3 seconds per point, and data is displayed immediately. Usability in the field has also been pursued.

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Dynamic Viscoelasticity Measurement Device for the Rubber Industry: "Iplexer Series"

Equipped with two motors! Strongly supports the evaluation of rubber material properties.

In the rubber industry, it is essential to accurately evaluate the dynamic viscoelastic properties of materials for product quality control and performance improvement. Particularly for rubber materials used in various applications such as automotive parts, tires, and vibration-damping rubber, understanding the viscoelastic behavior in relation to temperature and frequency is a crucial factor that influences product durability and performance. Inadequate evaluation can lead to early deterioration of products or insufficient performance. The dynamic viscoelastic measurement device "Iplexer Series" adopts a double drive system, enabling accurate property evaluation of rubber materials by accommodating a variety of samples. 【Application Scenarios】 - Quality control of rubber materials - Development of new materials - Performance evaluation of products - Durability testing 【Benefits of Implementation】 - Accurate understanding of material properties and optimization of product design - Improvement in product quality and reliability - Reduction in development time and costs - Compatibility with a variety of materials

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Dynamic Viscoelasticity Measurement Device "Iplexer Series" for Paint Quality Control

Equipped with two motors! A dynamic viscoelasticity measurement device ideal for quality control of paint.

In the paint industry, accurately understanding the viscoelastic data that influences the durability and performance of coatings is essential for quality control. Evaluating the performance of paint is crucial for ensuring product quality and gaining customer trust. If proper viscoelastic measurements are not conducted, it may lead to quality issues such as delamination or cracking of the coating. The dynamic viscoelastic measurement device "Iplexer Series" was developed to address challenges in paint quality management. 【Application Scenarios】 - Formulation design of paints - Performance evaluation in quality control - Material property evaluation in research and development 【Benefits of Implementation】 - Improvement in paint quality - Reduction in product development time - Increased customer satisfaction

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Dynamic Viscoelasticity Measurement Device for Adhesives "Iplexer Series"

Equipped with two motors! Accurately evaluate the performance of adhesives.

In the adhesive industry, performance evaluation under various environmental conditions is essential to ensure product quality and reliability. In particular, durability against external factors such as temperature changes, vibrations, and impacts is a crucial element that influences the performance of adhesives. If appropriate performance evaluations are not conducted, it may lead to adhesive failures or early deterioration of products. The dynamic viscoelastic measurement device "Iplexer Series" can accommodate a variety of materials and conduct tests that replicate actual usage environments. 【Application Scenarios】 - Durability evaluation of adhesives - Evaluation of the viscoelastic properties of materials - Performance evaluation in product development 【Benefits of Implementation】 - Improvement in product quality - Reduction in development time - Gaining customer trust

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Dynamic Viscoelasticity Measurement Device for Cosmetics: "Iplexer Series"

Equipped with two motors! Scientifically evaluating the texture of cosmetics.

In the cosmetics industry, the evaluation of texture, which influences product quality, is crucial. It is necessary to accurately grasp elements that directly relate to consumer experience, such as the feel upon application to the skin, spreadability, and stickiness. Traditional evaluation methods often rely on subjective assessments, making it challenging to develop products based on objective data. The dynamic viscoelastic measurement device "Iplexer Series" quantifies the texture of cosmetics, enabling more precise evaluations. [Usage Scenarios] - Evaluation of texture for creams, lotions, foundations, etc. - Development of new materials and formulations - Quality control of products [Effects of Implementation] - Promotion of product development based on objective data - Improvement and differentiation of product quality - Reduction of development time and costs

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Dynamic viscoelasticity measurement device for ceramics

Analyze the sintering behavior in detail to contribute to the improvement of ceramics quality.

In the ceramics industry, accurately understanding the behavior of materials during the sintering process is a crucial factor that influences product quality and performance. It is essential to precisely measure phenomena such as shrinkage, expansion, and creep during sintering and to establish optimal sintering conditions. Inappropriate sintering conditions can lead to reduced product strength and shape defects. The Iplexer series can precisely measure the dynamic viscoelasticity of ceramic materials during sintering through double drive, allowing for detailed analysis of sintering behavior. This supports the development and manufacturing of high-quality ceramic products. 【Application Scenarios】 - Measurement of dynamic viscoelasticity of materials within the sintering temperature range - Evaluation of sintering shrinkage and expansion behavior - Optimization of the sintering process 【Benefits of Implementation】 - Improvement in product quality through optimization of the sintering process - Reduction of defective products and cost savings - Increased efficiency in material development

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Iplexer Series for the Packaging Industry

Evaluate the impact resistance of packaging materials with two motors!

In the packaging industry, the impact resistance of packaging materials is crucial for protecting products during transportation. Selecting packaging materials that can withstand shocks such as drops and vibrations is essential to prevent product damage and enhance customer satisfaction. Packaging materials with appropriate impact resistance ensure product safety and can also lead to reduced transportation costs. The Iplexer series supports the selection of optimal packaging materials by measuring the dynamic viscoelasticity of packaging materials and evaluating their impact resistance. 【Usage Scenarios】 - Development of packaging materials - Evaluation of shock-absorbing materials - Improvement of product protection performance 【Benefits of Implementation】 - Streamlining the performance evaluation of packaging materials - Enhancing product protection performance - Reducing the risk of product damage during transportation

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[Automotive] DMA Dynamic Mechanical Analysis Technical Documentation

A double-drive DMA viscoelastic device that requires ideal viscoelastic data.

In the automotive industry, vibration analysis is essential to balance vehicle safety and comfort. In particular, it is necessary to accurately understand the vibration characteristics of components such as tires and suspensions and to implement appropriate measures. Inadequate vibration countermeasures can lead to a deterioration in ride comfort and early degradation of components. Our DMA dynamic viscoelastic measurement device achieves high load performance and high-precision measurements through a double drive system, contributing to the vibration analysis of automotive parts. 【Application Scenarios】 - Prediction of tire rolling resistance - Fatigue testing of elastomers - Vibration analysis of composite materials 【Benefits of Implementation】 - Improved accuracy in evaluating component durability - Optimization of vehicle vibration countermeasures - Reduction in product development time

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DMA Dynamic Viscoelastic Measurement Technical Document for Electronics

Contributing to the improvement of the reliability of electronics products.

In the electronics industry, evaluating the properties of materials is crucial to ensure the long-term reliability of products. In particular, it is essential to accurately understand the behavior of materials under environmental conditions such as temperature changes and vibrations. Improper material selection or design can lead to product failures or performance degradation. Our DMA dynamic mechanical analysis equipment analyzes the viscoelastic properties of materials in detail, contributing to the improvement of product reliability. 【Application Scenarios】 - Material evaluation of electronic components - Reliability assessment of semiconductor packages - Vibration analysis of printed circuit boards 【Benefits of Implementation】 - Optimization of material selection during the product design phase - Improvement of product durability - Reduction of failure risks

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DMA Dynamic Mechanical Analysis for Food Applications Technical Document

For evaluating the texture of food. A DMA device that provides ideal viscoelasticity data.

In the food industry, the evaluation of texture, which influences product quality, is important. Understanding consumer preferences and obtaining objective data on texture is essential for better product development. However, traditional measurement methods have faced challenges regarding data reproducibility and measurement accuracy. Our DMA dynamic viscoelastic measurement device provides detailed data on food texture to support product development. [Usage Scenarios] - Evaluation of food texture - Measurement of texture changes due to cooking time [Benefits of Implementation] - Acquisition of objective data on texture - Improvement of quality in product development - Differentiation from competing products

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DMA Dynamic Viscoelasticity Measurement Technical Document for the Energy Industry

For the performance evaluation of insulating materials. Double drive DMA viscoelasticity device.

In the energy industry, the reliability of insulating materials such as wires and cables is crucial. The deterioration of insulating materials can lead to power supply interruptions or accidents. Dynamic viscoelastic measurements evaluate the behavior of these materials in response to temperature and frequency, aiding in long-term performance predictions. The Iplexar series double drive system enables measurements under low loads due to its high load performance and high-resolution sensors, providing more accurate data. 【Application Scenarios】 - Evaluation of wire insulation materials - Evaluation of polyurethane foam resins - High-temperature measurements of fiber-reinforced composites 【Benefits of Implementation】 - Improved accuracy in predicting the deterioration of insulating materials - Enhanced product reliability - Assurance of safety

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PREMIER ESR for Sports Equipment

Evaluate shock absorption performance! Rotational-less viscoelasticity measurement device.

In the sports equipment industry, evaluating the performance of shock-absorbing materials is crucial to balance product safety and performance. In particular, accurately understanding the viscoelastic properties of shock-absorbing materials is essential for optimizing the durability and shock absorption capability of products. Improper material selection and evaluation can lead to decreased product performance and increased risk of injury. The PREMIER ESR is a rotorless viscoelastic measurement device equipped with a sweep testing function that can measure high torque. It accommodates various sample shapes such as liquids, pellets, and powders, and can measure materials like rubber, epoxy resin, thermosetting resins, and thermoplastic resins. It helps reduce waste of time and materials, contributing to the efficiency of testing. 【Usage Scenarios】 - Development of shock-absorbing materials - Quality control of sports equipment - Performance evaluation of materials 【Benefits of Implementation】 - Optimization of shock absorption performance - Reduction of product development time - Cost savings

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Industrial Viscoelasticity Measurement Device Vesmeter E-200DT

Measurement of properties such as elasticity, viscosity, and hardness of the specimen surface.

- Quality control of products and materials - No samples needed, measurement and analysis on the spot - On the production line of factories - Sensor heads for silicone gel are also available, accommodating a wide range of material properties The viscoelasticity measuring device, the Besmeter, was developed to measure the characteristics of the surface layer of the specimen, such as elasticity, viscosity, and hardness, with the aim of appropriately evaluating the properties of materials. Unlike conventional measuring devices, the measurement of viscoelasticity by the Besmeter is a patented technology that realizes the measurement of viscosity and elasticity as defined in physics. ● Validation of silicone gel data From evaluation results by major chemical manufacturers Based on the viscoelastic evaluation results of silicone gel using our E-200DT and UBM's Rheogel E4000, 1. A good correlation is observed between needle penetration and hardness. 2. The correlation of elasticity, viscosity, and relaxation time changes with different types of polymers. Thus, by creating an appropriate calibration line, relative evaluation is possible. ● Custom modifications are available For example, 1. Setting measurement range according to the "hardness" of the specimen 2. Selecting sensor head materials according to application (metal, PPS resin, etc.) 3. Custom design of probe shapes

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Iplexer Series for Physical Property Analysis of Polymer Materials

Achieving high-precision dynamic viscoelastic measurements with two motors!

In the analysis of the physical properties of polymer materials, accurately understanding the mechanical characteristics of the materials is crucial for product development and quality control. In particular, understanding the material's response to temperature and frequency is essential for predicting the durability and performance of products. Inaccurate measurements can lead to incorrect material selection and product design. The Iplexer series adopts a double drive system, achieving high-precision dynamic viscoelastic measurements. 【Application Scenarios】 - Evaluation of physical properties of materials such as rubber, resin, film, metal, ceramics, and glass - Property evaluation in material development - Inspection of materials in quality control 【Benefits of Implementation】 - Accurate understanding of the mechanical properties of materials contributes to improved product quality - Cost reduction through optimization of material selection - Shortening of product development time

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Iprexa Series for Pharmaceutical Formulation Design

Measuring viscoelasticity with two motors! Contributing to the improvement of pharmaceutical formulation quality.

In the pharmaceutical industry, it is important to accurately understand the viscoelastic properties of formulations in order to optimize the stability and release characteristics of active ingredients. In particular, it is necessary to predict changes in the physical properties of formulations due to temperature variations and storage conditions, in order to maintain product quality. Inappropriate viscoelastic properties can lead to the degradation of active ingredients or changes in release amounts, potentially compromising the effectiveness of the medication. The Iplexer series accurately measures the viscoelastic data of pharmaceutical formulations through double drive technology, supporting the optimization of formulation design. 【Application Scenarios】 - Formulation considerations for pharmaceutical products - Evaluation of coating agents - Selection of excipients - Stability testing 【Benefits of Implementation】 - Improvement in formulation quality - Reduction in product development time - Cost savings - Enhanced product reliability

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Dynamic Viscoelasticity Measurement Device for Electronic Components: "Iplexer Series"

Equipped with two motors! Contributing to the reliability evaluation of electronic components.

In the electronic components industry, evaluating the properties of materials is crucial to ensure product reliability. In particular, to assess durability under environmental conditions such as temperature changes and vibrations, it is necessary to accurately measure the viscoelastic properties of materials. Inappropriate material selection or evaluation can lead to performance degradation or failure of the product. The dynamic viscoelastic measurement device "Iplexer Series" accurately captures viscoelastic data of various materials, strongly supporting the reliability evaluation of electronic components. 【Application Scenarios】 - Material selection for electronic components - Product durability evaluation - Quality control - Research and development 【Effects of Implementation】 - Improved product reliability - Reduction of defective products - Shortened development time - Cost reduction

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[Aerospace] DMA Dynamic Viscoelasticity Measurement Technical Document

For heat resistance evaluation in the aerospace field. Double drive DMA device.

In the aerospace industry, the development of heat-resistant composite materials is essential for reducing the weight and enhancing the performance of aircraft. Accurately understanding the viscoelastic properties of these materials is crucial for improving design reliability and ensuring safety. In particular, understanding material behavior in high-temperature environments affects the durability and performance of aircraft. Our DMA dynamic viscoelastic measurement device, with its double drive system, achieves high load performance and high-precision measurements, supporting material development in the aerospace field. 【Application Scenarios】 * Viscoelastic measurement of composite materials at high temperatures * Evaluation of heat-resistant elastomers * Durability assessment of aircraft components 【Benefits of Implementation】 * Accurate understanding of high-temperature properties of materials * Improved design reliability * Enhanced safety and performance of aircraft

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DMA Dynamic Viscoelasticity Measurement Technical Document for Sports Equipment

A double-drive DMA viscoelastic device that evaluates the durability of sports equipment.

In the sports equipment industry, the durability of products is highly valued. Especially for products exposed to impacts and friction, accurately understanding the viscoelastic properties of materials is essential for improving product quality. Inappropriate material selection or design can lead to early deterioration or damage of the product. Our DMA dynamic viscoelastic measurement device achieves high load performance and high-precision measurements through a double drive system, strongly supporting the durability evaluation of sports equipment. 【Usage Scenarios】 * Material evaluation of sports equipment such as rackets, balls, and shoes * Evaluation of shock absorption, abrasion resistance, and fatigue resistance * Optimization of material selection in product design 【Benefits of Implementation】 * Improved product durability * Reduced product development time * Enhanced efficiency in quality control

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[For the Textile Industry] DMA Dynamic Mechanical Analysis Technical Documentation

Technical documentation for a double-drive DMA viscoelasticity device to evaluate the flexibility of fiber products.

In the textile industry, evaluating flexibility, which affects product quality, is crucial. Different levels of flexibility are required depending on the application, especially for clothing and industrial materials. Proper assessment of flexibility is essential to ensure the durability, comfort, and functionality of products. Inadequate evaluation can lead to quality issues and customer complaints. Our DMA dynamic viscoelastic measurement device achieves high-precision measurements through a double drive system, allowing for accurate evaluation of the flexibility of textile products. 【Usage Scenarios】 * Evaluation of the texture of clothing * Durability assessment of industrial textiles * Development of new materials 【Benefits of Implementation】 * Improvement in product quality * Increased customer satisfaction * Reduction in development time

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DMA Dynamic Mechanical Properties Measurement Technical Document for Adhesives

For the strength evaluation of adhesives. Double drive DMA viscoelasticity device.

In the adhesive industry, accurate evaluation of adhesive strength is essential to ensure product reliability. This is particularly important for adhesives exposed to temperature changes and stress, as understanding their dynamic properties is crucial. Improper selection or evaluation of adhesives can lead to deterioration or failure of product performance. Our DMA dynamic viscoelastic measurement device achieves high load performance and high-precision measurements through a double drive system, contributing to the strength evaluation of adhesives. 【Application Scenarios】 - Development of adhesive materials - Evaluation of adhesive strength - Durability assessment 【Benefits of Implementation】 - Improved accuracy in adhesive performance evaluation - Reduced product development time - Enhanced efficiency in quality control

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Thermoplastic elastomer materials: viscoelasticity measurement, elongational viscosity measurement.

You can obtain the flow characteristics that serve as molding indicators during the molding of thermoplastic elastomer materials!

We would like to introduce the "Viscoelasticity Measurement Device" that we have. The torque range is from 0.02 uNm to 200 mNm, and the strain rate range is from 0.001 to 1000 S-1. The temperature range is from -150°C to 400°C. It is capable of a wide range of rheological measurements from liquids to solids. It is equipped with measurement modes such as dynamic viscoelasticity, steady flow viscosity, stress relaxation, creep, solid torsion, film tensile, and elongational viscosity. 【Device Specifications】 ■ Device Name: MCR301 (manufactured by Anton Paar) ■ Torque Range: 0.02 uNm to 200 mNm ■ Strain Rate Range: 0.001 to 1000 S-1 ■ Temperature Range: -150°C to 400°C ■ Sample Amount: 10g to 50g *For more details, please refer to the related links or feel free to contact us.

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[Aerospace] PREMIER ESR

Equipped with sweep testing functionality! A rotorless viscoelastic measurement device capable of measuring high torque.

In the aerospace industry, the evaluation of material properties, including heat resistance, is essential for ensuring the safety and reliability of products. Selecting materials that can withstand high-temperature environments requires accurate data acquisition through viscoelastic measurements. Improper material selection can lead to performance degradation or accidents. PREMIER ESR accurately measures the viscoelastic properties of materials and supports optimal material selection. 【Usage Scenarios】 - Development of heat-resistant materials - Quality control of aircraft components - Material evaluation in space development 【Benefits of Implementation】 - Increased efficiency in material development - Improved product reliability - Reduced testing time

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