Mechanical properties
Tension, compression, bending, peeling, tearing, impact and pipe pressure resistance.
Universal testing machine / impact testing machine / drop weight
DUBHEIntelligent Industrial Ecosystem
From tensile, impact, melt flow to environmental aging, composition analysis and sample preparation, we build complete material verification capabilities for rubber and plastics, films, cables, auto parts and scientific research laboratories.
Establish a repeatable, comparable, and traceable testing system for non-metallic materials to reduce the breakpoints between equipment selection and experimental processes.
Tension, compression, bending, peeling, tearing, impact and pipe pressure resistance.
Universal testing machine / impact testing machine / drop weightMelt flow, Vicat softening, thermal deformation, Mooney viscosity and vulcanization properties.
Melt Finger/Vicat Meter/Mooney ViscometerHigh and low temperature, damp heat, thermal aging, UV aging and constant temperature drying.
Environmental chamber/aging chamber/UV test chamberMoisture, density, hardness, RoHS elements, carbon black content and thermal analysis.
Moisture meter / density meter / spectrum analyzerInjection molding, punching, notching, dumbbell prototyping and plate vulcanization.
Injection molding machine / sample making machine / vulcanizing machine2D and 2.5D non-contact measurement of dimensions, contours and geometric features.
Image measuring instrument/CCD measuring systemThe following are representative models in promotional materials. Click on the product card to view the usage, key parameters and applicable scenarios.
Used for tensile, compression, bending, peeling and tear testing of rubber, modified plastics, engineering plastics, composite materials, etc.
Suitable for mechanical testing of finished and semi-finished products of auto parts, wires, fasteners, alloys, aluminum profiles and composite materials.
Used for the determination of mass flow rate MFR and volume flow rate MVR of thermoplastic melts.
Determine the Vicat softening temperature and heat deformation temperature of plastic samples under specified load and temperature conditions.
It is used for reliability testing of electronics, electrical appliances, automobiles, metals, chemicals, building materials and other products under high and low temperature and humidity and heat cycle conditions.
Simulate the aging of materials caused by sunlight, rain, and dew, and evaluate fading, chalking, cracking, and strength changes.
Quickly determine the moisture content of plastic particles, food, sludge, powder and other samples, suitable for quality control and production sites.
X-ray fluorescence spectroscopy technology is used to screen restricted elements in electronic products, toys, hardware manufacturing and other fields.
Suitable for density measurement of rubber, plastic, wires and cables, foam, glass products, magnetic materials and alloy materials.
Different materials have different core risks. Equipment selection should not only look at a single indicator, but also combine sample shape, test standards, temperature and humidity conditions and production rhythm.
Pay attention to the tensile strength, elongation at break, peel force, impact toughness and thermal properties of the film, and verify the stability of the material during printing, lamination, bag making and transportation.
Establish a unified approach from sample production to report output to reduce human variation and improve data consistency between R&D and quality teams.
Clarify the materials, sample size, test standards and judgment indicators.
Injection molding, punching, notch or dumbbell sample making to ensure consistent size.
Complete temperature and humidity pretreatment, aging or constant temperature conditions as required.
Collect raw data and curves such as force, displacement, temperature, time, etc.
Generate reports, export data and form batch quality records.
The control software can collect data such as strength, yield, fracture, elastic modulus, displacement and temperature, and form a complete record through curves, batches and reports.
Tensile, compression, bending, peeling, three-point bending, impact and other clamps can be configured according to the material and sample shape.
Select the appropriate range according to the target force value, temperature range, displacement and sample size to avoid "measuring small signals at a large range".
Confirm the power supply, ventilation, cooling, air source and safe space to ensure long-term stable operation of the equipment.
It is recommended to use standard samples, repeatability tests and operating procedures as the basis for equipment acceptance and personnel training.
Note: The specific implementation standards, accuracy levels, certifications and configurations are subject to the technical agreement and final confirmation data of the corresponding model.
Clarifying materials, test methods and specimen conditions can significantly improve selection efficiency and avoid later replacement of sensors or fixtures.
Submit parameter requirementsIt is recommended that commonly used test forces fall in the middle range of the sensor range and leave margin for peak values. Samples with small force values such as films and tapes usually require sensors with smaller ranges to improve resolution in the low load section.
Yes. The universal testing machine can complete tension, compression, bending, peeling, tearing and other projects by changing the fixtures and testing procedures; however, the range, space, speed and fixtures must meet the specific methods.
It is necessary to confirm the power supply, cooling space, drainage or humidification water source, ground load-bearing and ambient temperature. Low temperature or rapid cooling configurations also require a combination of refrigeration system and laboratory ventilation conditions.
The software of the representative model supports test data, curve and report management. The specific export format, template editing and interface capabilities need to be confirmed in the technical agreement.
It can be customized based on specimen size, clamping method, force direction and test space evaluation. It is recommended to provide specimen drawings, materials, target loads and test procedures.
It is recommended to submit the material name, specimen size, test standard, target range, temperature range and laboratory power conditions.