High and Low Temperature Tensile Testing Machine With Customizable Testing Space
Temperature Servo Tensile Test Machine is application to the tensile and creep relaxation strength test if the round specimen, rectangular specimen, and tubular product and other products under GB/T4338 (metal material of high temperature tensile test method), HB5195 (The metal high temperature tensile test method) , GB/T2039( the tensile creep rupture and test method), HB5150 (metal high temperature tensile durable test method)
STRUCTURE
-180~-1100 high low temperature universal/tensile testing machine adopting cylinder open structure or monolithic construction, normally is three step control. Mainly composed by test electric stove, temperature controller, high temperature rod, high temperature chuck, ect. Can do high temperature tensile test of metal and non metal materials. If normal temperature test, just move high temperature furnace away.
FEATURES
1. Cylinder structure is adopted for high temperature furnace, heating
resistance wire, resistance wire distribution is reasonable, to ensure that the furnace temperature gradient and volatility resistance wire adopts three control mode, respectively Furnace wire 1.5 mm in diameter. (if you need to work long hours, lasting and creep test, can use the 5 mm diameter thick silk as heating body furnace, low voltage, high current power supply, greatly extend the life of the furnace silk, can work continuously for 5000 hours.)
2. Temperature measuring device is K type thermocouple, stable and
reliable to work long hours, measurement accuracy satisfies the requirement of national standard and the line mark
3. Electric furnace with special heat insulation measures, the external surface of the furnace temperature rise is small, energy saving and safe.
Temperature control measurement system
-180~-1100 high low temperature universal/tensile testing machine is composed by temperature measurement component, central computing
unit (PLC), temperature detection instrumentation (PID adjust, with AT function) and HIM, etc
Real time monitoring temperature data vibration, display curve, and record of curve and invoking funcion; Human set the abnormal data; Add short message sending module, send a police report to the standard mobile phone
SPECIFICATION
Items |
Specification |
Capacity (optional) |
2, 5, 10, 20, 50, 100, 200, 500, 1000, 2000kg |
Unit (Switchable) |
G, KG, N, KN, LB |
Load Resolution |
1/100,000 |
Load Accuracy |
|
Stroke (exclude the grips) |
400 500 600 mm (can be adjusted higher by requirements) |
Test speed |
0.1~500 mm/min Selectable |
Effective Width |
400 mm |
Operation Mode |
Controlled by PC |
Weight (exclude the grips) |
130 Kg |
Display |
PC (can be programmed any of the customer's data ) |
Motor |
AC Servo Motor |
Dimension(L×W×H)-Main Unit |
1200×600×1500cm |
Dimension of the testing space |
400×400×700mm |
Testing width |
40cm ( can be widened by requirements) |
Power |
1#, 220V, 10A |
Rotation method |
high precision ball screw rod |
Fixture |
can be customized stretching and compressing fixture |
Temperature control chamber:
Items |
Specification |
Temperature range |
-40°C ~150°C |
Control method |
P.I.D Automatic calculation |
Humidity range |
20%~98% |
Tem & Hum accuracy |
±0.5°C, ±2.5% RH |
Temp& Humid regularity |
±2°C, ±3% RH |
Compressor |
France Tecumseh |
Cooling Speed |
1 °C/ min |
Counter |
LED,0~9999.99 |
Inner material |
SUS 304 Stainless steel |
Inner Chamber size |
(L×W×H)40×40×70cm (can custom) |
High and Low-Temperature Tensile Testing Machine with Customizable Test Space
The high and low-temperature tensile testing machine with a customizable test space is a device used to conduct tensile tests on materials in both high and low-temperature environments. Its main feature is the ability to adjust the test space size based on the specific requirements, making it suitable for testing samples of various sizes and shapes. This machine is widely used in industries such as aerospace, automotive, and electronics, particularly in scenarios where evaluating material performance under extreme temperature conditions is critical.
Main Features and FunctionsCustomizable Test Space
The size of the test space in this machine can be customized according to the specific needs of the test, accommodating different sample sizes. By adjusting the test space, various types of tensile tests can be conducted, such as precise testing for small material samples or large component tensile tests.
The customizable test space allows users to handle samples with unique dimensions and shapes, ensuring high precision and efficiency in testing.
High and Low-Temperature Environment Simulation
The testing machine is equipped with an efficient temperature control system capable of simulating extreme high and low temperatures. Typically, the temperature range can cover from -70°C to 200°C, meeting the testing needs of various materials.
The built-in temperature control system can achieve rapid heating and cooling to ensure temperature stability and precise control throughout the test process.
Rapid Temperature Change Function
The high and low-temperature tensile testing machine is capable of rapidly cycling through temperatures, usually achieving a temperature change rate of over 10°C per minute. This significantly shortens the test cycle and is suitable for applications that require rapid temperature change testing.
The rapid temperature change function helps simulate the extreme temperature fluctuations that materials may experience in real-world conditions, such as thermal shock tests in aerospace or automotive parts.
Precise Tensile Testing
The machine employs high-precision load sensors and displacement sensors, enabling accurate measurement of material mechanical properties during the tensile process, including tensile strength, yield strength, and elongation at break.
During testing, the changes in temperature and mechanical properties are recorded in real time, allowing researchers to understand the material's performance variations under different temperature conditions.
Intelligent Control and Data Analysis
The device features an intelligent control system, where users can set test parameters such as temperature, loading rate, and testing speed via a touchscreen or computer. The machine automatically performs the test according to the set parameters.
The data acquisition system records all data during the tensile test and generates detailed test reports, facilitating subsequent data analysis and research. Users can also export the data in various formats for further use.
Safety Protection Design
The device has multiple safety protection features to ensure the safety of both the machine and the operators during high and low-temperature tensile tests. For example, if the machine detects over-temperature, overload, or other faults during testing, it will automatically stop and issue a warning.
The machine also includes automatic detection for sample rupture, preventing damage to the testing system when the material breaks.
Material Research and Development
In material science, especially in the development of new materials, researchers often need to test the properties of materials under extreme temperature conditions. This high and low-temperature tensile testing machine helps researchers evaluate material performance in both high and low-temperature environments, assessing their reliability and suitability.
Quality Control
In industrial production, especially in the automotive, electronics, and aerospace industries, product quality standards are very strict. This device can be used for quality control during production to ensure that materials and products meet the required performance standards under high and low-temperature conditions.
Aerospace
Aerospace materials are subjected to severe high and low-temperature environments, such as low temperatures during flight and high temperatures when entering the atmosphere at high speeds. The customizable high and low-temperature tensile testing machine can simulate these extreme environments to evaluate the material's tensile properties and reliability under various temperature conditions.
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