| Sign In | Join Free | My carsrow.com |
|
| Company Info. |
| Dongguan Chengfeng Testing Equipment Co., Ltd |
| Verified Supplier |
| View Contact Details |
| Product List |
Characteristics and uses of compression refrigeration type
low-temperature brittleness tester: The low-temperature brittleness
tester is used to measure the high temperature at which a material
fails under impact under specified conditions, which is the
brittleness temperature. It can compare and evaluate the
performance of plastics and other elastic materials under
low-temperature conditions. It can determine the brittleness
temperature and low-temperature performance of vulcanized rubber
with different rubber materials or formulations. Therefore, quality
inspection of scientific research materials and their products,
control of production processes, and other aspects are
indispensable. This instrument is designed according to the GB1682
national standard, and its technical indicators meet the
requirements of national standards such as HG 2-162-1965 Plastic
Low Temperature Impact Compression Test Method and GB5470-2008
Plastic Impact Brittle Temperature Test Method.
2, Technical parameters of compression refrigeration type
low-temperature brittleness tester
1. Test temperature and time: -70 ℃ -0 ℃
Short cooling time, no need for water cooling, more environmentally
friendly.
2. Impact velocity: 2m/s ± 0.2m/s
3. After constant temperature, the temperature fluctuation within 3
minutes of the experiment is less than ± 0.5 ℃, indicating more
accurate temperature control.
4. Distance from the center of the impactor to the lower end of the
gripper: 11 ± 0.5mm
5. Dimensions: 830 * 540 * 1260
6. Power: 800W. The power is smaller, and the compressor will
automatically shut down after reaching the temperature, which is
more environmentally friendly and energy-saving.
7. Volume: 3500 ml. Larger volume and wider testing range
3, Structural principle of compression refrigeration type
low-temperature brittleness tester
3.1 Lifting gripper
The lifting gripper consists of a cylinder with a gripper and a
cylinder seat.
The distance from the impacted part of the specimen to the lower
end of the gripper is 11.0 ± 0.5mm, as shown in Figure 1.
3.2 Impact device
The impact device consists of an impactor and an impact cylinder.
3.3 Impactor
The shape and size of the impactor head are shown in Figure 2. The
weight of the impactor is 200 ± 20g, and its working stroke is 40 ±
1mm. In the reset state of the impact cylinder, the distance from
the end of the impactor to the specimen is 25 ± 1mm.
3.4 Freezing medium: Industrial ethanol
3.5 This measuring instrument uses a compressor for direct cooling
No need for cooling circulating water.
4. Usage method
4.1 Connect the power supply, and the temperature controller and
timer display lights will turn on.
4.2 Inject freezing medium (usually industrial ethanol) into the
cold well, and the injection amount should ensure that the distance
from the lower end of the clamp to the liquid level is 75 ± 10mm.
4.3 Vertically clamp the sample onto the gripper (as shown in
Figure 1). The clamp should not be too tight or too loose to
prevent deformation or detachment of the sample.
4.4 Press the gripper to start freezing the sample, and at the same
time, activate the timing control switch (or press the stopwatch)
for timing. The freezing time for the sample is specified as 3.0 ±
0.5min. During the freezing period of the sample, the temperature
fluctuation of the freezing medium shall not exceed ± 1 ℃.
4.5 Lift the lifting gripper and allow the impactor to impact the
specimen within half a second.
4.6 Remove the sample and bend it 180 ° in the direction of impact,
carefully observing for any damage.
4.7 After impact (each sample is only allowed to be impacted once),
if damage occurs, the temperature of the freezing medium should be
increased. Otherwise, the temperature should be lowered and the
test should continue.
Through repeated experiments, determine the low temperature at
which at least two samples remain intact and the high temperature
at which at least one sample fails. If the difference between these
two results is no more than 1 ℃, the experiment is considered
complete.
5. Test standards
5.1 Specifications
The length of the sample is 25.0 ± 0.5mm, the width is 6.0 ± 0.5mm,
and the thickness is 2.0 ± 0.3mm.
5.2 Requirements
The surface of the sample should be smooth, free of foreign
impurities and damage. The finished product should be polished and
cut to the corresponding size.
6. Precautions
6.1 The cylinder pressure has been adjusted before leaving the
factory and cannot be changed arbitrarily.
|