High Quality for High Temperature Wax for Macedonia Factory
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Product Detail
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High Quality for High Temperature Wax for Macedonia Factory Detail:
Automatic Temperature Regulating Agent Series is a kind of thermal expansion materials, which depends on principles that the substance expands when it is heated and constricts when it is cooled and a liquid is incompressible. It can automatically regulate temperature. When the ambient temperature goes up to the special value, Automatic Temperature Regulating Agent goes up to the special temperature with the ambient temperature, its unit volume increases. When the ambient temperature falls down to special value, Automatic Temperature Regulating Agent also falls down to the special temperature with the ambient temperature, its unit volume reduces. The agent is loaded in the purpose-made thermostatic element. The variation of ambient temperature takes a pressure and the thermostatic element takes a change, and this change brings the movement of either the appurtenance of the thermodynamic component or itself, thereby carrying out the automatic opening & closing function. All sorts of temperature controllers and the electrical switches are developed depending on the physical feature of Automatic Temperature Regulating Agent. It has been widely used in the fields of refrigeration, auto-control system, automobile industry, petrochemical industry, sanitary ware, heating and ventilating, electric electron, building, space & aviation etc.
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Model Number |
Appearance (Normal Temperature) |
Quality Standard |
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Range of Temperature Control |
Effective Distance Travel |
Water-Solubility Acid and Alkali |
Mechanical Impurity |
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A98 |
Powder, Slice , Column |
98/111 |
8 |
Non. |
Non. |
|||
|
A100 |
Powder, Slice , Column |
100/110 |
3 |
Non. |
Non. |
|||
|
A100-1 |
Powder, Slice , Column |
100/110 |
7 |
Non. |
Non. |
|||
|
A100-2 |
Powder, Slice , Column |
100/120 |
8 |
Non. |
Non. |
|||
|
A105 |
Powder, Slice , Column |
105/120 |
6 |
Non. |
Non. |
|||
|
A108 |
Powder, Slice , Column |
108/116 |
8 |
Non. |
Non. |
|||
|
A110 |
Powder, Slice , Column |
110/120 |
5 |
Non. |
Non. |
|||
|
A110-1 |
Powder, Slice , Column |
110/120 |
7 |
Non. |
Non. |
|||
|
A120 |
Powder, Slice , Column |
120/140 |
6 |
Non. |
Non. |
|||
|
A120-1 |
Powder, Slice , Column |
120/160 |
8 |
Non. |
Non. |
|||
|
A145 |
Powder, Slice , Column |
145/165 |
7 |
Non. |
Non. |
|||
|
A160 |
Powder, Slice , Column |
160/180 |
4 |
Non. |
Non. |
|||
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A160-1 |
Powder, Slice , Column |
160/200 |
10 |
Non. |
Non. |
|||
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A200 |
Powder, Slice , Column |
200/220 |
7 |
Non. |
Non. |
|||
|
A200-1 |
Powder, Slice , Column |
200/230 |
7 |
Non. |
Non. |
|||
Product detail pictures:

We stay with our company spirit of "Quality, Performance, Innovation and Integrity". We goal to create more value for our clients with our abundant resources, advanced machinery, experienced workers and superb solutions for High Quality for High Temperature Wax for Macedonia Factory, The product will supply to all over the world, such as: Malawi , Sudan , Nigeria , We aim to build a famous brand which can influence a certain group of people and light up the whole world. We want our staff to realize self-reliance, then achieve financial freedom, lastly obtain time and spiritual freedom. We do not focus on how much fortune we can make, instead we aim to obtain high reputation and be recognized for our products. As a result, our happiness comes from our clients satisfaction rather than how much money we earn. Ours team will do best for you always.
These display units are presented to show you a comparison of energy consumption between a ROBO Cylinder® and air cylinder. The results are shown on the touch panel.
The display shows the electricity costs and CO2 emissions while the cylinders are operating.
Electricity bills, CO2 emissions were calculated based on ROBO Cylinder’s power consumption and the measured flow rate of compressed air consumed by the air cylinder. The results are shown on the touch panel.
According to this comparison, ROBO Cylinder’s energy consumption falls to about one-fifth the levels of the air cylinder. You can cut CO2 emissions and running cost by more than 80%.
We can also compare the degrees of vibration of the weights on springs, showing the difference between the levels of impact generating at the end of the stroke on both cylinders.





