Factory directly sale Medial Temperature Wax to Danish Factories

Factory directly sale
 Medial Temperature Wax to Danish Factories

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Factory directly sale Medial Temperature Wax to Danish Factories 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.

Model Number

Appearance

(Normal Temperature)

Quality Standard

Range of Temperature Control

Effective Distance

Travel

Water-Solubility

Acid and Alkali

Mechanical Impurity

A45

Powder, Slice , Column

45/55

7

Non.

Non.

A45-1

Powder, Slice , Column

45/55

10

Non.

Non.

A45-2

Powder, Slice , Column

45/60

11

Non.

Non.

A48

Powder, Slice , Column

48/60

7

Non.

Non.

A50

Powder, Slice , Column

50/60

8

Non.

Non.

A50-1

Powder, Slice , Column

50/75

6

Non.

Non.

A51

Powder, Slice , Column

51/60

10

Non.

Non.

A52

Powder, Slice , Column

52/55

3

Non.

Non.

A53

Powder, Slice , Column

53/59

7

Non.

Non.

A54

Powder, Slice , Column

54/67

9

Non.

Non.

A55

Powder, Slice , Column

55/62

7

Non.

Non.

A55-1

Powder, Slice , Column

55/65

10

Non.

Non.

A55-2

Powder, Slice , Column

55/70

11

Non.

Non.

A57

Powder, Slice , Column

57/66

10

Non.

Non.

A58

Powder, Slice , Column

58/70

8

Non.

Non.

A60

Powder, Slice , Column

60/70

6

Non.

Non.

A60-1

Powder, Slice , Column

60/70

10

Non.

Non.

A60-2

Powder, Slice , Column

60/75

4

Non.

Non.

A60-3

Powder, Slice , Column

60/75

11

Non.

Non.

A60-4

Powder, Slice , Column

60/80

2

Non.

Non.

A60-5

Powder, Slice , Column

60/85

10

Non.

Non.

A60-6

Powder, Slice , Column

60/100

5

Non.

Non.

A63

Powder, Slice , Column

63/75

8

Non.

Non.

 


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 Medial Temperature Wax to Danish Factories detail pictures


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  • Kung Fu Maintenance demonstrates how to charge an air conditioner through the suction side only by feel. Get KFM’s favored Multi-Meter here https://amzn.to/2l8W9CO
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    OK, we’ve got an AC just barely cool in here. Kind of low on freon. Ompressor’s pretty hot to the touch. Unit’s still running.

    It’s going to be charging up through the low side. You’ve got a tiny leak at the evaporator. So we’re going to be using a micro additive. Got our gauges calibrated.

    We’ve got a couple of things we can make better. Got our new fan capacitor. We could secure that up. Make that better.

    Make sure all our gauges are turned off here. And I’ll remove the cap on the low side. It’s blazing hot today. Probably 109 degrees out here today.

    Just going to try to get this going and get off the roof. It’s pretty humid today too, so not the easiest day to be up here. Looks like the Schrader valve cap needs to come out with the cap. It’s kind of stuck on the end there.

    Make sure we recover that. There’s our o-ring. Put that back in the cap for later use.

    Now we’re going to hook up our quick connect fitting. This is a low loss fitting. Prevent frostbite. Want to wear gloves. Wear safety glasses.

    Now we can check our reading up top. See what our pressures are. So we’re showing at about 30, which means we’re just a little bit low. And purge the line.

    Make sure all the valves are tight here. Pick up our refrigerant can at the end. Got my can of refrigerant up here. Going to set it up top and run the middle line.

    Charging port hooks up to the tank of refrigerant. OK. Open the line.

    And back down here, we’re going to go ahead and purge. Purge the line. Purge both sides. Now we’re ready to charge.

    Now, because the compressor is really hot, I’m going to dump some cold water. All I have today is cold water. And I actually prefer to use a little bit of ice to cool it down, speed up the charge. But I’ll be using the cold water instead.

    So this has been in the fridge for a while. That will help speed the charge up. Going to monitor the line. It’s already starting to feel a bit colder. I’m monitoring it with my wrist here.

    What we wanted is for this line here that goes down to the evaporator. And the temperature at the evaporator will start to backtrack up this line to the compressor. This is the suction line. It’s why we’re sucking in the refrigerant there from our tank up top here.

    But what I have is capillary tube system at my evaporator coil. And the capillary tube system is a metering device that only lets so much refrigerant through at a time. Now the deal is, the temperature of the evaporator coil needs to be about 40 degrees, which is above freezing. You know, water freezes at 32 degrees. So just keeping that coil temperature up above that amount will mean that our coil is not going to freeze up, and we’re going to be removing heat from inside the unit.

    Now as the evaporator coil reaches its 40 degree temperature, it’ll back up into this line. So this low side line is nice and chilly. And that’s going to tell us that our evaporator is that cold also. So that’s how we can kind of monitor and charge this unit up, charge it to where we need it to be.

    Again, with the capillary tube system, it’s pretty forgiving. You’d have to really try to overcharge it. Obviously, you don’t want to overcharge it. You want to avoid overcharging.

    But again, it meters the refrigerant at a fixed orifice rate. It’s a fixed size. Only lets so much refrigerant through at a time.



    Tanabe Air Compressor 2nd Stage Discharge valve. If you have any queries write in comment. Which next video would you like to see.

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