Double Temperature Measurement Microwave Vacuum Test Furnace

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Traditional microwave vacuum test furnace is used for heat treatment of semiconductor or metal materials. The material will generate gas due to high temperature. This gas will be mixed with some metal elements and adhered to the inner wall of the furnace, after cooling, it will form dirt and the microwave vacuum test furnace is fixedly installed, which is not convenient for the staff to clean.

Double temperature measurement microwave vacuum test furnace has the advantages of fast heating rate, high efficiency and good consistency of processed materials. It not only has unique advantages of high temperature microwave oven and sintering technology, such as high, low, fast and low cost, but also has the advantages of wide application, simple operation, process repeatability and good stability. It is especially suitable for the development, testing and small-scale production of new materials.

SemiconductorsSemiconductors

Semiconductors

Dual temperature measurement microwave vacuum test furnace has the following advantages:

1.Double temperature measurement microwave vacuum test furnace is provided with a bottom plate for the staff to clean.When cleaning the furnace body, first take out the top plate above the guide rail, remove the restriction of the two support plates, then pull out the connecting pipe, pull out the bolt from the pin hole to separate the furnace body from the support plate, next, slowly move the support plate through the guide rails and finally remove the furnace body.

Double temperature measurement microwave vacuum test equipment avoids the phenomenon that the staff can not clean the dead corner due to the limitation of the position when cleaning the fixed installation of the furnace body, which affects the next test.

2.High security. Double temperature measurement microwave vacuum test furnace is provided with a front cover. When the worker turns on the instrument, the instrument discharges the internal gas generated by the high temperature through the connecting pipe into the gas tank. Avoid the harmful gases or high-temperature gases generated from the instrument leak out, causing harm to the human body.

3.Good stability. Double temperature measurement microwave vacuum test furnace is inserted into the pin hole, and the connecting block is fixedly connected with the support plate, thereby fixing the furnace body on the support plate, thereby improving the stability of the instrument.

Double temperature measurement microwave vacuum test furnaceDouble temperature measurement microwave vacuum test furnace

Double temperature measurement microwave vacuum test furnace

Related parameters of double temperature measurement microwave vacuum test furnace:

BrandLeaderProcessing CustomizationYes
CategoryVacuumPower6(kw)
6(kw)External dimension1.3*1.5*1.7(m)Floor area2(m2)
Heat transfer area1(㎡)Rotation rate6(r/min)
Operating pressureNegative pressureWeight500(kg)
SpecificationPLC ControlWhether cross-border supplyNo

Overview of the structural design of the dual temperature measurement microwave vacuum test furnace:

A universal wheel is fixedly mounted on the bottom of the double temperature measuring microwave vacuum furnace mounting table. The front surface of the mounting table is fixedly mounted with an indicating platform. The top of the mounting table is fixedly mounted with a bottom plate. . The inner side of the bottom plate is fixedly mounted with a guide rail. The top of the guiding rail is movably mounted with two supporting plates. A top plate is movably mounted between the two support plates and at the top of the guide rail.A gas tank is fixedly mounted between the two support plates and at the top of the bottom plate. The top of the two support plates is movably mounted with a furnace body, and the outer side wall of the furnace body is fixedly mounted with two connecting blocks between the two supporting plates. The opposite side of the two connecting blocks is movably installed with a bolt, the front side of the furnace body is hinged with a front cover.The front surface of the front cover is fixedly mounted with two hinge shafts. The outer side walls of the two hinge shafts are sleeved with a handle. A connector is fixedly mounted on the bottom of the front cover. A connecting tube is fixedly mounted on the bottom of the connector. The two support plates are internally provided with a pin hole. The top of the mounting platform is fixedly mounted with a control device on the right side of the bottom plate.

Other design details of the dual temperature microwave vacuum test furnace:

1.There are four universal wheels, evenly distributed at the bottom of the mounting table, and the distance between the two support plates is equal to the length of the top plate.

2.There are four bolts, evenly distributed on the opposite side of the two connecting blocks.

3.The connecting pipe is a bellows, the connecting pipe is connected to the gas tank at an end away from the connecting head.

4.There are four bolt holes, and the pin holes are at the same level as the pins, the bolt holes are matched with the bolts.

5.The control device comprises a pressure gauge, a water cooler and a heater, a bracket is fixedly mounted on the bottom of the control device.

Schematic diagram 1 of mechanical structure of double temperature measurement microwave vacuum test

Schematic diagram 1 of mechanical structure of double temperature measurement microwave vacuum test

Schematic diagram 2 of mechanical structure of double temperature measurement microwave vacuum testSchematic diagram 3 of mechanical structure of double temperature measurement microwave vacuum test

Schematic diagram 2 of mechanical structure of double temperature measurement microwave vacuum test / Schematic diagram 3 of mechanical structure of double temperature measurement microwave vacuum test

1 mounting table, 2, universal wheel, 3, indicating table, 4 bottom plate, 5 guide rail, 6 support plate, 7 top plate, 8 gas tank, 9 furnace body, 10 connection block, 11 bolt, 12 front cover, 13 hinge shaft , 14 handles, 15 connectors, 16 connection tubes, 17 bolt holes, 18 control devices

The theoretical basis of the dual temperature measurement microwave vacuum test furnace:

Microwaves provide the fastest way to transfer energy into a biosolid. In microwave drying, the water inside the material evaporates into water vapor in situ. The water vapor pressure is greater than the pressure of the external environment to create a positive pressure differential that drives the water vapor to move toward the surface of the material. The energy of the microwave and the dielectric constant of the material determine the efficiency of microwave conversion to heat, which fundamentally determines the drying rate of microwave drying.However, in normal pressure, the microwave rapidly raises the temperature of the material to the boiling point of the water, resulting in too high a temperature of the material and a deterioration in the quality of the dried product.

Supporting services for double temperature measurement microwave vacuum test furnace:

1. We will provide free consulting services before and after the sale, we can provide project planning and design services according to the specific requirements of customer.

2. Before leaving the factory, we will debug and inspect the entire equipment until everything is ok.

3. We provide personal operation and commissioning training, provide standard equipment installation and use flow chart and user manual.

4. The equipment warranty period is 12 months.

Double temperature measurement microwave vacuum test furnace

Leader Microwave Equipment Company has won the favor of many users with excellent equipment and warm and perfect service. Our customers are spread in many countries and regions at home and abroad. We are honored for this and are committed to providing the perfect testing equipment for more scholars. If you need our dual temperature microwave vacuum test furnace and hopper type microwave vacuum composite dehumidification and drying device.Welcome to contact us at any time.