IP Library › Granted Patent US 7,343,695
Granted Patent B2
US 7,343,695 · App. 10/244,793 · Granted Mar 18, 2008

Vacuum drying apparatus and vacuum drying method

Assignee: Dai Nippon Printing Co., Ltd.
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Quick Facts
Patent No.
US 7,343,695
App. No.
10/244,793
Granted
Mar 18, 2008
Kind
B2
Abstract

A vacuum drying apparatus and a vacuum drying method are provided wherein it is possible to reduce the drying time of an object to be dried and the surface condition of the object to be dried after drying is extremely satisfactory. A vacuum pump is connected to an exhaust port of a vacuum chamber through a suction pipe, and a frequency converter is provided on the input side of an alternating current motor for driving the vacuum pump to form a vacuum drying apparatus. A substrate coated with coating liquid is placed in the vacuum chamber of the vacuum drying apparatus. A gas in the vacuum chamber is exhausted at a high rate until the solvent evaporation rate of the solvent of the coating liquid comes to the vacuum degree that is slightly lower than the vacuum degree at which the evaporation rate of the solvent of the coating liquid is abruptly elevated, and thereafter, the gas in the vacuum chamber is exhausted at a low rate to cause the solvent of the coating liquid to evaporate gradually, and after evaporation of the solvent of the coating liquid, the pressure in the vacuum chamber are returned to the atmospheric pressure.

Claims (33)

1. A vacuum drying apparatus for placing a substrate coated with coating liquid containing solvent in a vacuum chamber and evaporating the solvent in the coating liquid under reduced pressure, comprising:

a vacuum chamber provided with an exhaust port;

a vacuum pump connected to the exhaust port of the vacuum chamber through a suction pipe;

an alternating current motor for driving the vacuum pump;

a frequency converter provided on the input side of the alternating current motor; and

a controller for detecting vacuum degree in the vacuum chamber, adjusting the frequency converter by the preset vacuum degree to change an alternating current frequency to be introduced into the alternating current motor,

wherein the controller is previously set to:

adjust an exhaust rate of the vacuum drying apparatus at high rate until the vacuum degree in the vacuum chamber reaches a pressure level slightly higher than the pressure at which the evaporation rate of the solvent in the coating liquid is rapidly elevated;

then, reduce the exhaust rate to low rate, to cause the solvent of the coating liquid to evaporate gradually; and

after evaporation of the solvent of the coating liquid, allow the pressure in the vacuum chamber to return to the atmospheric pressure.

2. The vacuum drying apparatus according to claim 1 , wherein the vacuum pump is driven at the alternate current frequency of 60 Hz when the exhaust rate is high, and

the vacuum pump is driven at the alternate current frequency of 50 Hz when the exhaust rate is low.

3. A vacuum drying apparatus for placing a substrate costed with coating liquid containing solvent in a vacuum chamber and evaporating the solvent in the coating liquid under reduced pressure, comprising:

a vacuum chamber provided with an exhaust port;

a vacuum pump connected to the exhaust port of the vacuum chamber through a suction pipe equipped with a shut-off valve;

a motor for driving the vacuum pump; and

a controller for detecting the vacuum degree in the vacuum chamber, adjusting the shut-off valve by the preset vacuum degree to change an exhaust rate from the exhaust port;

wherein the controller is previously set to:

adjust an exhaust rate of the vacuum drying apparatus at high rate until the vacuum degree in the vacuum chamber reaches a pressure level slightly higher than the pressure at which the evaporation rate of the solvent in the coating liquid is rapidly elevated;

then, reduce the exhaust rate to low rate, to cause the solvent of the coating liquid to evaporate gradually; and

after evaporation of the solvent of the coating liquid, allow the pressure in the vacuum chamber to return to the atmospheric pressure.

4. A vacuum drying apparatus for placing a substrata coated with coating liquid containing solvent in a vacuum chamber and evaporating the solvent in the coating liquid under reduced pressure, comprising:

a vacuum chamber provided with an exhaust port;

a vacuum pump connected to the exhaust port of the vacuum chamber through a suction pipe equipped with a shut-off valve;

an alternating current motor for driving the vacuum pump;

a frequency converter provided on the input side of the alternating current motor; and

a controller for detecting vacuum degree In the vacuum chamber. adjusting the frequency converter by the preset vacuum degree to change en alternating current frequency to be introduced into the alternating current motor and/or adjusting the shut-off valve by the preset vacuum degree to change an exhaust rate from the exhaust port;

wherein the controller is previously set to:

adjust an exhaust rate of the vacuum drying apparatus at high rate until the vacuum degree in the vacuum chamber reaches a pressure level slightly higher than the pressure at which the evaporation rate of the solvent in the coating liquid is rapidly elevated;

then, reduce the exhaust rate to low rate, to cause the solvent of the coating liquid to evaporate gradually; and

after evaporation of the solvent of the coating liquid, allow the pressure in the vacuum chamber to return to the atmospheric pressure.

5. The vacuum drying apparatus according to claim 4 , wherein the vacuum pump is driven at the alternate current frequency of 60 Hz when the exhaust rate is high, and

the vacuum pump is drive at the alternate current frequency of 50 Hz when the exhaust rate is low.

Priority Claims (1)
JP 2000-045541 · Feb 23, 2000 · national
Continuity (2)
Division 0979151900 · Feb 23, 2001
Related Publication 20030019124A1 · Jan 30, 2003