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    • 3. 发明专利
    • HIGH EFFICIENCY COOLING TYPE HEAT TREATMENT APPARATUS
    • JP2002257474A
    • 2002-09-11
    • JP2001050373
    • 2001-02-26
    • ESPEC CORP
    • NAGANO YUKIOHIRATA TSUTOMU
    • B65G49/06C03B27/012F27B9/00F27B9/12F27D3/12H05K3/12
    • PROBLEM TO BE SOLVED: To enable a room temperature robot to be used with good processing efficiency of a work such as a glass board or the like. SOLUTION: A clean oven has a heat treatment chamber 2 having a heater 22 and a blower 23 to circulate a hot air for heat treatment, a cooling chamber 3 for cooling the work W thereunder after heat treatment, an elevator 7 for vertically moving a cassette a loaded with the work W by passing a partition member 4 between the two chambers, upper and lower sealing units 5, 6 for sealing between the two chambers in cooperation with the member 4 between the upper and the lower positions of the cassette 1, and the like. The heat treated work can be automatically sealed merely by lowering down the cassette mounting the heat treated work. The work can be cooled in the cooling chamber and transferred to a treated work conveying line by the room temperature specification robot. Flowing of the gas is not almost executed at the cassette moving time between the upper and lower chambers, the treating time in the heat treatment chamber and the cooling chamber is shortened to provide a good work treating efficiency.
    • 6. 发明专利
    • ITEM TRANSPORTING DEVICE IN HEAT TREATMENT DEVICE
    • JPH07198262A
    • 1995-08-01
    • JP35183093
    • 1993-12-29
    • TABAI ESPEC CORP
    • HIRATA TSUTOMU
    • F27B9/00F27B9/14
    • PURPOSE:To simplify a mechanism and its operation and prevent a temperature of a heat treatment device from being disturbed and to prevent a reduction in a degree of cleanliness. CONSTITUTION:This device has an A-tank mechanism 10 and a B-tank mechanism 50 which are symmetrically arranged. The A-tank mechanism 10 is comprised of upper shafts 11 to 14 having base plate receivers 11a to 14a and lower shafts 15 to 18 having base plate receivers 15a to 18a, respectively. They reciprocate alternatively between a supporting position and a retracting position or ascend or descend between the positions, support alternatively a sample product W and ascend or descend the product W by one pitch. A beam 90 reciprocates and ascends or descends to transfer the sample W from its inlet side to the lower-most stage of the A-tank and further transfers the sample W from the lower-most stage of the B-tank to an external side through a feeding beam 60 and returns back to its original position. With such an arrangement as above, it is possible to perform an intermittent transfer of the sample rapidly under a simple operation.
    • 7. 发明专利
    • TUNNEL TYPE CONTINUOUS BAKING FURNACE
    • JPH07190627A
    • 1995-07-28
    • JP33346593
    • 1993-12-27
    • TOTO LTD
    • OGATA MASAHIROYAGAWA IZUMI
    • F27B9/00F27B9/02F27B9/12F27B9/40
    • PURPOSE:To stabilize the setting of baking condition and improve the accuracy of baking by a method wherein the inflow of combustion gas from a baking zone into a cooling zone and the inflow of cooling air from the cooling zone into the baking zone are judged by an oxygen concentration, detected by an oxygen concentration detector provided in the shock absorbing zone of the cooling zone, to control forced ventilation air from a forced ventilation fan toward the baking zone. CONSTITUTION:An oxygen concentration detector 13 is arranged in a the side of shock absorbing zone 42, constituting the side of the baking zone 2 of a quick cooling section 4, to detect an oxygen concentration in a furnace. The detecting signal thereof is sent into an oxygen concentration measuring instrument 14 to compare the oxygen concentration with a set value. When the measured value has become lower than the set value, a signal is transmitted from the oxygen concentration measuring instrument 14 into the number of rotation controller of a forced ventilation fan 21 to increase the number of rotation of the forced ventilation fan 21 and increase the inside pressure of the cooling zone 3, thereby precluding the inflow of combustion gas into the cooling zone 3. On the contrary, when the measured value has become higher than the set value, the number of rotations of the forced ventilation fan 21 is reduced.