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    • 8. 发明专利
    • Drying apparatus for coating and method thereof
    • 干燥装置用于涂料及其方法
    • JP2003024859A
    • 2003-01-28
    • JP2001219017
    • 2001-07-19
    • Toyota Motor CorpTrinity Ind Corpトヨタ自動車株式会社トリニティ工業株式会社
    • TAKAHASHI SHINICHIICHIHARA KAZUMISATO MAMORUKOUCHI KAZUHIKOYAMAMOTO KOUOUGOTO MASAHIRO
    • F26B9/00B05C9/14B05D3/02F26B15/12
    • PROBLEM TO BE SOLVED: To reduce the baking and drying time of a work coated with a thermosetting coating material.
      SOLUTION: When works ( a work coated with a solvent based coating material and a work coated with a water based coating material) having a different required baking temperature from each other are baked and dried in the same drying oven 12, air heated to a temperature corresponding to the work having a higher baking temperature by a heater 22 is blown to the work 10 by a blower 26. At this time, the flow rate of the air blown (hot air) to the work 10 is controlled corresponding to the required baking temperature of the work 10. Because a mutual relation is present between the surface temperature (baking temperature) of the work 10 and the flow rate of the air, the surface temperature of the work 10 is set to the required baking temperature by controlling the flow rate of the air. As a result, the baking time is reduced compared with that in the case the temperature of air is directly controlled.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:减少涂覆有热固性涂层材料的工件的烘烤和干燥时间。 解决方案:在相同的干燥炉12中烘烤并干燥具有彼此不同的所需烘烤温度的工作(涂覆有溶剂基涂料的材料和涂有水基涂料的工件)时,加热至温度 与通过加热器22具有较高烘烤温度的工件相对应的工件通过鼓风机26吹送到工件10.此时,根据所需的烘烤来控制吹向工件10的空气吹出(热空气)的流量 由于在工件10的表面温度(烘烤温度)和空气流量之间存在相互关系,因此通过控制工件10的流动将工件10的表面温度设定为所需的烘烤温度 空气的速度 结果,与直接控制空气的温度相比,烘烤时间降低。
    • 9. 发明专利
    • ULTRASONIC TYPE ANEMOMETER
    • JPH0843421A
    • 1996-02-16
    • JP17423094
    • 1994-07-26
    • NIPPON SOKENTOYOTA MOTOR CORP
    • FUKUI SHINJIGOTO MASAHIROFURUTA NORITOSHIMUKOYAMA YOSHIO
    • G01P13/00
    • PURPOSE:To suppress turbulence of wind mutually, and to improve the accuracy in detection of a wind direction and a wind velocity by providing ultrasonic elements for transmission and reception which have an emission port and an incidence port of an ultrasonic wave in the opposite surfaces thereof respectively and which are disposed in directions of two axes intersecting each other perpendicularly, and detect the wind separately in the directions of the two axes. CONSTITUTION:An ultrasonic element 24 for transmission is provided inside a case 25 and ultrasonic elements 231 and 232 for reception are embedded in a roof 41. The case 25 and a support 26 have structures not disturbing the flow of a wind given to an anemometer, and a diffused reflection preventing structure 27 is provided on the case 25 side so that an ultrasonic wave may not be reflected diffusedly. The element 24 is provided at the center of the case 25, while the elements 231 and 232 are disposed with a prescribed space between on the axes X and Y intersecting each other perpendicularly. In order to detect a wind direction, the case 25 is rotatinally symmetric about the element 24. A time of propagation required for the ultrasonic wave emitted into air from the element 24 to reach the elements 231 and 232 is detected and a wind velocity and the wind direction are calculated from a change in the time.