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    • 81. 发明专利
    • Medium defect detecting system
    • 中度缺陷检测系统
    • JPS6192477A
    • 1986-05-10
    • JP21365284
    • 1984-10-12
    • Fujitsu Ltd
    • HIRAYAMA AKIRANISHINOMIYA TAKESHI
    • G11B20/18
    • G11B20/18
    • PURPOSE:To prevent an error at data reading by measuring it at a count means when a pulse shaper smoothes a prescribed value continuously and outputting a medium defect detecting signal detecting a defect existing in a medium based on the measurement. CONSTITUTION:If a defect exists on a magnetic disc, an output of a head H is very small and the pulse shaper 3 outputs continuously an H level signal. Thus, a timer 6 is not reset but counts a clock outputted from a variable frequency oscillator 4. When no data is inputted for a specified time or over and the H level signal is consecutive, since the time 6 counts clocks by a prescribed number, '1' is outputted. A flip-flop 7 outputs '1', outputs an error signal representing detection of defect to display detection of defect, and the result is fed to a demodulation circuit 5, from which a clamp signal outputting '1' consecutively is generated. Thus, malfunction due to change into a random data is prevented.
    • 目的:通过在脉冲整形器连续平滑规定值并输出检测介质中存在的缺陷的介质缺陷检测信号时,以计数方式进行测量,防止数据读取时的误差。 构成:如果磁盘上存在缺陷,则头H的输出非常小,并且脉冲整形器3连续输出H电平信号。 因此,定时器6不被复位,而是对从可变频率振荡器4输出的时钟进行计数。当没有数据被输入指定的时间或超过并且H电平信号是连续的时,由于时间6将时钟计数到规定数量, 输出'1'。 触发器7输出“1”,输出表示缺陷检测的误差信号,显示出缺陷的检测,结果送到解调电路5,产生连续输出“1”的钳位信号。 因此,防止由于改变为随机数据而导致的故障。
    • 83. 发明专利
    • HEAT EXCHANGER
    • JPS58138989A
    • 1983-08-18
    • JP1967582
    • 1982-02-12
    • MITSUBISHI HEAVY IND LTD
    • HIRAYAMA AKIRATOUFUJI YOSHINORIHONDA KENJIKURANAMI YOSHITAKA
    • F22B31/08F28D15/02
    • PURPOSE:To make it possible to use effectively the energy of a high temperature exhaust heat source as a low temperature heat source by a method wherein the steam generating from a steam generating device and water are sealed as heat medium into heat transfer tubes connected to the water supply side of the heat exchanger. CONSTITUTION:When a boiler is started, water is supplied from a water supply line 26 into a steam drum 27 up to a predetermined level. In this case, boiler water is also introduced from a water drum 27' into each of element tubes 5 within an air preheater A through a water filling pipe 32 and a water filling valve 33 by opening a main boiler water filling valve 31. Then a high pressure blower 1' is operated and after purging the interior of a combustion furnace 20, a burner 19 is ignited to thereby elevate the pressure in the furnace 20. Further, when the level of the water in each of the element tubes 5 lowers below a reference level, water is supplied into the tube 5 by opening the water filling valve 33 and when it rises above the reference level, the superfluous water is blown out from a water level adjust valve 11. In addition, with the elevation of the pressure in the steam drum 27, the pressure in each of the element tubes 5 also elevates and when it reaches a predetermined value, a safety valve 10 is operated. Thus, in the above condition, the pressure and the level of the water in each of the element tubes 5 are kept at the predetermined values, respectively, and the pressure in the boiler is increased to thereby increase the load.
    • 86. 发明专利
    • SOLID WASTE INCINERATOR
    • JPS5463563A
    • 1979-05-22
    • JP12940777
    • 1977-10-28
    • MITSUBISHI HEAVY IND LTD
    • HIRAYAMA AKIRAYASUKOUCHI KENICHIYAMAMURA MISAOFUJIMA YUKIHISA
    • F23G5/00F23G5/30F23G7/00
    • PURPOSE:To provide a solid waste incinerator which can efficiently incinerate solid waste by reducing production of harmful components such as SOx, NOx, etc., by dividing an incinerator body into a plurality of combustion chambers to incinerate the components in respective combustion chambers in response to the properties of the wastes. CONSTITUTION:An inlet 19 and an auxiliary medium inlet 20 are provided at the upper incinerator body 1 of a hearth 2 for receiving highly wet low calorie solid waste (sludge or the like). An inlet 22 and an auxiliary medium inlet 23 are provided at the upper body 1 of a hearth 3 for receiving intermediate wet intermediate calorie solid waste (chips and dusts or the like). An inlet 28 and an auxiliary medium inlet 29 are provided at the top of the hearth 10 for receiving intermediate wet high calorie solid waste (bulk or the like). An inlet 32 and an auxiliary medium inlet 33 are mounted at the body 1 above the main combustion chamber 8 for receiving liquid high calorie waste to be incinerated. The auxiliary medium may include additives for combustion, ammonia, etc.
    • 88. 发明专利
    • Method for molding prepreg molding for hollow structure and method for molding composite material molding
    • 用于模制中空结构的预制模具的方法和用于模制复合材料模制的方法
    • JP2011011477A
    • 2011-01-20
    • JP2009158125
    • 2009-07-02
    • Honda Motor Co Ltd本田技研工業株式会社
    • NAMAIZAWA MASAKIKATO HIROSHIHIRAYAMA AKIRA
    • B29C43/12B29C43/18B29C43/20B29K105/08B29L31/30B64C3/20
    • PROBLEM TO BE SOLVED: To provide a method for molding a prepreg molding for a hollow structure which facilitates demolding when a silicon-made core mold is used and a method for molding a composite material molding.SOLUTION: The method includes a first process in which an inside release film 52 as a first release film is coated on a silicon-made core mold 51 for a rear edge, and an outside release film 54 as a second release film is coated on the inside release film 52, a second process in which after a prepreg 28P for the rear edge as a prepreg for the hollow structure is laminated on the outside release film 54, the prepreg 28P for the rear edge is adhered to the silicon-made core mold 51 for the rear edge through the inside release film 52 and the outside release film 54 by applying pressure on the prepreg 28P for the rear edge to obtain a prepreg molding 28 for the rear edge, and a third process for demolding the silicon-made core mold 51 for the rear edge with the inside release film 52 from the longitudinal direction.
    • 要解决的问题:提供一种用于中空结构的预成型件模塑成型方法,该中空结构体在使用硅制芯模时有助于脱模,以及用于模制复合材料成型的方法。方法:该方法包括第一工序,其中 将作为第一剥离膜的内部剥离膜52涂覆在用于后边缘的硅制芯模51上,并且作为第二剥离膜的外部剥离膜54涂覆在内侧剥离膜52上,其中第二工序 在作为中空结构的预浸料坯的后边缘的预浸料28P层压在外部脱模膜54上之后,用于后边缘的预浸料坯28P通过内部脱模膜粘附到用于后边缘的硅制芯模51上 52和外部脱模膜54通过对用于后边缘的预浸料坯28P施加压力,以获得用于后边缘的预浸料坯模制件28和用于使内侧释放件用于后边缘的硅制芯模51脱模的第三工艺 F ilm 52从纵向方向。