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    • 32. 发明专利
    • Unhulled rice drying method and dry unhulled rice manufacturing method
    • 未经干燥的干燥方法和干燥的未加工的米制造方法
    • JP2010038466A
    • 2010-02-18
    • JP2008203160
    • 2008-08-06
    • Yamamoto Co Ltd株式会社山本製作所
    • SUZUKI MITSUNORI
    • F26B9/06F26B17/04F26B21/00
    • PROBLEM TO BE SOLVED: To cook brown rice after shelling processing of dry unhulled rice, soft to be easily eaten even by an ordinary rice cooker, and to improve utility value of brown rice powder obtained by milling the brown rice after shelling processing of dry unhulled rice.
      SOLUTION: In an unhulled rice drying device 10, superheated steam S from a jetting section 24 is jetted to the unhulled rice from an upper side and a lower side in conveying a tray receiving the unhulled rice forward in a device body 12, to heat and dry the unhulled rice. Thus the brown rice after shelling processing of the dry unhulled rice, can be cooked soft to be easily eaten even by the ordinary rice cooker. Further as the dry unhulled rice is gelatinized in being dried by the superheated steam S, the gelatinized brown rice powder can be obtained by milling the brown rice after the shelling processing of the dry unhulled rice, and the utility value of the brown rice can be improved.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:在干燥无壳米饭的脱壳加工后煮糙米,即使用普通电饭煲也可以很容易地食用,并提高了在脱壳加工后通过研磨糙米获得的糙米粉的效用 干无米饭。 解决方案:在未经脱壳的米干燥装置10中,将来自喷射部24的过热蒸汽S从上侧和下侧喷射到未被覆盖的米,以在装置主体12中将接收未被覆盖的米的托盘向前方输送, 加热和干燥无壳大米。 因此,经干燥无壳米饭脱壳加工后的糙米,即使用普通的电饭煲,也可以煮熟而易于食用。 此外,干燥的未经脱水的米饭被过热蒸汽S干燥后,可以通过在干燥无壳稻的脱壳处理后研磨糙米而获得糊化的糙米粉,并且可以使糙米的效用值 改进。 版权所有(C)2010,JPO&INPIT
    • 33. 发明专利
    • Grain polishing apparatus
    • 谷物抛光装置
    • JP2010036118A
    • 2010-02-18
    • JP2008202302
    • 2008-08-05
    • Yamamoto Co Ltd株式会社山本製作所
    • SATO KAZUYUKI
    • B02B3/06B02B3/00B02B7/02
    • PROBLEM TO BE SOLVED: To restrict the change of the accuracy and yield of polishing grain even when the transfer rate of the grain is changed in a grain polishing chamber.
      SOLUTION: In a rice polisher 10, rice grains charged to a feed trough 20 are polished while being transferred to the upper side of the rice polishing chamber 30, and discharged from a discharge opening 54. Here, the torque for closing the discharge opening 54 by a resistant plate 62 is nearly maintained by rotating a tension coil spring 70 to a set dial 68 with biasing force and by sliding the tension coil spring 70 to a resistant bar 64, even when the amount of the rice grains charged to the feed trough 20 is changed and also the opening degree of the discharge opening 54 is changed by the resistant plate 62. Thus, the change of the polishing rice pressure in the rice polishing chamber 30 can be restricted and the change of the degree of polishing grain in the rice grains and of the yield of polishing rice can be restricted.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:即使在晶粒抛光室中晶粒的转移速率发生变化时,也可以限制抛光晶粒的精度和产量的变化。 解决方案:在米粉抛光机10中,装入进料槽20的米粒被抛光,同时被转移到米饭抛光室30的上侧,并从排出口54排出。这里,关闭 通过使张力螺旋弹簧70以偏压力旋转到设定转盘68并且通过将张力螺旋弹簧70滑动到耐磨杆64上,即使当将米粒的量装入 进料槽20发生变化,并且排出口54的开度也被阻力板62改变。因此,可以限制米碾磨室30中的研磨米饭压力的变化和抛光程度的变化 可以限制米粒中的谷物和抛光米的产量。 版权所有(C)2010,JPO&INPIT
    • 35. 发明专利
    • Granulator
    • 造粒机
    • JP2009190222A
    • 2009-08-27
    • JP2008031813
    • 2008-02-13
    • Yamamoto Co Ltd株式会社山本製作所
    • YASHIMA KAZUKI
    • B29C31/02B01J2/10B29B9/02B29B17/04
    • Y02W30/521Y02W30/625
    • PROBLEM TO BE SOLVED: To enable improving the efficiency of granulation and uniforming the quality of the granulate. SOLUTION: Since crushing and granulating a specified amount of a raw material fully filled in a hopper 56 by the apparatus body 12, the granulator 10 can uniform the quality of the granulate. In addition, the amount of the raw material to be fed to the apparatus body 12, or the treatment vessel 18, for a single feeding operation can be increased by the volume of the hopper 56, resulting in improvement of the efficiency of granulation. Even when the raw material in the hopper 56 does not flow down into the treatment vessel 18 owing to entanglement of the raw material, or so-called bridge formation, the bridge can be eliminated by making a pressing plate 64 descend by weight. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提高造粒效率和使颗粒质量均匀。 解决方案:由造粒机10对设备主体12的特定量的完全填充在料斗56中的原材料进行破碎和造粒,能使颗粒质量均匀。 此外,通过料斗56的体积,可以提高供给到装置主体12或处理容器18的原料的量,从而提高造粒效率。 即使当料斗56中的原料由于原料的缠结也不会流入处理容器18或所谓的桥形成时,可以通过使压板64重量下降来消除桥。 版权所有(C)2009,JPO&INPIT
    • 36. 发明专利
    • Grain drying apparatus
    • 谷物干燥装置
    • JP2009115412A
    • 2009-05-28
    • JP2007290619
    • 2007-11-08
    • Yamamoto Co Ltd株式会社山本製作所
    • MURATA TAKEHIRO
    • F26B25/22B02B1/02F26B17/14
    • PROBLEM TO BE SOLVED: To provide a grain drying apparatus capable of appropriately detecting moisture of grain after drying treatment.
      SOLUTION: The grain drying apparatus stops drying treatment of grain for a predetermined time after the moisture value of the grain is not more than a moisture value larger by a predetermined value than a set moisture value. The grain is further circulation-treated and blast-treated for a specific time to measure the moisture value of the grain, and when the moisture value of the grain is not more than the set moisture value, drying operation is terminated, while drying treatment is performed again to the grain when the moisture value of the grain is larger than the set moisture value. A moisture measuring apparatus thus measures the moisture value of the grain after the grain is circulation-treated and blast-treated for the specific time to bring the temperature of the grain and moisture measuring apparatus close to an ordinary temperature. The moisture value of the grain can thereby be measured appropriately.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够适当地检测干燥处理后的谷物湿度的谷粒干燥装置。 解决方案:颗粒干燥装置在颗粒的水分值不大于比设定水分值大一个预定值的水分值之前,将颗粒的干燥处理停止预定时间。 进一步对颗粒进行循环处理和喷砂处理以测量颗粒的水分值,并且当颗粒的水分值不大于设定的水分值时,干燥操作终止,而干燥处理为 当颗粒的水分值大于设定的水分值时,再次对颗粒进行处理。 因此,水分测量装置在颗粒经过循环处理和喷砂处理特定时间后测量谷物的水分值,使谷物和水分测量装置的温度接近常温。 因此可以适当地测量谷物的水分值。 版权所有(C)2009,JPO&INPIT
    • 37. 发明专利
    • Grain drier
    • 谷物干燥机
    • JP2008298371A
    • 2008-12-11
    • JP2007145137
    • 2007-05-31
    • Yamamoto Co Ltd株式会社山本製作所
    • YUKI TOSHINORI
    • F26B17/14F26B3/30F26B21/00F26B23/02
    • PROBLEM TO BE SOLVED: To obtain a grain drier capable of suppressing unnecessary increase in a flow rate of air introduced to inside of a burner.
      SOLUTION: In this grain drier, a plurality of through holes 82 are formed on a vertical wall part 78A provided on one end side of a far-infrared ray radiator 78. Due to this structure, when air inside the far-infrared ray radiator 78 is sucked from an opening part on the other side of the far-infrared ray radiator 78, air (outside air) is flowed in to inside of the far-infrared ray radiator 78 via the plurality of through holes 82. Therefore, even when an opening part on one side of the far-infrared ray radiator 78 is closed by the burner 66, unnecessary increase, by the suction, in a flow rate of air (primary combustion air) introduced from an intake port 69 of the burner 66 to inside of the burner 66 and discharged to inside of the far-infrared ray radiator 78 can be suppressed.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:获得能够抑制引入燃烧器内部的空气的流量的不必要的增加的谷物干燥器。 解决方案:在这种谷物干燥器中,在设置在远红外线辐射器78的一端侧的垂直壁部78A上形成有多个通孔82.由于这种结构,当远红外线 射线辐射器78从远红外线辐射器78的另一侧的开口部分吸入,空气(外部空气)经由多个通孔82流入远红外线辐射器78的内部。因此, 即使当远红外线辐射器78的一侧上的开口部分被燃烧器66封闭时,通过吸入也不必增加从燃烧器的进气口69引入的空气(一次燃烧空气)的流量 66到燃烧器66的内部并被排出到远红外线辐射器78的内部。 版权所有(C)2009,JPO&INPIT