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    • 46. 发明专利
    • Agricultural vinyl chloride resin film
    • 农业氯乙烯树脂膜
    • JP2003327767A
    • 2003-11-19
    • JP2002135383
    • 2002-05-10
    • Mitsubishi Chem Mkv Co三菱化学エムケーブイ株式会社
    • YASUI MITSUOFUJIWARA KATSUHIRONIKAIDO KANAKOMAEKAWA HIDETO
    • C08J7/04C08J5/18C08K5/07C08K5/10C08L23/28C08L27/06C08L33/10C08L51/04
    • PROBLEM TO BE SOLVED: To provide an agricultural film excellent not only in tear strength and tensile elongation but also in physical properties (strength and impact resistance) at a low temperature, visual appearance and light transmittance. SOLUTION: The vinyl chloride resin film for agriculture is obtained by blending 40-60 pts.wt. of a plasticizer with 100 pts.wt. of a vinyl chloride resin which has an average degree of polymerization of 1,750 to 1,850 and has a relational expression of 1.9≤Mw/Mn≤2.3 between the weight-average molecular weight (Mw) and the number-average molecular weight (Mn). The film with a thickness of 0.1 mm has: (a) impact strength at -15°C of 0.5 J or higher; (b) Elmendorf tear strength at 23°C of 7.5 N or higher; and (c) tensile elongation at break of 300% or greater. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供不仅在撕裂强度和拉伸伸长率以及在低温下的物理性能(强度和耐冲击性),视觉外观和透光率方面优异的农用膜。 解决方案:用于农业的氯乙烯树脂膜通过混合40-60重量份 的具有100重量份的增塑剂 的平均聚合度为1750〜1850,在重均分子量(Mw)与数均分子量(Mn)之间的关系式为1.9≤Mw/Mn≤2.3的氯乙烯树脂。 厚度为0.1mm的膜具有:(a)在-15℃下的冲击强度为0.5J以上; (b)23℃下的Elmendorf撕裂强度为7.5N以上; 和(c)断裂伸长率为300%以上。 版权所有(C)2004,JPO
    • 47. 发明专利
    • House cleaning machine
    • JP3467900B2
    • 2003-11-17
    • JP8151795
    • 1995-04-06
    • 三菱化学エムケーブイ株式会社
    • 伸夫 岡田哲男 本田
    • A01G9/14A47L11/38B08B1/00
    • Y02A40/252
    • PURPOSE: To provide a house washing apparatus having high climbing force and whose weight scarcely changes before and after house washing work by transmitting rotary force of impellers to washing rolls by a gear-box type reduction gear in which transmission is carried out from gears with small diameter to gears with large diameter. CONSTITUTION: Inpellers 3 are installed between front and rear washing rolls 6 and the rotary axis of the impellers 3 is journalled to a reduction gear 8. In the reduction gear 8, at least two gears with different diameters are fixed in a rotary axis and the rotary axis is composed of a gear box so journalled as to make the rotary axis parallel to the rotary axis of the impellers 3. In the gear box, while a gear 11 with a smaller diameter being fixed in, the rotary axis of the impellers 3 is journalled and fitted in the gear 12 with a larger diameter. Depending on the retarding degree of the rotation of the impellers 3, at least one of rotary axes 13, in one single rotary axis of which gears with different diameters are fitted, is installed as an intermediary in the reduction gear 8 and the gear 11 with a smaller diameter fitted in the rotary axis of the impellers 3 is fitted with the gear 12 with a larger diameter to retard the speed. That is, transmission of the rotation of the gear 11 with a smaller diameter to the gear 12 with a larger diameter is carried out to retard the speed.