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    • 1. 发明专利
    • Bottle
    • 瓶子
    • JP2013112395A
    • 2013-06-10
    • JP2011261931
    • 2011-11-30
    • Yoshino Kogyosho Co Ltd株式会社吉野工業所
    • IMAI HIROAKIIIZUKA TAKAOIZAWA KOJI
    • B65D1/02
    • PROBLEM TO BE SOLVED: To suppress a bottle from tumbling down by suppressing small the ratio of a grounding diameter of a grounding part of the bottle to the overall height.SOLUTION: A bottom part 14 of a bottle 10 has a center wall part 15 positioned on a bottle axis O and a connection circumferential wall part 16 connecting an outer circumferential edge of the center wall part 15 and a barrel part to each other, the connection circumferential wall part 16 has three or more longitudinal recessed streak parts 17 formed circumferentially at intervals. A leg part 18 which projects from a center wall part 15 outward along the bottle axis O is formed at each of parts positioned between adjacent longitudinal recessed streak parts 17 of the connection circumferential wall part 16, a grounding part 22 which extends circumferentially is formed on the leg part 18, and a plurality of grounding parts 22 are arranged intermittently to the overall circumferential length in bottom surface view, the ratio of a grounding diameter D of a grounding part 22 to the overall height of the bottle 10 being less than 0.230 and the total angle of center angles α that respective grounding parts 22 contain around the bottle axis O in the bottom surface view being 60-180°.
    • 要解决的问题:通过抑制瓶子的接地部分的接地直径与整体高度的比例来抑制瓶子的翻滚。 解决方案:瓶子10的底部14具有位于瓶子轴线O上的中心壁部分15和将中心壁部分15的外圆周边缘和圆筒部分彼此连接的连接圆周壁部分16 连接圆周壁部16具有间隔地周向形成的三个以上的纵向凹陷部17。 在连接周壁部16的相邻的纵向凹陷部分17之间的每个部分上形成有从中心壁部分15沿着瓶子轴线O向外突出的腿部18,周向延伸的接地部分22形成在 腿部18和多个接地部22在底面的整个周向长度间歇地配置,接地部22的接地直径D与瓶10的整体高度的比例小于0.230, 在底面观察时各接地部22围绕瓶轴O包含的中心角α的总角度为60-180°。 版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • Bottle
    • 瓶子
    • JP2012140147A
    • 2012-07-26
    • JP2010293178
    • 2010-12-28
    • Yoshino Kogyosho Co Ltd株式会社吉野工業所
    • SAITO HIROMICHIIMAI HIROAKIHAYAKAWA TADASHI
    • B65D1/02
    • PROBLEM TO BE SOLVED: To provide a bottle which can improve decompressing absorbing performance of the bottle.SOLUTION: A bottom wall part 21 positioned inside in the radial direction in a panel part 17 has a pair of first bottom surface parts 21a extending toward the outside from the inside in the radial direction for proceeding inside from the outside in the peripheral direction, and a ridgeline part 21b for connecting mutual inside end parts in the peripheral direction in the first bottom surface parts 21a. A plurality of dimples 32 recessed toward the inside in the radial direction are formed in positions for avoiding the ridgeline part 21b of the bottom wall part 21.
    • 要解决的问题:提供可以提高瓶子的减压吸收性能的瓶子。 解决方案:在面板部17中沿径向位于内侧的底壁部21具有从径向内侧向外侧延伸的一对第一底面部21a,其从周边的外侧进入内侧 方向,以及用于在第一底面部21a中沿圆周方向连接相互的内端部的棱线部21b。 在径向方向上向内侧凹入的多个凹部32形成为避免底壁部21的棱线部21b的位置。(C)2012,JPO&INPIT
    • 3. 发明专利
    • Bottle
    • 瓶子
    • JP2012091826A
    • 2012-05-17
    • JP2010240944
    • 2010-10-27
    • Yoshino Kogyosho Co Ltd株式会社吉野工業所
    • IMAI HIROAKI
    • B65D1/02B65D1/42
    • PROBLEM TO BE SOLVED: To stabilize decompression absorption in a bottle.SOLUTION: Regarding the bottle 1, the bottom wall 19 of the bottom 14 includes: an annular grounding part 18 located at the outer circumferential edge; a standing peripheral wall 21 connected to the grounding part from the inside in the bottle diameter direction and extending upward; a movable wall 22 projecting from the upper end of the standing peripheral wall toward the inside in the bottle diameter direction; and a depressed peripheral wall 23 extending upward from the inner end in the bottle diameter direction of the movable wall. The movable wall is arranged to be freely rotatable around a connection part 25 with the standing peripheral wall so as to move the depressed peripheral wall upward, and an annular width D1 along the bottom diameter direction of the movable wall is set within a range of 20 to 40% of the grounding diameter D2 of the grounding part.
    • 要解决的问题:为了稳定瓶中的减压吸收。 解决方案:关于瓶1,底部14的底壁19包括:位于外圆周边缘处的环形接地部分18; 从瓶直径方向的内侧连接到接地部并向上延伸的立起的周壁21; 从所述直立周壁的上端向所述瓶直径方向的内侧突出的可动壁22; 以及从可动壁的瓶直径方向的内端向上延伸的凹陷的周壁23。 可移动壁被布置成可以围绕具有竖立的周壁的连接部分25自由旋转,以便使凹陷的周壁向上移动,并且沿着可移动壁的底部直径方向的环形宽度D1被设定在20的范围内 到接地部分的接地直径D2的40%。 版权所有(C)2012,JPO&INPIT
    • 4. 发明专利
    • Synthetic resin bottle
    • 合成树脂瓶
    • JP2011011767A
    • 2011-01-20
    • JP2009155733
    • 2009-06-30
    • Yoshino Kogyosho Co Ltd株式会社吉野工業所
    • ITOKAWA JUNICHIIMAI HIROAKINAKAYAMA TADAKAZU
    • B65D1/02
    • PROBLEM TO BE SOLVED: To provide a characteristic appearance by arranging an expanding part on a neck part without a decrease in buckling strength in a synthetic resin bottle with the long and slender cylindrical neck part between the shoulder part and the opening cylindrical part.SOLUTION: The bottle includes: the long and slender neck part continuously provided below the opening cylindrical part; the shoulder part with a diameter expanding cylindrical shape the diameter of which expands downward continuously provided below the neck part; and a cylindrical barrel part continuously provided below the shoulder part. In this bottle, the expanding part is formed in the height position immediately below the boundary position between the neck part and the opening cylindrical part. Peripheral ribs are respectively arranged in a lower base end position of this expanding part and in the boundary position between the shoulder part and the neck part.
    • 要解决的问题:通过在颈部上设置扩张部分而不会在肩部和开口圆柱形部分之间的长而细长的圆柱形颈部的合成树脂瓶中的屈曲强度降低来提供特征外观。解决方案: 该瓶包括:长而细长的颈部连续地设置在开口圆柱形部分的下方; 具有直径扩大圆柱形的肩部,其直径在颈部下方连续地向下延伸; 以及连续地设置在肩部下方的圆柱形筒部。 在该瓶中,膨胀部形成在颈部与开口圆筒部之间的边界位置的正下方的高度位置。 外围肋分别设置在该膨胀部的下基端部位置和肩部与颈部之间的边界位置。
    • 5. 发明专利
    • Bottle
    • 瓶子
    • JP2012140148A
    • 2012-07-26
    • JP2010293179
    • 2010-12-28
    • Yoshino Kogyosho Co Ltd株式会社吉野工業所
    • SAITO HIROMICHIIMAI HIROAKI
    • B65D1/02
    • PROBLEM TO BE SOLVED: To provide a bottle which can improve decompression absorbing performance of the bottle.SOLUTION: A panel part 17 is has a bottom wall part 21 positioned inside in the radial direction, and a sidewall part 22 extending toward the outside in the radial direction from the outer peripheral edge of the bottom wall part 21. A recessed groove 31 recessed toward the inside in the radial direction and extending along the bottle axis O direction, is formed in a connecting part between the bottom wall part 21 and a vertical sidewall part 22a of the sidewall part 22 positioned on both sides in the peripheral direction in the bottom wall part 21.
    • 要解决的问题:提供可以提高瓶子的减压吸收性能的瓶子。 解决方案:面板部17具有位于径向内侧的底壁部21和从底壁部21的外周缘向径向外侧延伸的侧壁部22.凹部 沿着径向向内侧延伸并且沿着瓶轴O方向延伸的槽31形成在底壁部21与位于周向的两侧的侧壁部22的垂直侧壁部22a的连接部 在底部的第21部分。版权所有(C)2012,JPO&INPIT
    • 6. 发明专利
    • Bottle
    • 瓶子
    • JP2012091828A
    • 2012-05-17
    • JP2010240946
    • 2010-10-27
    • Yoshino Kogyosho Co Ltd株式会社吉野工業所
    • IMAI HIROAKINAKAYAMA TADAKAZU
    • B65D1/02
    • PROBLEM TO BE SOLVED: To provide a bottle capable of enhancing decompression absorption capability in the bottle.SOLUTION: Regarding the bottomed cylindrical bottle 1 formed of a synthetic resin material, the bottom wall 19 of the bottom 14 includes: a grounding part 18 located at the outer peripheral edge; a standing peripheral wall 21 connected to the grounding part 18 from the inside in the bottle diameter direction and extending upward; an annular movable wall 22 projecting from the upper end of the standing peripheral wall 21 toward the inside in the bottle diameter direction; and a depressed peripheral wall 23 extending upward from the inner end in the bottle diameter direction of the movable wall 22. The movable wall 22 is arranged to be freely rotatable around a connection part 25 with the standing peripheral wall 21 so as to move the depressed peripheral wall 23 upward. The movable wall 22 is tilted downward toward the inside in the diameter direction all over the periphery, and a connection part 26 between the movable wall 22 and the depressed peripheral wall 23 is arranged below the connection part 25 between the movable wall 22 and the standing peripheral wall 21.
    • 要解决的问题:提供能够增强瓶中减压吸收能力的瓶子。 解决方案:关于由合成树脂材料形成的有底圆柱形瓶1,底部14的底壁19包括:位于外周缘处的接地部分18; 从瓶体直径方向的内侧连接到接地部18并向上延伸的立起的周壁21; 环形可动壁22,从立管周壁21的上端向瓶内方向突出; 以及从可动壁22的瓶直径方向的内端向上延伸的凹陷的周壁23.活动壁22被布置成可以围绕着连接部分25与立体的周壁21自由转动, 周壁23向上。 可移动壁22在整个周边的直径方向上向内侧向下倾斜,并且可动壁22和凹陷周壁23之间的连接部26布置在可动壁22和站立件之间的连接部25的下方 周边墙21.版权所有(C)2012,JPO&INPIT
    • 8. 发明专利
    • Rectangular bottle made of synthetic resin
    • 合成树脂的矩形瓶
    • JP2009057082A
    • 2009-03-19
    • JP2007225877
    • 2007-08-31
    • Yoshino Kogyosho Co Ltd株式会社吉野工業所
    • SASAKI MASAAKIIMAI HIROAKI
    • B65D1/02
    • PROBLEM TO BE SOLVED: To provide a shape of a rectangular bottle, especially a designed shape of a peripheral rib, which can exert a sufficient vertical backling strength and peripheral strength, and to provide a rectangular bottle made of a synthetic resin which has a sufficient strength, thus can be used safely even if large-sized bottle. SOLUTION: The rectangular bottle made of the synthetic resin has a rectangular right-angled cylinder portion formed of four flat walls and angled portions connecting adjacent flat walls, the rectangular right-angled cylinder portion being formed in a range of a given height of a cylindrical trunk. The peripheral wall of the rectangular right-angled cylinder portion is provided with a plurality of peripheral groove ribs parallel with each other which are formed peripherally as cutout portions at the location of four angled-portions, where each peripheral groove rib is a recessed form extending intermittently along the periphery of the peripheral wall. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供矩形瓶的形状,特别是能够施加足够的垂直背衬强度和外围强度的外围肋的设计形状,并且提供由合成树脂制成的矩形瓶, 具有足够的强度,因此即使是大型瓶子也能安全使用。 解决方案:由合成树脂制成的矩形瓶具有由四个平坦壁和连接相邻平壁的成角度部分形成的矩形直角圆筒部分,矩形直角圆筒部分形成在给定高度的范围内 的圆柱形树干。 矩形直角圆筒部分的周壁设有彼此平行的多个周向槽肋,它们在四个角度部分的位置周围形成为切口部分,其中每个周向槽肋是凹形的,其延伸 间歇地沿着周围壁的周边。 版权所有(C)2009,JPO&INPIT
    • 9. 发明专利
    • Synthetic resin container
    • 合成树脂容器
    • JP2008247430A
    • 2008-10-16
    • JP2007091725
    • 2007-03-30
    • Yoshino Kogyosho Co Ltd株式会社吉野工業所
    • KOBAYASHI TAKAYUKITOMIYAMA SHIGERUIMAI HIROAKIIIZUKA TAKAO
    • B65D1/02B65D1/44
    • PROBLEM TO BE SOLVED: To enhance buckling strength at a shoulder part of a synthetic resin container having radial ribs and recessed portions at the shoulder part, by arranging so that no stress due to a pressing-down load is not concentrated, while acting, on a connected part between the lower end part of the shoulder part and the radial ribs. SOLUTION: At the shoulder part 4 wherein the radial ribs 5 in the form of triangular protrusion lines are formed as they are inclined radially downward at equal angle intervals, ridge portions of the lower end parts of the radial ribs are chamfered off in the form of arc, made into chamfered ends 6 in the form of an arcuate protrusion line, with the rib end edges 7 which form the lower ends of the radial ribs 5 made into a form of arc, thereby preventing stress, when a pressing load is applied, from being concentrated locally in a dotted state at the rib end edges 7. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提高在肩部具有径向肋和凹陷部分的合成树脂容器的肩部的屈曲强度,通过布置使得不会因压下负荷而导致的应力不集中,同时 作用在肩部的下端部与径向肋之间的连接部上。 解决方案:在肩部4处,其中三角形突起线形式的径向肋5以相等的角度间隔径向向下倾斜地形成,径向肋的下端部的脊部被倒角 弧形的形式形成弧形突起线形式的倒角端部6,肋端部边缘7形成径向肋5的下端形成为弧形,从而当压力负载 被应用于在肋端部边缘7处以点状状态局部集中。版权所有:(C)2009,JPO&INPIT
    • 10. 发明专利
    • Synthetic resin container
    • 合成树脂容器
    • JP2008184220A
    • 2008-08-14
    • JP2007021760
    • 2007-01-31
    • Yoshino Kogyosho Co Ltd株式会社吉野工業所
    • KOBAYASHI TAKAYUKITOMIYAMA SHIGERUIMAI HIROAKIIIZUKA TAKAO
    • B65D1/02
    • PROBLEM TO BE SOLVED: To provide a synthetic resin container which has radial ribs and recesses formed at a shoulder portion, by preventing a stress due to a depressing load from being concentrated on a connection portion between a shoulder lower edge and each radial rib, to thereby improve the buckling strength of the shoulder portion of the synthetic resin container of this type. SOLUTION: In the shoulder portion 4 at which the triangular projective radial ribs 5 are formed in a manner radially inclining downward at equal central angles, a projective edge of a lower end of each radial rib 5 is formed into a triangular chamfered edge 6 widened downward, and the lower edge of the radial rib 5 is connected to the shoulder lower edge while securing a predetermined width. Thus, when depressing load is applied to the container, concentration and operation of stress at the lower edge of the radial rib 5 in a spot-like state, can be prevented. COPYRIGHT: (C)2008,JPO&INPIT
    • 解决的问题:为了提供一种合成树脂容器,其具有形成在肩部的径向肋和凹部,通过防止由于压下负荷引起的应力集中在肩下缘和每个径向之间的连接部分上 从而提高这种合成树脂容器的肩部的屈曲强度。 解决方案:在三角形突出的径向肋5以相等的中心角以径向向下倾斜的方式形成的肩部4中,每个径向肋5的下端的突出边缘形成为三角形倒角边缘 6向下扩展,并且径向肋5的下边缘在确保预定宽度的同时连接到肩部下边缘。 因此,当向容器施加按压负荷时,可以防止在点状状态下在径向肋5的下边缘处的应力的集中和操作。 版权所有(C)2008,JPO&INPIT