JP2013095428A - Synthetic resin-made blow bottle - Google Patents

Synthetic resin-made blow bottle Download PDF

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JP2013095428A
JP2013095428A JP2011236728A JP2011236728A JP2013095428A JP 2013095428 A JP2013095428 A JP 2013095428A JP 2011236728 A JP2011236728 A JP 2011236728A JP 2011236728 A JP2011236728 A JP 2011236728A JP 2013095428 A JP2013095428 A JP 2013095428A
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bottle
synthetic resin
body part
shoulder
annular groove
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JP5969752B2 (en
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Hiromichi Saito
浩通 斉藤
Takao Iizuka
高雄 飯塚
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Yoshino Kogyosho Co Ltd
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Yoshino Kogyosho Co Ltd
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Abstract

PROBLEM TO BE SOLVED: To provide a synthetic resin-made blow bottle which does not cause crushed deformation at the upper pressure-reducing absorbing walls even when an external shock is applied, and has high rigidity.SOLUTION: The synthetic resin-made blow bottle includes a mouth part 1 forming the spouting port of contents, a shoulder part 2 which is connected with the mouth part 1 and whose diameter is enlarged downward, a body part 3 connected with the shoulder part 2 via annular groove parts m, m, and a bottom part 6 connected with the lower end of the body part 3, and cooperating with the shoulder part 2 and body part 3 to form a space to be filled with contents inside them. The body part 3 includes a plurality of pressure-reducing absorbing walls 5 each having an acute-angle part 5and an obtuse-angle part 5at the end of an upper side 5and formed of an inclined panel having an inclination θ with respect to the axial center L of the bottle, and column walls 4 positioned between the pressure-reducing absorbing walls 5 and formed along the periphery of the body part 3 and arranged alternately with the pressure-reducing absorbing walls 5. The body part 3 is provided with short reinforcing ribs 7 extending along the annular groove parts m, m, right above the obtuse-angle parts 5.

Description

本発明は、二軸延伸ブロー成形によって形成される合成樹脂製ブローボトル、とくに、胴部に柱壁と減圧吸収壁を交互に配列した合成樹脂製ブローボトルに関するものである。   The present invention relates to a synthetic resin blow bottle formed by biaxial stretch blow molding, and more particularly to a synthetic resin blow bottle in which column walls and reduced pressure absorption walls are alternately arranged in a body portion.

ペットボトルに代表される合成樹脂製ブローボトルは、軽量で取り扱いが容易であること、また、透明性を確保することが可能でありガラス製の容器と比較して遜色のない外観を呈すること、しかも、コスト的にも安価であることから、近年、食品や飲料、化粧料あるいは薬剤等を入れる容器として多用されている。   Synthetic resin blow bottles typified by plastic bottles are lightweight and easy to handle, and can ensure transparency and exhibit an appearance comparable to glass containers, In addition, since it is inexpensive, it has been widely used in recent years as a container for storing food, beverages, cosmetics, drugs, and the like.

ところで、この種の容器においては、コストのさらなる削減、ゴミの減量化等の観点から、ボトル1本当たりに使用する樹脂量を極力少なくすべく、ボトルの薄肉化が図られている。   By the way, in this type of container, from the viewpoints of further cost reduction, reduction of garbage, etc., the thickness of the bottle is reduced in order to minimize the amount of resin used per bottle.

しかし、ボトルの胴部に減圧吸収壁が設けられている耐熱用のブローボトルにあっては、とくに、減圧吸収能力の向上や、デザインの多様化を図る等、ボトルの軸芯に対して傾きをもたせた、例えば特許文献1に開示のような傾斜パネルによって減圧吸収壁を形成する場合に、その輪郭形状によっては、ハンドリングや搬送の際に外的衝撃力(横荷重)が付加されたとき、該傾斜パネルの上辺部から肩部の境界にかけて潰れ変形(折れ)が生じる不具合がある(とくに、傾斜パネルの上辺角部において、該上辺とこれにつながる側辺とのなす角度が鈍角である場合に顕著となる)。   However, in the case of heat-resistant blow bottles that have a vacuum absorption wall in the bottle body, it is particularly inclined with respect to the axis of the bottle, such as improving the vacuum absorption capacity and diversifying the design. For example, when the vacuum absorbing wall is formed by an inclined panel as disclosed in Patent Document 1, depending on the contour shape, when an external impact force (lateral load) is applied during handling or transportation , There is a problem that deformation (breaking) occurs from the upper side of the inclined panel to the boundary of the shoulder (particularly, in the upper side corner of the inclined panel, the angle formed between the upper side and the side connected thereto is an obtuse angle. In the case).

なお、上記の潰れ変形は、ボトルの肩部と胴部の境界に形成される環状溝部と傾斜パネルの上辺との距離を短縮することにより防止することが可能であるが、この場合、ブロー成形に際して該環状溝部を意図した形状に成形することが困難となり(賦形性を損なう)、この環状溝部が本来もつ機能(補強機能)を有効に発揮させることができなくなるおそれがある。   The crushing deformation can be prevented by shortening the distance between the annular groove formed at the boundary between the shoulder portion and the body portion of the bottle and the upper side of the inclined panel. At this time, it becomes difficult to form the annular groove into the intended shape (deteriorating formability), and the function (reinforcing function) inherent to the annular groove may not be effectively exhibited.

特開2007―269359号公報JP 2007-269359 A

本発明の目的は、外的衝撃力が付加された場合においても減圧吸収壁の直上で起こり得る上記の如き潰れ変形を、ブロー成形における賦形性を損なうことなしに確実に回避できる合成樹脂製ブローボトルを提案するところにある。   An object of the present invention is to make a synthetic resin that can reliably avoid the above-described crushing deformation that may occur immediately above the vacuum absorbing wall even when an external impact force is applied without impairing the formability in blow molding. Proposed blow bottle.

本発明は、内容物の注出口を形成する口頚部と、この口頚部につながり下部へ向けて拡径する肩部と、この肩部に環状溝部を介してつながる胴部と、この胴部の下端につながり、前記肩部、前記胴部と協働してその内側に内容物の充填空間を形成する底部とを備えた合成樹脂製ブローボトルであって、前記胴部は、上辺の端部にそれぞれ鋭角角部と鈍角角部を有し、ボトルの軸芯に対して傾きをもつ傾斜パネルにて形成された複数の減圧吸収壁と、この減圧吸収壁の相互間に位置し、前記胴部の周りに沿い該減圧吸収壁と交互に配列された柱壁とを備え、前記胴部の、前記鈍角角部の直上位置に、前記環状溝部に沿って延伸する短尺の補強リブを設けたことを特徴とする合成樹脂製ブローボトルである。   The present invention includes a mouth neck that forms a spout for contents, a shoulder that is connected to the neck and expands toward the lower portion, a trunk that is connected to the shoulder via an annular groove, and a A synthetic resin blow bottle connected to the lower end and having a bottom portion that cooperates with the shoulder portion and the barrel portion to form a filling space for contents therein, the barrel portion being an end portion of the upper side Each of which has an acute angle portion and an obtuse angle portion, and is formed between a plurality of reduced pressure absorption walls formed by an inclined panel inclined with respect to the axis of the bottle, and the barrel is located between the reduced pressure absorption walls. A columnar wall alternately arranged with the reduced pressure absorption wall along the circumference of the portion, and provided with a short reinforcing rib extending along the annular groove portion at a position directly above the obtuse angle portion of the trunk portion This is a synthetic resin blow bottle.

上記の構成からなる合成樹脂製ブローボトルにおいては、補強リブを、ボトルの胴部の上部壁面を、充填空間に向けて凹ませた溝部とするのが好ましい。   In the synthetic resin blow bottle having the above-described configuration, it is preferable that the reinforcing rib is a groove portion in which the upper wall surface of the body portion of the bottle is recessed toward the filling space.

また、上記補強リブの周長は、減圧吸収壁の上辺と同等の長さとし、その長手方向中央部を鈍角角部の直上に位置させることが、とりわけ、該補強リブの半分以上を該上辺に位置させることが好ましい。これによりブロー成形の際に賦形性が損なわれるのを抑制することができる。   Further, the circumferential length of the reinforcing rib should be the same length as the upper side of the vacuum absorbing wall, and the central part in the longitudinal direction should be located immediately above the obtuse angle part, in particular, more than half of the reinforcing rib should be on the upper side It is preferable to position. Thereby, it can suppress that a shaping property is impaired in the case of blow molding.

上記の構成からなる本発明の合成樹脂製ブローボトルによれば、鈍角角部の直上に、短尺の補強リブを設けたため、環状溝部と傾斜パネルとの距離を短くすることなく、その部位の強度を高めることが可能となり、ハンドリング、搬送時等においてその部位に外的衝撃力が付加されたとしても潰れ変形が生じるのを回避することができる。   According to the synthetic resin blow bottle of the present invention having the above-described configuration, since the short reinforcing rib is provided immediately above the obtuse angle portion, the strength of the portion is reduced without shortening the distance between the annular groove portion and the inclined panel. Therefore, even if an external impact force is applied to the part during handling, transportation, etc., it is possible to avoid the occurrence of crushing deformation.

また、本発明に係る合成樹脂製ブローボトルによれば、短尺の補強リブを、胴部の上部壁面を充填空間に向けて凹ませた溝部にて形成するようにしたため、ブロー成形に際して賦形性が保たれる。   Further, according to the blow bottle made of synthetic resin according to the present invention, the short reinforcing rib is formed by the groove portion in which the upper wall surface of the trunk portion is recessed toward the filling space. Is preserved.

本発明に従う合成樹脂製ブローボトルの実施の形態を模式的に示した図である。It is the figure which showed typically Embodiment of the synthetic resin blow bottles according to this invention.

以下、図面を参照して本発明をより具体的に説明する。
図1は、本発明に従う合成樹脂製ブローボトルの側面を模式的に示した図である。
Hereinafter, the present invention will be described more specifically with reference to the drawings.
FIG. 1 is a view schematically showing a side surface of a synthetic resin blow bottle according to the present invention.

図における符号1は、内容物の注出口を形成する口頚部、2は、口頚部1につながり、下部に向けて拡径する肩部、3は、肩部2に環状溝m、mを介してつながる筒状の胴部である。胴部3は、この例では、胴部中央の径が、その上端、下端の径よりも小さくした鼓状の中細り形状をなすものとして示している。 In the figure, reference numeral 1 denotes a mouth and neck portion that forms a spout for contents, 2 denotes a shoulder portion that is connected to the mouth and neck portion 1 and expands toward the lower portion, and 3 denotes an annular groove m 1 , m 2 in the shoulder portion 2. It is the cylindrical trunk | drum connected via. In this example, the body portion 3 is shown as having a drum-shaped, thin shape in which the diameter at the center of the body portion is smaller than the diameters of the upper end and the lower end thereof.

上記胴部3には、その上端から下端に向けて角度θで延伸するとともに、その周りに間隔をおいて配置された複数本の柱壁(この例では、60°間隔で6本設けたものを例として示してある)4と、この柱壁4の相互間に位置してボトル内の減圧に伴う優先的な変位によってボトルの外観形状を安定的に保持する減圧吸収壁5が設けられている。   The body 3 is extended at an angle θ from its upper end to its lower end, and is provided with a plurality of column walls arranged at intervals around it (in this example, six column walls provided at intervals of 60 °) 4) and a decompression absorbing wall 5 that is positioned between the column walls 4 and stably holds the appearance of the bottle by preferential displacement accompanying decompression in the bottle. Yes.

上記の減圧吸収壁5は、環状の段差壁5aを輪郭とする内側壁5bを充填空間に向けて凹ませることによって形成されるものであり、上辺5cの端部には、頂部に丸みをつけた鋭角角部5c、鈍角角部5cがそれぞれ設けられ、下辺5dの端部には、上辺5cとは逆配列になる鋭角角部5d、鈍角角部5dが設けられ、その全体がボトルの軸芯Lに対して角度θで傾いた平行四辺形状の傾斜パネルとして構成されている。 The decompression absorbing wall 5 is formed by denting the inner side wall 5b having an annular stepped wall 5a as an outline toward the filling space, and the top of the upper side 5c is rounded at the top. The acute angle part 5c 1 and the obtuse angle part 5c 2 are respectively provided, and the end part of the lower side 5d is provided with the acute angle part 5d 1 and the obtuse angle part 5d 2 which are opposite to the upper side 5c 1 , The whole is configured as a parallelogram-shaped inclined panel inclined at an angle θ with respect to the axis L of the bottle.

ここに、鋭角角部5c(5d)とは、上辺5c(下辺5d)と側辺5eとのなす角度が鋭角になる角部をいうものとし、鈍角角部5c(5d)とは、上辺5c(下辺5d)と側辺5eとのなす角度が鈍角になる角部をいうものとする。 Here, the acute angle portion 5c 1 (5d 1 ) means an angle portion where the angle formed by the upper side 5c (lower side 5d) and the side 5e is an acute angle, and the obtuse angle portion 5c 2 (5d 2 ) and Means the corner where the angle between the upper side 5c (lower side 5d) and the side 5e becomes an obtuse angle.

また、6は、環状溝部mを介して胴部3の下端につながるとともに、肩部2、胴部3と協働してその内側に内容物の充填空間を形成する底部、7は、胴部3の、傾斜パネルの上辺5cの鈍角角部5cの直上位置、かつ、環状溝部mの直下に設けられた短尺の補強リブである。 In addition, 6 is connected to the lower end of the body part 3 through the annular groove part m 3 , and cooperates with the shoulder part 2 and the body part 3 to form a filling space for the contents inside, and 7 is a body part. parts 3, directly above the position of the obtuse angle portion 5c 2 of the upper side 5c of the inclined panel, and a reinforcing rib of short provided immediately below the annular groove m 2.

この短尺の補強リブ7は、環状溝部mに沿って延伸する溝部からなる。 The short reinforcing rib 7 includes a groove portion extending along the annular groove portions m 1 and 2 .

さらに、8a、8bは、上辺5c、下辺5dに沿って側辺5eに至るように前記内側壁5bに形成され、傾斜パネルの局所的な座屈を防止する逆U字、U字形状をなす補強リブ(細溝)である。   Further, 8a and 8b are formed on the inner wall 5b so as to reach the side 5e along the upper side 5c and the lower side 5d, and have an inverted U-shape and U-shape to prevent local buckling of the inclined panel. It is a reinforcing rib (narrow groove).

減圧吸収壁5と柱壁4とを交互に配列した上記の如き構成になる合成樹脂製のブローボトルにおいては、鋭角角部5cの下方には柱壁4が位置しているため、ハンドリング時や搬送時に外的衝撃力がボトルに加えられても簡単に変形することはない。 In the synthetic resin blow bottle having the above-described configuration in which the reduced pressure absorption walls 5 and the column walls 4 are alternately arranged, the column wall 4 is located below the acute angle portion 5 c 1. Even if an external impact force is applied to the bottle during transportation, it does not easily deform.

しかし、鈍角角部5cの下方には、実質的に平滑な面をもつ内側壁5cが位置しているため、減圧吸収壁5がたわみ易く、環状溝部mにてボトルの径方向の強度を補完するこの種のブローボトルにおいては、減圧吸収壁5の上部において外的衝撃力が付加された場合に、潰れ変形を引き起こすことが懸念される。 However, since the inner wall 5c having a substantially smooth surface is positioned below the obtuse corner 5c 2 , the reduced pressure absorption wall 5 is easily bent, and the bottles are formed in the annular grooves m 1 , 2 , 3 . In this type of blow bottle that complements the strength in the radial direction, there is a concern that when an external impact force is applied to the upper part of the reduced pressure absorbing wall 5, it will cause crushing deformation.

本発明においては、胴部3における鈍角角部5cの直上位置(減圧吸収壁5と環状溝部mとの間)に短尺の補強リブ7を設けたため、外的衝撃力が付加されても、該補強リブ7により減圧吸収壁5のたわみが抑制される結果、潰れ変形を確実に回避することができる。 In the present invention, since the short reinforcing rib 7 is provided at a position immediately above the obtuse angle portion 5c 2 in the trunk portion 3 (between the reduced pressure absorption wall 5 and the annular groove portion m 2 ), even if an external impact force is applied. As a result of the bending of the reduced pressure absorbing wall 5 being suppressed by the reinforcing rib 7, it is possible to reliably avoid crushing deformation.

短尺の補強リブ7は、その長手方向中央部を鈍角角部5cの直上に位置させるのがよく、またその周長は、好ましくは、上辺5cと同等の長さとする。これにより、環状溝部mと減圧吸収壁5との間に短尺の補強リブ7を設けてもブロー成形の際に賦形性が損なわれるのを抑制することができる(意図した断面形状に成形することができる)。 Short reinforcing ribs 7, the longitudinal center well the cause is positioned immediately above the obtuse angle portion 5c 2, also the circumferential length is, preferably, a equivalent to the upper side 5c length. Molding Accordingly, the (intended cross-sectional shape can be prevented from formability is impaired during the blow molding it is provided with short reinforcing ribs 7 between the vacuum absorption wall 5 and the annular groove m 2 can do).

前記補強リブ7は、少なくとも前記鈍角角部5cの周方向幅(上辺5cとの連結部から側辺5eとの連結部位までの周方向距離)を有し、当該鈍角角部5cを上方から覆うように配置するのが好ましいが、ボトルの剛性に応じて、前記周方向幅よりも短くしてもよい。 The reinforcing rib 7 has at least the circumferential width of the obtuse corner 5c 2 (distance in the circumferential direction from the connecting part with the upper side 5c to the connecting part with the side 5e), and the obtuse angle part 5c 2 is upward. However, it may be shorter than the circumferential width according to the rigidity of the bottle.

なお、上掲図1に記載したボトルにおいては、胴部3の上端(環状溝部mと上辺5cとの間)に、径方向外方に突出し、柱壁4との間に段差を形成する環状凸部を設け、この環状凸部に前記補強リブ7を形成した場合を例として示しているが、該環状凸部は設けなくともよく、この場合は、柱壁4と連続的に形成される胴部3の上端周壁に補強リブ7が形成されることとなる。 In the bottle as described above掲図1, the upper end of the body portion 3 (between the annular groove m 2 and the upper side 5c), projecting radially outward, forming a step between the Hashirakabe 4 Although an example in which an annular convex portion is provided and the reinforcing rib 7 is formed on the annular convex portion is shown, the annular convex portion may not be provided. In this case, the annular convex portion is formed continuously with the column wall 4. The reinforcing rib 7 is formed on the upper peripheral wall of the body portion 3.

内容物を充填した充填容量が500mlになる上掲図1に示したようなPETボトル(溝幅2mm、深さ0.5mm、周長18mmとなる短尺の補強リブを形成したもの)を箱詰め(24本入りのカートン)して、JIS Z 0205の傾斜衝撃試験に準じた試験(走行距離の測定間隔を10cmとし、ボトルに潰れが発生するまでその距離を延長する)を実施してボトルの潰れ変形の発生状況について調査を行った。   A PET bottle as shown in FIG. 1 having a filling capacity of 500 ml filled with contents (formed with short reinforcing ribs having a groove width of 2 mm, a depth of 0.5 mm, and a peripheral length of 18 mm) is boxed ( 24 carton) and test according to the JIS Z 0205 tilt impact test (travel distance measurement interval is 10 cm and the distance is extended until the bottle is crushed) We investigated the occurrence of deformation.

その結果、短尺の補強リブを設けなかった比較ボトルにおいては、走行距離が70cmに達した場合において、5本のボトルにおいて減圧吸収壁の上部(鈍角角部の上部)に潰れ変形が発生したのに対して本発明に従うボトルにおいては、潰れ変形が一切生じないことが確認された。   As a result, in the comparative bottle without the short reinforcing rib, when the travel distance reached 70 cm, the five bottles were crushed and deformed at the upper part of the vacuum absorbing wall (upper part of the obtuse angle part). On the other hand, in the bottle according to the present invention, it was confirmed that no crushing deformation occurred.

なお、本発明に従うボトルにつき、走行距離を90cmとした試験においては、ボトルの肩部に変形を来たしたものが3本、減圧吸収壁の上部(鈍角角部の上部)において潰れ変形を起こしたものが1本であることが認められた。   In the test of the bottle according to the present invention, in the test where the travel distance was 90 cm, three bottles deformed on the shoulder part of the bottle caused crushing deformation at the upper part of the reduced pressure absorption wall (upper part of the obtuse angle part). It was confirmed that there was only one.

本発明によれば、ハンドリングあるいは搬送時において外的衝撃力が付加されても減圧吸収壁の上部において潰れ変形が生じることのない剛性の高い合成樹脂製ブローボトルが提供できる。   ADVANTAGE OF THE INVENTION According to this invention, even if an external impact force is added at the time of handling or conveyance, the highly rigid synthetic resin blow bottle which does not crush and deform | transform in the upper part of a pressure-reduction absorption wall can be provided.

1 口頚部
2 肩部
3 胴部
4 柱壁
5 減圧吸収壁
5a 段差壁
5b 内側壁
5c 上辺
5c 鋭角角部
5c 鈍角角部
5d 下辺
5d 鋭角角部
5d 鈍角角部
6 底部
7 補強リブ
環状溝部
環状溝部
環状溝部
L 軸芯
DESCRIPTION OF SYMBOLS 1 Mouth neck part 2 Shoulder part 3 Trunk part 4 Column wall 5 Depressurization absorption wall 5a Step wall 5b Inner side wall 5c Upper side 5c 1 Acute angle part 5c 2 Obtuse angle part 5d Lower side 5d 1 Acute angle part 5d 2 Obtuse angle part 6 Bottom part 7 Reinforcement Rib m 1 Annular groove m 2 Annular groove m 3 Annular groove L Axle

Claims (2)

内容物の注出口を形成する口頚部と、この口頚部につながり下部へ向けて拡径する肩部と、この肩部に環状溝部を介してつながる胴部と、この胴部の下端につながり、前記肩部、前記胴部と協働してその内側に内容物の充填空間を形成する底部とを備えた合成樹脂製ブローボトルであって、
前記胴部は、上辺の端部にそれぞれ鋭角角部と鈍角角部を有し、ボトルの軸芯に対して傾きをもつ傾斜パネルにて形成された複数の減圧吸収壁と、この減圧吸収壁の相互間に位置し、前記胴部の周りに沿い該減圧吸収壁と交互に配列された柱壁とを備え、
前記胴部の、前記鈍角角部の直上位置に、前記環状溝部に沿って延伸する短尺の補強リブを設けたことを特徴とする合成樹脂製ブローボトル。
The neck and neck that form the spout of the contents, the shoulder that is connected to the neck and neck and expands toward the lower part, the trunk that is connected to the shoulder through an annular groove, and the lower end of the trunk, A synthetic resin blow bottle provided with a bottom part that forms a filling space for contents inside the shoulder part and the body part,
The body part has an acute angle part and an obtuse angle part at an end part of the upper side, and a plurality of reduced pressure absorption walls formed by an inclined panel inclined with respect to the axis of the bottle, and the reduced pressure absorption wall A columnar wall arranged alternately with the reduced pressure absorption wall along the circumference of the trunk portion,
A synthetic resin blow bottle, characterized in that a short reinforcing rib extending along the annular groove is provided at a position directly above the obtuse corner of the trunk.
前記補強リブは、前記胴部の上部壁面を、前記充填空間に向けて凹ませた溝部からなることを特徴とする請求項1に記載した合成樹脂製ブローボトル。   2. The synthetic resin blow bottle according to claim 1, wherein the reinforcing rib includes a groove portion in which an upper wall surface of the body portion is recessed toward the filling space.
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JP2016145057A (en) * 2015-02-07 2016-08-12 日本山村硝子株式会社 Grip bottle
WO2018061379A1 (en) 2016-09-30 2018-04-05 株式会社吉野工業所 Synthetic resin container
JP2019094132A (en) * 2019-03-27 2019-06-20 日本山村硝子株式会社 Grip bottle
WO2019171799A1 (en) 2018-03-05 2019-09-12 サントリーホールディングス株式会社 Plastic bottle
US10427854B2 (en) 2015-12-25 2019-10-01 Yoshino Kogyosho Co., Ltd. Synthetic resin container

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JP2007269359A (en) * 2006-03-31 2007-10-18 Yoshino Kogyosho Co Ltd Synthetic resin-made round bottle
JP2010173713A (en) * 2009-01-30 2010-08-12 Yoshino Kogyosho Co Ltd Rounded bottle made of synthetic resin

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WO1997034808A1 (en) * 1996-03-19 1997-09-25 Graham Packaging Corporation Blow-molded container having label mount regions separated by peripherally spaced ribs
JP2002513720A (en) * 1998-05-01 2002-05-14 クラウン コーク アンド シール テクノロジーズ コーポレーション Plastic container for filling heated material with spaced-apart arched ribs
JP2007269359A (en) * 2006-03-31 2007-10-18 Yoshino Kogyosho Co Ltd Synthetic resin-made round bottle
JP2010173713A (en) * 2009-01-30 2010-08-12 Yoshino Kogyosho Co Ltd Rounded bottle made of synthetic resin

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2016145057A (en) * 2015-02-07 2016-08-12 日本山村硝子株式会社 Grip bottle
US10427854B2 (en) 2015-12-25 2019-10-01 Yoshino Kogyosho Co., Ltd. Synthetic resin container
WO2018061379A1 (en) 2016-09-30 2018-04-05 株式会社吉野工業所 Synthetic resin container
US11390417B2 (en) 2016-09-30 2022-07-19 Yoshino Kogyosho Co., Ltd. Synthetic resin container
WO2019171799A1 (en) 2018-03-05 2019-09-12 サントリーホールディングス株式会社 Plastic bottle
JP2019094132A (en) * 2019-03-27 2019-06-20 日本山村硝子株式会社 Grip bottle

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