JP2005104474A - Synthetic resin container - Google Patents

Synthetic resin container Download PDF

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JP2005104474A
JP2005104474A JP2003336373A JP2003336373A JP2005104474A JP 2005104474 A JP2005104474 A JP 2005104474A JP 2003336373 A JP2003336373 A JP 2003336373A JP 2003336373 A JP2003336373 A JP 2003336373A JP 2005104474 A JP2005104474 A JP 2005104474A
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panel
synthetic resin
resin container
container
panel body
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JP4217890B2 (en
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Yoshinori Nemoto
宜典 根本
Atsushi Wakishima
淳 脇島
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Toyo Seikan Group Holdings Ltd
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Toyo Seikan Kaisha Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a synthetic resin container having panels capable of being stably deformed in response to a change in the inner pressure of the container such as decompression. <P>SOLUTION: A plurality of recessed areas of panels (40) are formed on the outer wall of the synthetic resin container (10). Each panel (40) has a panel body (44), which bulges from its bottom 42 and curves outward in a vertical section. At least one lateral groove (46) extending laterally is formed on the panel body (44). <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

本発明は、ペット(ポリエチレンテレフタレート(PET))等の合成樹脂にて形成された容器(ボトル等)に係り、詳しくは、容器胴部の外壁に容器の内圧の変動を吸収するためのパネル部が形成された合成樹脂製容器に関する。   The present invention relates to a container (such as a bottle) formed of a synthetic resin such as pet (polyethylene terephthalate (PET)), and more specifically, a panel portion for absorbing fluctuations in the internal pressure of the container on the outer wall of the container body. The present invention relates to a synthetic resin container in which is formed.

ペットボトルなどの合成樹脂製容器では、加熱された茶飲料のような飲料液が充填された後に栓にて密封された場合、その飲料液から発生する水蒸気により一時的に容器の内圧が上昇した後に、飲料液が常温に戻る際に容器内が減圧状態となる。この容器内の減圧状態により容器外壁が内側に陥没変形して容器の外観を損なうという問題に対して、従来から、容器内の昇圧及び減圧を吸収するためのパネル部が容器外壁に形成されている(例えば、特許文献1)。   When a plastic resin container such as a plastic bottle is filled with a beverage such as a heated tea beverage and sealed with a stopper, the internal pressure of the container temporarily increases due to water vapor generated from the beverage. Later, when the beverage returns to room temperature, the inside of the container is in a reduced pressure state. In order to solve the problem that the outer wall of the container is depressed inward due to the decompressed state in the container and the appearance of the container is impaired, a panel portion for absorbing the pressure and decompression in the container has been conventionally formed on the container outer wall. (For example, Patent Document 1).

このように外壁にパネル部が形成されたペットボトル(合成樹脂製容器)の一例として、図3に示すものがある。なお、図3(a)は、ペットボトルの外観を示す正面図、図3(b)は、図3(a)のB−B断面図(縦断面図)、図3(c)は、図3(a)のC−C断面図(横断面図)である。   FIG. 3 shows an example of a plastic bottle (synthetic resin container) having a panel portion formed on the outer wall in this way. 3A is a front view showing the appearance of a plastic bottle, FIG. 3B is a cross-sectional view along BB (vertical cross-sectional view) in FIG. 3A, and FIG. It is CC sectional drawing (transverse sectional view) of 3 (a).

図3(a)、(c)において、ペットボトル10の胴部11の外周壁には、窪み領域となるパネル部20と柱部30とが交互に配列されるように形成されている。各パネル部20は、その周縁から下降傾斜する傾斜部21、パネル部20の中央部分に位置する矩形リング状の底部22、及び矩形リング状の底部22の左右縦方向外縁のそれぞれから傾斜部21に続くサイド盛上がり部23a、23bが形成され、更に、矩形リング状の底部22の内縁から盛り上がるパネル本体24が形成されている。また、パネル本体24の横方向の中央部には縦方向に延びる横断面略V字状となる縦溝部25が形成されている。パネル本体24は、全体として、図3(b)に示すように、縦断面において外方に湾曲した形状となっている。   3 (a) and 3 (c), the panel portion 20 and the column portion 30 serving as a recessed region are formed on the outer peripheral wall of the body portion 11 of the PET bottle 10 so as to be alternately arranged. Each panel portion 20 has an inclined portion 21 inclined downward from its peripheral edge, a rectangular ring-shaped bottom portion 22 located at the center portion of the panel portion 20, and an inclined portion 21 from each of the left and right vertical outer edges of the rectangular ring-shaped bottom portion 22. Next, side swelled portions 23a and 23b are formed, and a panel main body 24 swelled from the inner edge of the bottom portion 22 having a rectangular ring shape is formed. Further, a vertical groove portion 25 having a substantially V-shaped cross section extending in the vertical direction is formed in the central portion of the panel body 24 in the horizontal direction. As shown in FIG. 3B, the panel body 24 as a whole has a shape curved outward in the longitudinal section.

このようなパネル部20の形成されたペットボトル10では、加熱された茶飲料のような飲料液が充填された後に栓にて密封され、その飲料液から発生する水蒸気により一時的にペットボトル10の内圧が上昇すると、各パネル部20において主にパネル本体24が外方に膨らんでその内圧上昇を吸収する。なお、この際、パネル本体24に形成された縦溝部25によってパネル本体25の外方への膨らみが妨げられることから、内圧の上昇度合に対するパネル本体24の膨らみ度合は極力小さいものとなる。   In the plastic bottle 10 in which the panel unit 20 is formed, the plastic bottle 10 is filled with a beverage liquid such as a heated tea beverage and then sealed with a stopper, and is temporarily sealed with water vapor generated from the beverage liquid. When the internal pressure increases, the panel body 24 mainly swells outward in each panel portion 20 to absorb the increase in internal pressure. At this time, since the outward bulge of the panel main body 25 is prevented by the vertical groove portion 25 formed in the panel main body 24, the bulge degree of the panel main body 24 with respect to the increase degree of the internal pressure is as small as possible.

そして、前記飲料液が常温に戻る際にペットボトル10内が減圧状態になると、各パネル部20において主にパネル本体24がその減圧度合いに応じて内側方向に弾性変形してもとの形状に戻り、更に、内側への弾性変形の過程で、その内圧がある減圧度合を超えると、外側に湾曲していたパネ本体24がペットボトル10の内側に一気に湾曲するように反転する。   When the inside of the PET bottle 10 is in a reduced pressure state when the beverage liquid returns to room temperature, the panel body 24 is mainly deformed in the inner direction depending on the degree of the reduced pressure in each panel portion 20. Returning further, in the process of elastic deformation inward, when the internal pressure exceeds a certain degree of pressure reduction, the panel body 24 that has been curved outward is inverted so that it is curved inward at the inside of the PET bottle 10.

このように、外方に湾曲させたパネル本体24により、ペットボトル10内に比較的大きな圧力の変動が生じても、有効にその圧力変動を吸収することができる。
実用新案登録第2526687号公報
Thus, even if a relatively large pressure fluctuation occurs in the PET bottle 10, the pressure fluctuation can be effectively absorbed by the panel body 24 curved outward.
Utility Model Registration No. 2526687

しかし、前述したような従来のペットボトル(合成樹脂製容器)10では、パネル本体24の肉厚の製品毎のバラツキ、ペットボトル10内で発生する圧力変動のバラツキ等により、ペットボトル10内の減圧時に、外側に膨らんでいたパネル本体24が内側に反転しない場合がありうる。このようにペットボトル10において一部のパネル本体24が内側に反転しないと、製品としての外観を損なうことになる。   However, in the conventional PET bottle (synthetic resin container) 10 as described above, due to variations in the thickness of the panel body 24 for each product, variations in pressure fluctuations generated in the PET bottle 10, and the like, At the time of decompression, the panel body 24 swelled outward may not be reversed inward. Thus, if some panel main bodies 24 are not reversed inside in the plastic bottle 10, the external appearance as a product will be impaired.

本発明は、このような従来の不具合を解決するためになされたもので、内圧の変動に応じて安定的に変形することのできるパネル部を有する合成樹脂製容器を提供することである。   The present invention has been made to solve such conventional problems, and it is an object of the present invention to provide a synthetic resin container having a panel portion that can be stably deformed in accordance with fluctuations in internal pressure.

本発明に係る合成樹脂製容器は、外壁に窪み領域となるパネル部が複数形成された合成樹脂製容器であって、各パネル部が、その底部から盛り上がり、縦断面において外方に湾曲するパネル本体を有し、前記パネル本体に、横方向に延びる横溝部が少なくとも1つ形成された構成となる。   The synthetic resin container according to the present invention is a synthetic resin container in which a plurality of panel portions to be recessed regions are formed on the outer wall, and each panel portion rises from the bottom and curves outward in a longitudinal section. It has a main body, and the panel main body has a configuration in which at least one horizontal groove extending in the horizontal direction is formed.

このような構成により、合成樹脂製容器の内圧が上昇する際には、パネル本体が外方に膨らんでその内圧上昇を吸収する。そして、合成樹脂製容器内が減圧される際には、縦断面において外方に湾曲するパネル本体が横溝部により縦方向において分断された構造となることから、分断されたパネル本体部分それぞれが単独で内方に反転(湾曲)し難くなる。また、パネル本体は横溝部において窪んだ構造となることから、容器が減圧される際にパネル本体はその横溝部から容器内側に引込まれやすくなる。その結果、合成樹脂容器が減圧される際には、外方に湾曲するパネル本体が全体的及び部分的に一気に内方に反転することなく、その減圧度合に応じてパネル本体が全体的に容器内側に変形し易くなる。   With such a configuration, when the internal pressure of the synthetic resin container increases, the panel body swells outward to absorb the increase in internal pressure. When the inside of the synthetic resin container is decompressed, the panel body that curves outward in the longitudinal section is divided in the longitudinal direction by the lateral groove, so each of the divided panel body parts is independent. It becomes difficult to invert (curve) inward. Further, since the panel body has a structure that is recessed in the lateral groove portion, the panel body is likely to be pulled into the container from the lateral groove portion when the container is decompressed. As a result, when the synthetic resin container is depressurized, the panel body that curves outwardly does not invert inward at a stretch, in whole or in part, and the panel body is entirely in accordance with the degree of decompression. It becomes easy to deform inside.

また、本発明に係る合成樹脂製容器は、前記パネル本体に、縦方向に延びて前記横溝部と交差する容器内側に窪んだ縦溝部を有する構成とすることができる。   Moreover, the synthetic resin container according to the present invention may have a configuration in which the panel body has a longitudinal groove portion that extends in the longitudinal direction and is recessed inside the container that intersects the lateral groove portion.

このような構成により、横溝部と縦溝部によりパネル本体には十字状の溝部が形成されることとなり、容器が減圧される際に、パネル本体が全体的により安定的に容器内側に変形し易くなる。   With such a configuration, a cross-shaped groove portion is formed in the panel body by the horizontal groove portion and the vertical groove portion, and when the container is depressurized, the panel body is easily deformed to the inside of the container more stably as a whole. Become.

更に、本発明に係る合成樹脂製容器は、前記横溝部が、前記パネル本体の縦方向略中央部に形成される構成とすることができる。   Furthermore, the synthetic resin container according to the present invention may be configured such that the lateral groove portion is formed at a substantially central portion in the vertical direction of the panel body.

このような構成により、容器減圧時におけるパネル本体の各部の変形のバランスがより良くなり、パネル本体が全体的に更により安定的に容器内側に変形し易くなる。   With such a configuration, the balance of deformation of each part of the panel main body when the container is depressurized is improved, and the panel main body is more easily deformed to the inside of the container more stably as a whole.

本発明に係る合成樹脂製容器では、減圧に際して、外方に湾曲するパネル本体が全体的及び部分的に一気に内方に反転(湾曲)することなく、その減圧度合に応じてパネル本体が全体的に容器内側に変形し易くなることから、内圧の変動に応じて安定的に変形することのできるパネル部を有する合成樹脂製容器を実現することが可能となる。   In the case of the synthetic resin container according to the present invention, the panel body that curves outwardly does not invert (curve) inwardly and partially at the same time when decompressing, and the panel body as a whole according to the degree of decompression. Therefore, it is possible to realize a synthetic resin container having a panel portion that can be stably deformed according to fluctuations in internal pressure.

本発明の実施の形態について、図面を用いて説明する。   Embodiments of the present invention will be described with reference to the drawings.

本発明の実施の形態に係る合成樹脂製容器の構造は、図1に示すようになっている。この合成樹脂製容器は、例えば、飲料液を充填するペットボトルである。図1(a)は、ペットボトルの外観を示し、図1(b)は、図1(a)におけるB−B断面(縦断面)を示し、図1(c)は、図1(a)におけるC−C断面(横断面)を示している。   The structure of the synthetic resin container according to the embodiment of the present invention is as shown in FIG. This synthetic resin container is, for example, a plastic bottle filled with a beverage. 1A shows the appearance of a PET bottle, FIG. 1B shows a BB cross section (longitudinal cross section) in FIG. 1A, and FIG. 1C shows FIG. The CC cross section (cross section) in is shown.

図1(a)、(c)において、ペットボトル10の胴部11の外周壁には、窪み領域となるパネル部40と柱部30とが交互に配列されるように形成されている。各パネル部40は、その周縁から下降傾斜する傾斜部41、パネル部20の中央部分に位置する矩形リング状の底部42、及び矩形リング状の底部42の左右縦方向外縁のそれぞれから傾斜部42に続くサイド盛上がり部43a、43bが形成され、更に、矩形リング状の底部42の内縁から盛り上がるパネル本体44が形成されている。パネル本体44は、図1(b)に示すように、縦断面において外方に湾曲した構造となっている。このような各パネル部40の構造は、基本的に、図3に示すパネル部20の構造と同じである。   1 (a) and 1 (c), panel portions 40 and column portions 30 serving as recessed regions are formed alternately on the outer peripheral wall of the body portion 11 of the PET bottle 10. Each panel portion 40 has an inclined portion 41 inclined downward from its peripheral edge, a rectangular ring-shaped bottom portion 42 positioned at the center portion of the panel portion 20, and an inclined portion 42 from each of the left and right vertical outer edges of the rectangular ring-shaped bottom portion 42. Next, side swelled portions 43a and 43b are formed, and a panel main body 44 swelled from the inner edge of the rectangular ring-shaped bottom portion 42 is formed. As shown in FIG. 1B, the panel main body 44 has a structure curved outward in a longitudinal section. Such a structure of each panel unit 40 is basically the same as the structure of the panel unit 20 shown in FIG.

パネル本体44の縦方向の中央部には横方向に延びる縦断面略V字状(図1(b)参照)の横溝部46が形成されると共に、パネル本体44の横方向中央部には縦方向に延びる横断面略V字状(図1(c)参照)の縦溝部45が形成されている。横溝部46及び縦溝部45は互いに交差することから、パネル本体40には十字形状の溝部が形成されることとなる(図1(a)参照)。また、パネル本体40は十字形状となる溝部(縦溝部45、横溝部46)によって縦方向及び横方向において分断された構造となる。   A horizontal groove portion 46 having a substantially V-shaped vertical cross section (see FIG. 1B) extending in the horizontal direction is formed in the central portion of the panel main body 44 in the vertical direction, and a vertical groove is formed in the horizontal central portion of the panel main body 44. A vertical groove 45 having a substantially V-shaped cross section (see FIG. 1C) extending in the direction is formed. Since the horizontal groove portion 46 and the vertical groove portion 45 intersect each other, a cross-shaped groove portion is formed in the panel body 40 (see FIG. 1A). The panel body 40 has a structure that is divided in the vertical and horizontal directions by cross-shaped grooves (vertical groove 45 and horizontal groove 46).

このような構造のパネル部40が形成されたペットボトル10では、加熱された茶飲料のような飲料液が充填された後に栓にて密封され、その飲料液から発生する水蒸気により一時的にペットボトル10の内圧が上昇すると、各パネル部40において主にパネル本体44が外方に膨らんでその内圧上昇を吸収する。この際、パネル本体44に十字形状に形成された溝部(縦溝部45、横溝部46)によってパネル本体44の外方に作用する力に抗する強度が大きくなることから、パネル本体44の外方への膨らみが妨げられて、内圧の上昇度合いに対するパネル本体44の膨らみ度合いは極力小さいものとなる。   In the plastic bottle 10 in which the panel portion 40 having such a structure is formed, the beverage liquid such as a heated tea beverage is filled and sealed with a stopper, and the pet bottle is temporarily sealed with water vapor generated from the beverage liquid. When the internal pressure of the bottle 10 increases, the panel body 44 mainly swells outward in each panel portion 40 to absorb the increase in internal pressure. At this time, since the groove portions (vertical groove portions 45 and horizontal groove portions 46) formed in a cross shape on the panel main body 44 increase the strength against the force acting on the outside of the panel main body 44, Therefore, the degree of swelling of the panel main body 44 with respect to the degree of increase in internal pressure is as small as possible.

そして、前記飲料液が常温に戻る際にペットボトル10内が減圧状態になると、各パネル部40において主にパネル本体44がその減圧度合いに応じて内側方向に弾性変形してもとの形状に戻る。更に、ペットボトル10内が減圧される過程で、十字形状となる溝部(縦溝部45、横溝部46)によって分断されたパネル本体44の各分断部分は単独でペットボトル10の内側に一気に湾曲することはなく、パネル本体44は全体的にその減圧度合いに応じてペットボトル10の内側に湾曲するように変形していく。   And when the inside of the PET bottle 10 is in a reduced pressure state when the beverage liquid returns to normal temperature, the panel body 44 is mainly deformed in the inner direction depending on the degree of the reduced pressure in each panel portion 40. Return. Furthermore, in the process of depressurizing the inside of the plastic bottle 10, each divided portion of the panel main body 44 divided by the cross-shaped grooves (vertical groove 45, horizontal groove 46) is bent at a stroke inside the plastic bottle 10 alone. In other words, the panel main body 44 is deformed so as to be curved inward of the plastic bottle 10 according to the degree of decompression as a whole.

このように、ペットボトル10内の減圧により各パネル部40のパネル本体44がその減圧度に応じてペットボトル10の内側に湾曲するように変形することから、ペットボトル10の肉厚の不均一性があったとしても、各パネル部40におけるパネル本体44の変形度合いは、外見上問題となるほどの差が生じることはない。   In this way, the panel body 44 of each panel unit 40 is deformed so as to bend inward of the PET bottle 10 according to the degree of decompression due to the decompression in the PET bottle 10, so that the thickness of the PET bottle 10 is not uniform. Even if there is a characteristic, the degree of deformation of the panel body 44 in each panel portion 40 does not cause a difference that causes a problem in appearance.

(実験例)
図3に示す構造においてパネル本体24の縦断面における湾曲をR250(半径250ミリメートル)、その横断面における湾曲をR55としたペットボトルA、図1に示す構造においてパネル本体40の縦断面における湾曲をR250、その横断面における湾曲をR55としたペットボトルB、図1に示す構造においてパネル本体40の縦断面における湾曲度をR300、その横断面における湾曲度をR70としたペットボトルCのそれぞれを減圧した際の減圧度(mmHg)と減圧量(ml)との関係を図2に示す。
(Experimental example)
In the structure shown in FIG. 3, the plastic bottle A in which the curvature in the longitudinal section of the panel body 24 is R250 (radius 250 mm) and the curvature in the transverse section is R55, and the curvature in the longitudinal section of the panel body 40 in the structure shown in FIG. Each of R250, PET bottle B having a cross-sectional curvature of R55, and the structure shown in FIG. FIG. 2 shows the relationship between the degree of reduced pressure (mmHg) and the amount of reduced pressure (ml).

図2において、図1に示す構造となるペットボトルB、Cは、その減圧度を増すに従ってその減圧量が略線形的に増加するのに対して、図3に示す構造となるペットボトルAは、減圧度100(mmHg)前後で、減圧量が急激に変動した。これは、各パネル部20における外方に湾曲するパネル本体24が減圧度100(mmHg)前後でペットボトル10の内側に一気に湾曲する(反転する)ことに起因したものである。このように、図1に示す構造となるペットボトルB、Cは、減圧度の増加にともなって略線形的に減圧量が増加するので、加熱飲料液を充填して密封した後に内部が減圧状態となっても、各パネル部40のパネル本体44は減圧度合いに応じて安定的に内側に湾曲するように変形することとなる。   2, PET bottles B and C having the structure shown in FIG. 1 increase in the amount of reduced pressure almost linearly as the degree of pressure reduction increases, whereas PET bottles A having the structure shown in FIG. The amount of reduced pressure fluctuated abruptly around a degree of vacuum of 100 (mmHg). This is due to the fact that the panel body 24 that curves outwardly in each panel portion 20 curves (inverts) all at once inside the PET bottle 10 around a degree of vacuum of 100 (mmHg). In this way, the PET bottles B and C having the structure shown in FIG. 1 increase in the amount of decompression approximately linearly as the degree of decompression increases. Even if it becomes, the panel main body 44 of each panel part 40 will deform | transform so that it may curve inside stably according to the pressure reduction degree.

なお、前述した実施の形態では、各パネル部40におけるパネル本体44には、縦溝部45が形成されていたが、この縦溝部45が形成されていなくても、横溝部46が形成されていれば、ペットボトル10の減圧に際して、パネル本体44は、一気に内側に湾曲するように変形することなく、減圧度合いに応じてその内側に湾曲するようにするようになり得る。   In the embodiment described above, the vertical groove portion 45 is formed in the panel body 44 in each panel portion 40. However, even if the vertical groove portion 45 is not formed, the horizontal groove portion 46 is not formed. For example, when the PET bottle 10 is depressurized, the panel main body 44 can be curved inward according to the degree of depressurization without being deformed so as to be curved inward at a stretch.

また、パネル本体44に形成された横溝部46は、1つに限定されることなく、パネル本体44に複数の横溝部を形成することもできる。   Further, the number of the lateral groove portions 46 formed in the panel main body 44 is not limited to one, and a plurality of horizontal groove portions can be formed in the panel main body 44.

以上説明したように、本発明に係る合成樹脂製容器は、減圧に際して、外方に湾曲するパネル本体が全体的及び部分的に一気に内方に反転(湾曲)することなく、その減圧度合に応じてパネル本体が全体的に容器内側に変形し易くなることから、内圧の変動に応じてパネル本体が安定的に変形し得ることとなり、ペット(ポリエチレンテレフタレート(PET))等の合成樹脂にて形成された容器(ボトル等)として有用である。   As described above, the container made of the synthetic resin according to the present invention has a panel body that curves outwardly at the time of decompression in accordance with the degree of decompression without being reversed (curved) inwardly or entirely at a stretch. Because the panel body is easily deformed inside the container as a whole, the panel body can be stably deformed according to fluctuations in internal pressure, and is made of synthetic resin such as PET (polyethylene terephthalate (PET)). It is useful as a sealed container (bottle etc.).

本発明の実施の形態に係る合成樹脂製容器(ペットボトル)の構造を示す図であって、(a)は外観を示す正面図、(b)は(a)の縦断面図、(c)は(a)の横断面図である。BRIEF DESCRIPTION OF THE DRAWINGS It is a figure which shows the structure of the synthetic resin containers (pet bottles) based on embodiment of this invention, Comprising: (a) is a front view which shows an external appearance, (b) is a longitudinal cross-sectional view of (a), (c). FIG. 2 is a transverse sectional view of (a). 本発明の実施の形態に係る合成樹脂製容器と、従来のペットボトルの減圧特性を比較して示す図である。It is a figure which compares and shows the decompression characteristic of the synthetic resin container which concerns on embodiment of this invention, and the conventional PET bottle. 従来のペットボトルの構造例を示す図であって、(a)は外観図、(b)は(a)の縦断面図、(c)は(a)の横断面図である。It is a figure which shows the structural example of the conventional plastic bottle, Comprising: (a) is an external view, (b) is a longitudinal cross-sectional view of (a), (c) is a cross-sectional view of (a).

符号の説明Explanation of symbols

10 ボトル
11 胴部
30 柱部
20、40 パネル部
21、41 傾斜部
22、42 底部
23a、23b、43a、43b サイド盛上がり部
24、44 パネル本体
25、45 縦溝部
46 横溝部
DESCRIPTION OF SYMBOLS 10 Bottle 11 Body part 30 Column part 20, 40 Panel part 21, 41 Inclined part 22, 42 Bottom part 23a, 23b, 43a, 43b Side rising part 24, 44 Panel main body 25, 45 Vertical groove part 46 Horizontal groove part

Claims (3)

外壁に窪み領域となるパネル部が複数形成された合成樹脂製容器であって、
各パネル部は、その底部から盛り上がり、縦断面において外方に湾曲するパネル本体を有し、
前記パネル本体に、横方向に延びる横溝部が少なくとも1つ形成されたことを特徴とする合成樹脂製容器。
It is a synthetic resin container in which a plurality of panel portions to be recessed regions are formed on the outer wall,
Each panel portion has a panel body that rises from its bottom and curves outward in a longitudinal section,
A synthetic resin container, wherein at least one lateral groove extending in the lateral direction is formed in the panel body.
前記パネル本体に、縦方向に延びて前記横溝部と交差する縦溝部が形成されたことを特徴とする請求項1記載の合成樹脂製容器。 The synthetic resin container according to claim 1, wherein a vertical groove portion that extends in a vertical direction and intersects the horizontal groove portion is formed in the panel body. 前記横溝部は、前記パネル本体の縦方向略中央部に形成されたことを特徴とする請求項1または2記載の合成樹脂製容器。 The synthetic resin container according to claim 1 or 2, wherein the lateral groove portion is formed at a substantially central portion in the longitudinal direction of the panel body.
JP2003336373A 2003-09-26 2003-09-26 Plastic container Expired - Fee Related JP4217890B2 (en)

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Cited By (8)

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JP2007119049A (en) * 2005-10-31 2007-05-17 Yoshino Kogyosho Co Ltd Pinch-grip type bottle-shaped vessel
JP2007230581A (en) * 2006-02-28 2007-09-13 Yoshino Kogyosho Co Ltd Synthetic resin square bottle
JP2008007158A (en) * 2006-06-29 2008-01-17 Yoshino Kogyosho Co Ltd Bottle
WO2009028402A1 (en) * 2007-08-24 2009-03-05 Kobayashi Pharmaceutical Co., Ltd. Resin-made encapsulation container
JP2013006628A (en) * 2011-06-27 2013-01-10 Hokkai Can Co Ltd Bottle made of synthetic resin
JP2018528130A (en) * 2015-09-10 2018-09-27 ペプシコ・インク Container with pressure regulation area
JP2018162095A (en) * 2017-03-27 2018-10-18 サントリーホールディングス株式会社 Container made of resin
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Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007119049A (en) * 2005-10-31 2007-05-17 Yoshino Kogyosho Co Ltd Pinch-grip type bottle-shaped vessel
JP4697632B2 (en) * 2005-10-31 2011-06-08 株式会社吉野工業所 Pinch grip type bottle container
JP2007230581A (en) * 2006-02-28 2007-09-13 Yoshino Kogyosho Co Ltd Synthetic resin square bottle
JP2008007158A (en) * 2006-06-29 2008-01-17 Yoshino Kogyosho Co Ltd Bottle
WO2009028402A1 (en) * 2007-08-24 2009-03-05 Kobayashi Pharmaceutical Co., Ltd. Resin-made encapsulation container
JP2009051524A (en) * 2007-08-24 2009-03-12 Kobayashi Pharmaceut Co Ltd Encapsulating container made of resin
JP2013006628A (en) * 2011-06-27 2013-01-10 Hokkai Can Co Ltd Bottle made of synthetic resin
JP2018528130A (en) * 2015-09-10 2018-09-27 ペプシコ・インク Container with pressure regulation area
JP2018162095A (en) * 2017-03-27 2018-10-18 サントリーホールディングス株式会社 Container made of resin
WO2021261292A1 (en) * 2020-06-22 2021-12-30 サントリーホールディングス株式会社 Plastic bottle
JP2022001502A (en) * 2020-06-22 2022-01-06 サントリーホールディングス株式会社 Plastic bottle
JP7370301B2 (en) 2020-06-22 2023-10-27 サントリーホールディングス株式会社 plastic bottle

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