JP5700329B2 - Synthetic resin round frame - Google Patents

Synthetic resin round frame Download PDF

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JP5700329B2
JP5700329B2 JP2010105324A JP2010105324A JP5700329B2 JP 5700329 B2 JP5700329 B2 JP 5700329B2 JP 2010105324 A JP2010105324 A JP 2010105324A JP 2010105324 A JP2010105324 A JP 2010105324A JP 5700329 B2 JP5700329 B2 JP 5700329B2
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shoulder
reduced pressure
panel
peripheral wall
round
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JP2011230829A (en
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浩通 斉藤
浩通 斉藤
早川 忠司
忠司 早川
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Yoshino Kogyosho Co Ltd
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Description

本発明は合成樹脂製丸形壜体に関する。
The present invention relates to a synthetic resin round casing.

従来から、ポリエチレンテレフタレート(以下PETと記す。)樹脂製の二軸延伸ブロー成形壜体(以下PETボトルと記す。)は、優れた透明性、機械強度、耐熱性、ガスバリア性等を有し、各種飲料用の容器として広く利用されている。また従来、殺菌を必要とするたとえば果汁飲料、お茶等の内容液のPETボトルへの充填方法として、所謂高温充填と呼ばれる方法があり、90℃前後の温度で内容液を壜体に充填し、キャップをして密封後、冷却するものであり、壜体内がかなりの減圧状態となる。   Conventionally, a biaxially stretched blow molded casing (hereinafter referred to as PET bottle) made of polyethylene terephthalate (hereinafter referred to as PET) resin has excellent transparency, mechanical strength, heat resistance, gas barrier properties, etc. It is widely used as a container for various beverages. Conventionally, as a method for filling a PET bottle with a content liquid such as fruit juice or tea that requires sterilization, there is a method called so-called high-temperature filling, in which the content liquid is filled into a casing at a temperature of about 90 ° C., The cap is sealed and then cooled, and the inside of the housing is in a considerably reduced pressure state.

このため、上記のような高温充填を伴う用途については、胴部に意図的に減圧により陥没状の変形が容易な領域である、所謂減圧吸収パネルを形成して、減圧時にこの減圧吸収パネルを陥没状に変形させることにより、良好な外観を保持すると共に、減圧吸収パネル以外の部分で壜体としての剛性や座屈強度を確保して、壜体の搬送ライン、積重保管、自販機内等におけるトラブルがないようにしている。   For this reason, for applications involving high-temperature filling as described above, a so-called reduced pressure absorption panel, which is a region that can be easily deformed by depression, is formed in the body part, and this reduced pressure absorption panel is used during pressure reduction. By deforming into a depressed shape, it maintains a good appearance and secures rigidity and buckling strength as a housing in parts other than the vacuum absorption panel, so that the transportation line of the housing, stacked storage, inside a vending machine, etc. So that there are no troubles.

たとえば特許文献1には減圧吸収パネルを有する比較的小型の丸形壜体についての記載がある。図7にこの種の比較的小型の丸形壜体の一例を示す。
この壜体101は容量が350mlの丸形のPETボトルであり、口筒部102、肩部103、胴部104および底部105から形成され、胴部104の上端部と下端部の高さ位置に周溝106が形成され、この周溝106の間に段部111で周囲を囲うようにして6ケの減圧吸収パネル112が陥没状に形成されている。
For example, Patent Document 1 describes a relatively small round casing having a vacuum absorbing panel. FIG. 7 shows an example of this type of relatively small round casing.
The casing 101 is a round PET bottle having a capacity of 350 ml, and is formed of a mouth tube portion 102, a shoulder portion 103, a trunk portion 104, and a bottom portion 105, and is located at the height positions of the upper end portion and the lower end portion of the trunk portion 104. A circumferential groove 106 is formed, and six decompression absorption panels 112 are formed in a recessed shape so as to surround the circumference with a step portion 111 between the circumferential grooves 106.

この減圧吸収パネル112は、略平板状であり、壜体101内が減圧状態になった際には、容易に内側に陥没状に変形可能であるので、外観上において、壜体が歪に変形した感じを与えることなく、すなわち目立たないように減圧状態を吸収(緩和)する機能(以下、減圧吸収機能と記す。)を発揮することができる。また隣接する減圧吸収パネル112の間に残存形成される柱部113は壜体としての剛性と座屈強度を担う。   The reduced pressure absorption panel 112 has a substantially flat plate shape, and when the inside of the housing 101 is in a decompressed state, it can be easily deformed into a concave shape inside, so that the housing is deformed into distortion in appearance. Thus, a function of absorbing (relaxing) the reduced pressure state (hereinafter, referred to as a reduced pressure absorption function) can be exhibited without giving the feeling. Further, the column portion 113 remaining between the adjacent reduced pressure absorption panels 112 bears rigidity and buckling strength as a housing.

一方、壜体の外観に係るデザイン的な要請により胴部に減圧吸収パネルを形成するのを避ける必要がある場合、あるいは、減圧吸収パネルそのものが撓み変形し易い部分であるので、胴部壁の面剛性を高くして胴部に高い保形性を付与する必要のある、自動販売機で販売する等の用途では、たとえば特許文献2にあるように胴部に減圧吸収パネルを形成することなく、底部の底面壁の陥没状の変形により、減圧吸収機能を発揮するようにした合成樹脂製壜体を使用する。
On the other hand, when it is necessary to avoid the formation of the vacuum absorption panel on the body due to the design requirements related to the appearance of the housing, or the vacuum absorption panel itself is a part that is easily bent and deformed, In applications where it is necessary to increase the surface rigidity and impart high shape retention to the barrel, or for sale in a vending machine, for example, as disclosed in Patent Document 2, without forming a vacuum absorbing panel on the barrel A synthetic resin casing made to exhibit a reduced pressure absorption function by the depression-like deformation of the bottom wall of the bottom is used.

特開2005−132452号公報Japanese Patent Laid-Open No. 2005-132452 特開2007−269392号公報JP 2007-269392 A

ここで、上記図7に示されるような350ml程度の比較的小さな容量のPETボトルでは、減圧吸収パネルを形成できる範囲が限定される。また底部の陥没凹部で減圧吸収機能を発揮させる場合でも、同様に十分に減圧吸収機能を発揮させることが困難となる。
一方、省資源コストの点から壜体の軽量化すなわち周壁の薄肉化が求められており、減圧吸収機能と壜体としての剛性や座屈強度のバランスを考慮し、要求される性能の限界に近い領域で形状設計がなされており、薄肉化の程度をさらに進めようとすると、テーパー筒状の肩部の周壁が陥没状に変形してしまうと云う問題が発生する。
Here, in the PET bottle having a relatively small capacity of about 350 ml as shown in FIG. 7, the range in which the reduced pressure absorption panel can be formed is limited. Further, even when the reduced-pressure absorption function is exhibited in the recessed portion at the bottom, it is difficult to sufficiently exhibit the reduced-pressure absorption function.
On the other hand, from the viewpoint of resource saving cost, the weight reduction of the chassis, that is, the thinning of the peripheral wall is required, and considering the balance between the vacuum absorption function and the rigidity and buckling strength of the chassis, the required performance limit is reached. The shape design is made in a close region, and if the degree of thinning is further advanced, there arises a problem that the peripheral wall of the shoulder portion of the tapered cylindrical shape is deformed into a depressed shape.

そこで、本発明は、胴部や底部に減圧吸収パネルや陥没凹部等の減圧吸収機能部を配設した合成樹脂製丸形壜体において、肩部での減圧時における局部的な陥没状の変形を効果的に抑制すると共に、肩部で胴部や底部における減圧吸収機能を補完する機能を発揮させるための周壁構造を創出することを課題とするものである。
Therefore, the present invention is a synthetic resin round casing having a vacuum absorption panel, a depression recess and the like disposed on the body and bottom, and a local depression-like deformation at the time of decompression at the shoulder. It is an object of the present invention to create a peripheral wall structure that effectively suppresses the above-described problem and that exhibits a function of complementing the reduced-pressure absorption function at the trunk portion and the bottom portion at the shoulder portion.

上記技術的課題を解決する手段の内、本発明の主たる構成は、
口筒部、テーパー筒状の肩部、円筒状の胴部、そして底部を有し、胴部と底部の少なくとも一方に壜体内の減圧時に減圧吸収機能を発揮する減圧吸収機能部を配設した丸形壜体において、
肩部の周壁に、周囲を段部で囲うようにして上方に向かって縮幅する角取りした三角形状の肩パネルを5ケ、周方向に並列状に陥没形成し、隣接する前記肩パネルの間に肩柱部を残存形成し、
陥没形成される肩パネルの縦断面において、肩パネルの下端部における段部の段差を上端部に比較して大きくする、
と云うものである。
Among the means for solving the above technical problems, the main configuration of the present invention is as follows.
It has a mouth tube part, a tapered cylindrical shoulder part, a cylindrical body part, and a bottom part, and at least one of the body part and the bottom part is provided with a reduced pressure absorption function part that exerts a reduced pressure absorption function during decompression of the housing. In a round enclosure,
The peripheral wall of the shoulder, the shoulder panels Five-triangular shape formed by chamfering the width decreasing upward so as to surround the periphery by the step portion, depression formed in parallel form in the circumferential direction, adjacent said shoulder panel The shoulder column part remains between,
In the longitudinal cross section of the shoulder panel formed in the depression, the step of the step at the lower end of the shoulder panel is made larger than the upper end.
It is said.

本願の発明者らが、壜体のさらなる軽量化すなわち周壁の薄肉化に係る検討をするなかで、周壁をかなりの程度まで薄肉化した壜体では、壜体内での減圧度の上昇に伴ってテーパー筒状の肩部の周壁が、略一定の変形態様で変形することが分かった。詳述すると、肩部の周壁が、周方向に並列状の5ケ所で陥没変形が発生し、肩部の周壁を上面からみると、変形前の円形から5角形状に変形することを見出した。
減圧時に肩部の周壁の変形は、周方向に並列状の複数の箇所で局部的に陥没しながら進行するが、周壁が奇数角形状になることにより変形が安定する。変位量が大きくなるため3角形状には変形し難いので、その結果、肩部の周壁が多くの場合5角形状に変形するものと推察される。
While the inventors of the present application have studied the further weight reduction of the housing, that is, the thinning of the peripheral wall, in the case of the thinning of the peripheral wall to a considerable extent, as the degree of decompression in the housing increases. It has been found that the peripheral wall of the tapered cylindrical shoulder portion is deformed in a substantially constant deformation mode. More specifically, it has been found that the peripheral wall of the shoulder part is deformed by depression in five places parallel in the circumferential direction, and when the peripheral wall of the shoulder part is viewed from the upper surface, it is deformed from a circular shape before the deformation into a pentagonal shape. .
Deformation of the peripheral wall of the shoulder portion during decompression, can proceed with locally recessed in parallel form a plurality of positions in the circumferential direction, deformed by the peripheral wall is an odd angle shape is stabilized. Since the amount of displacement is large, it is difficult to deform into a triangular shape, and as a result, it is assumed that the peripheral wall of the shoulder portion is often deformed into a pentagonal shape.

上記本発明の主たる構成は、この減圧時における肩部の周壁の変形様式を考慮して創出されたものであり、肩部の周壁に予め肩パネルを5ケ、周方向に並列状に陥没形成しておくことにより、周壁における陥没変形をスムーズにまた良好な外観を保持しながら進行させて安定化させることができ、この肩パネルに胴部や底部における減圧吸収機能の不足を補完する機能を発揮させて、小型ボトルにおいても、壜体全体として十分な減圧吸収機能を発揮させることが可能となる。   The main configuration of the present invention was created in consideration of the deformation pattern of the peripheral wall of the shoulder during decompression, and five shoulder panels were previously formed in the peripheral wall of the shoulder in a recessed manner in parallel in the circumferential direction. By doing so, it is possible to make the depression deformation in the peripheral wall proceed smoothly and while maintaining a good appearance, and this shoulder panel has a function that complements the lack of decompression absorption function at the trunk and bottom. As a result, even in a small bottle, it is possible to exhibit a sufficient reduced pressure absorption function as the entire casing.

ここで、肩部の上方に向かって縮径するテーパー筒状の周壁の形状を考慮し、肩パネルの形状は上方に向かって縮幅する形状とする。   Here, in consideration of the shape of the tapered cylindrical peripheral wall that is reduced in diameter toward the upper side of the shoulder portion, the shape of the shoulder panel is assumed to be a shape that is reduced in width toward the upper side.

上記構成は、肩パネルの形状を従来の壜体の肩部の周壁における減圧時の変形様式に沿って決めたものであり、減圧時における陥没変形をよりスムーズに進行させることが可能となる。   In the above configuration, the shape of the shoulder panel is determined in accordance with the deformation mode at the time of depressurization in the peripheral wall of the shoulder portion of the conventional case, and the depression deformation at the time of depressurization can proceed more smoothly.

上記本願発明の主たる構成の陥没形成される肩パネルの縦断面において、肩パネルの下端部における段部の段差を上端部に比較して大きくすることによれば、減圧時における肩パネルの陥没変形を段差の大きな下端部から上端部に向けてスムーズに進行させることが可能となる。 In the longitudinal cross section of the shoulder panel formed as a depression of the main configuration of the present invention, the shoulder panel depression deformation at the time of decompression is increased by making the step of the step at the lower end of the shoulder panel larger than the upper end. Can be smoothly advanced from the lower end portion having a large step toward the upper end portion.

本発明のさらに他の構成は、上記主たる構成において、胴部の周壁の所定の高さ範囲に、周囲を段部で囲うようにして減圧吸収パネルを複数、周方向に並列状に陥没形成し、この減圧吸収パネルを減圧吸収機能部とする、と云うものである。   Still another configuration of the present invention is the above-described main configuration, wherein a plurality of reduced pressure absorption panels are formed in a predetermined height range of the peripheral wall of the body portion so as to be surrounded by a stepped portion, and are recessed in parallel in the circumferential direction. This vacuum absorption panel is a vacuum absorption function unit.

本発明のさらに他の構成は、上記主たる構成において、底部に底面壁を上方、内部方向に陥没させて形成した陥没凹部を配設し、この陥没凹部を減圧吸収機能部とする、と云うものである。
According to still another configuration of the present invention, in the main configuration described above, a recessed portion formed by recessing the bottom wall upward and inward is disposed at the bottom portion, and the recessed portion serves as a decompression absorbing function portion. It is.

本発明は、上記した構成となっているので、以下に示す効果を奏する。
本発明の主たる構成を有するものにあっては、肩部の周壁に予め肩パネルを5ケ、周方向に並列状に陥没形成しておくことにより、周壁における陥没変形をスムーズにまた良好な外観を保持しながら進行させて安定化させることができ、
この肩パネルに胴部や底部における減圧吸収機能の不足を補完する機能を発揮させて、小型ボトルにおいても、壜体全体として十分な減圧吸収機能を発揮させることができる。
Since the present invention has the above-described configuration, the following effects can be obtained.
In the main structure of the present invention, five shoulder panels are preliminarily formed in parallel in the circumferential direction on the peripheral wall of the shoulder portion, so that the concavity deformation on the peripheral wall can be smoothly and satisfactorily performed. Can be advanced and stabilized while holding
The shoulder panel can exhibit a function of complementing the lack of the reduced pressure absorption function at the body and the bottom, so that a sufficient reduced pressure absorption function can be exhibited as a whole casing even in a small bottle.

本発明の合成樹脂製丸型壜体の第1実施例を示す正面図である。It is a front view which shows 1st Example of the synthetic resin round casings of this invention. 図1の壜体の平面図である。It is a top view of the housing of FIG. 図1中のA−A線に沿って示す肩部近傍の縦断面図である。It is a longitudinal cross-sectional view of the shoulder part vicinity shown along the AA line in FIG. 比較例の壜体を示す正面図である。It is a front view which shows the housing of a comparative example. 図4の壜体の平面図である。It is a top view of the housing of FIG. 本発明の合成樹脂製丸型壜体の第2実施例を示す正面図である。It is a front view which shows 2nd Example of the synthetic resin round-shaped housings of this invention. 従来の丸形壜体の例を示す正面図である。It is a front view which shows the example of the conventional round housing.

以下、本発明の実施例に沿って、図面を参照しながら説明する。
図1〜3は本発明の合成樹脂製丸形壜体の第1実施例を示すものであり、図1は正面図、図2は平面図、図3は図1中のA−A線に沿って示す肩パネル近傍の縦断面図である。
この壜体1はPET樹脂製の二軸延伸ブロー成形品であり、口筒部2、テーパー筒状の肩部3、円筒状の胴部4、底部5を有し、通称容量が280mlの小型の丸形ボトルである。また、口筒部2は熱結晶化処理により白化した状態である。
Hereinafter, it demonstrates along the Example according to this invention, referring drawings.
1 to 3 show a first embodiment of a synthetic resin round casing of the present invention. FIG. 1 is a front view, FIG. 2 is a plan view, and FIG. 3 is a line AA in FIG. It is a longitudinal cross-sectional view of the shoulder panel vicinity shown along.
This housing 1 is a biaxially stretched blow molded product made of PET resin, and has a mouth tube portion 2, a tapered tube shoulder portion 3, a cylindrical body portion 4 and a bottom portion 5, and is a small size having a common capacity of 280 ml. This is a round bottle. The mouth tube portion 2 is in a state of being whitened by the thermal crystallization process.

胴部4の上端部には短円筒部7また下端部には周溝6が配設され、この短円筒部7と周溝6の間に、周囲を段部11により囲うようにして、縦長矩形状の減圧吸収パネル12が6ケ、周方向に並列状に陥没形成されている。
そして、隣接する減圧吸収パネル12の間に、壜体1の剛性と座屈強度を担う柱部13が残存形成されている。
A short cylindrical portion 7 is disposed at the upper end portion of the body portion 4 and a circumferential groove 6 is disposed at the lower end portion thereof. The short cylindrical portion 7 and the circumferential groove 6 are surrounded by a step portion 11 so as to be vertically long. Six rectangular decompression absorption panels 12 are formed to be recessed in parallel in the circumferential direction.
And the column part 13 which bears the rigidity and buckling strength of the housing 1 is left between the adjacent reduced pressure absorption panels 12.

また、肩部3の周壁には、周囲を段部15で囲うようにして上方に向かって縮幅する形状、本実施例では角取りした三角形状の肩パネル16が5ケ、周方向に等中心角度位置に、並列状に陥没形成されている。また、隣接する肩パネル16の間には肩柱部17が残存形成されている。
なお、6ケの減圧吸収パネル12の配設位置と5ケの肩パネル16の相対的な配設位置は特に限定されるものではないが、本実施例では図1の正面図に見られるように、壜体1の正面となる位置で、一つの減圧吸収パネル12の配設位置と一つの肩パネル16の位置を合せるようにしている。
In addition, the peripheral wall of the shoulder 3 has a shape that shrinks upward so as to surround the periphery with a stepped portion 15, and in this embodiment, five triangular shoulder panels 16 that are chamfered in the circumferential direction, etc. A depression is formed in parallel at the central angular position. Further, a shoulder column portion 17 is left between the adjacent shoulder panels 16.
The relative positions of the six decompression absorption panels 12 and the five shoulder panels 16 are not particularly limited, but in this embodiment, as seen in the front view of FIG. In addition, the position where one decompression absorption panel 12 is disposed and the position of one shoulder panel 16 are aligned with each other at the front face of the housing 1.

ここで、図3は図1中のA−A線に沿って示す肩部近傍の縦断面図であるがこの図に示されるように、陥没形成される肩パネル16の縦断面において、この肩パネル16の下端部における段部15の段差D2を上端部の段差D1に比較して大きくしている。このように段部15の段差を構成することにより、減圧時における肩パネル16の陥没変形を段差の大きな下端部から上端部に向けてスムーズに進行させることができる。   Here, FIG. 3 is a longitudinal sectional view of the vicinity of the shoulder portion taken along the line AA in FIG. 1. As shown in FIG. The step D2 of the step 15 at the lower end of the panel 16 is made larger than the step D1 of the upper end. By configuring the step 15 in this manner, the depression deformation of the shoulder panel 16 during decompression can smoothly proceed from the lower end having a large step toward the upper end.

図4、5は上記実施例の壜体1と比較するために用意した比較例の壜体31を示すものであり、図4は正面図、図5は平面図である。この壜体31は肩パネル16を形成していない点を除いて、図1に示される実施例の壜体1と同様な形状をしている。   4 and 5 show a casing 31 of a comparative example prepared for comparison with the casing 1 of the above embodiment. FIG. 4 is a front view and FIG. 5 is a plan view. The casing 31 has the same shape as the casing 1 of the embodiment shown in FIG. 1 except that the shoulder panel 16 is not formed.

次に、これら実施例と比較例の丸形壜体について、90℃の内容液を充填後、冷却して減圧状態としてその変形状態をみた。
その結果、肩パネル16が陥没形成されていない図4、5の比較例の壜体31では、図4、5中、ハッチングで示される三角形状あるいは台形状の形状をした5箇所の領域F部分で、残存柱部Pを残存形成しながら肩部3の周壁が陥没変形し、外観不良となった。(図中、5つの領域F部分の形状は簡便的に同様な形状としているが、実際にはそれぞれその大きさは大、小様々で、また歪な形になる。)
また、この陥没変形した領域Fの最も陥没した部分は図中に示されるように折曲り部BLとなり、これら5つの折曲り部BLにより肩部3の周壁が、平面図でみると図5に示されるように5角形状になった。さらに減圧度が大きな場合にはこれら折曲り部BLは陥没状に塑性変形し、元の形状に復帰できなくなってしまう。
Next, with respect to the round casings of these examples and comparative examples, after filling the content liquid at 90 ° C., it was cooled and the deformation state was seen as a reduced pressure state.
As a result, in the case 31 of the comparative example of FIGS. 4 and 5 in which the shoulder panel 16 is not depressed, the five regions F in the triangular or trapezoidal shape shown by hatching in FIGS. As a result, the peripheral wall of the shoulder portion 3 was deformed while the remaining pillar portion P was formed, resulting in poor appearance. (In the figure, the shapes of the five regions F are simply the same, but in reality the sizes are large, small, and distorted.)
Further, the most depressed portion of the depressed region F is a bent portion BL as shown in the figure, and the peripheral wall of the shoulder portion 3 is seen in a plan view by the five bent portions BL in FIG. As shown, it became a pentagon. Further, when the degree of decompression is large, these bent portions BL are plastically deformed in a depressed shape and cannot be restored to the original shape.

一方、実施例の壜体1では、肩パネル16の作用効果が発揮され、減圧度が大きくなっても肩部3の周壁における陥没変形をスムーズにまた良好な外観を保持しながら進行させて安定化させることができ、
この肩パネル16の陥没変形により減圧吸収パネル12の減圧吸収機能の不足を補完する機能を発揮させることができ、肩部3の周壁における歪な変形や、塑性変形を効果的に抑制することができ、その結果、実施例の壜体1は壜体1全体として十分な減圧吸収機能が発揮されるものであった。
ここで、図1〜3に示す実施例の壜体1の肩パネル16の形状は、図4、5に示される領域Fの形状に類似的になるようにして設定したものである。
On the other hand, in the case 1 of the embodiment, the effect of the shoulder panel 16 is exhibited, and even if the degree of decompression increases, the depression deformation on the peripheral wall of the shoulder portion 3 proceeds smoothly while maintaining a good appearance and is stable. Can be
The depression deformation of the shoulder panel 16 can exhibit the function of complementing the shortage of the decompression absorption function of the decompression absorption panel 12, and can effectively suppress distortion deformation and plastic deformation in the peripheral wall of the shoulder portion 3. As a result, the casing 1 of the example exhibited a sufficient vacuum absorbing function as the casing 1 as a whole.
Here, the shape of the shoulder panel 16 of the housing 1 of the embodiment shown in FIGS. 1 to 3 is set so as to be similar to the shape of the region F shown in FIGS.

次に、図6は本発明の合成樹脂製丸形壜体の第2実施例を示すものであり、底部5に陥没凹部22を形成し、この陥没凹部22を減圧吸収機能部とした例である。
この壜体1は容量が280mlのPET樹脂製の2軸延伸ブロー成形品であり、口筒部2と肩部3の形状は肩パネル16の形状や配設態様も含めて図1に示される第1実施例の壜体と同様な形状である。
Next, FIG. 6 shows a second embodiment of the synthetic resin round casing of the present invention. In this example, a recessed portion 22 is formed in the bottom portion 5 and the recessed portion 22 is used as a vacuum absorbing function portion. is there.
This casing 1 is a biaxial stretch blow-molded product made of PET resin having a capacity of 280 ml, and the shapes of the mouth tube portion 2 and the shoulder portion 3 are shown in FIG. The shape is the same as that of the first embodiment.

円筒状の胴部4には面剛性と座屈強度を高くする手段の一つとして3ケの周溝リブ8を形成し、胴部4を高い形状保形性を有するものとしている。そして、この胴部4の下端には底部5が連設されている。
この底部5の底面の周縁部には接地のための環状平坦部21が配設されおり、この環状平坦部21の内側には、底面壁を上方、内部方向に陥没させて形成した陥没凹部22を配設するようにしている。
The cylindrical body 4 is formed with three circumferential groove ribs 8 as one means for increasing the surface rigidity and buckling strength, and the body 4 has a high shape retention. A bottom 5 is connected to the lower end of the body 4.
An annular flat portion 21 for grounding is disposed on the peripheral edge of the bottom surface of the bottom portion 5, and a recessed recess 22 is formed inside the annular flat portion 21 by recessing the bottom wall upward and inward. Is arranged.

本実施例の壜体1では内部の減圧度が大きくなっていくと、図中二点鎖線で示されるように、陥没凹部22が、さらに陥没状に上方変位して減圧吸収機能が発揮されるが、この陥没凹部22による減圧吸収機能が十分でない場合にも、第1実施例の壜体と同様に、肩パネル16により減圧吸収機能の不足を補完する機能が発揮され、肩部3の周壁における歪な変形や、塑性変形を効果的に抑制することができ、その結果、壜体1全体として十分な減圧吸収機能が発揮されるものであった。   In the case 1 of the present embodiment, when the internal pressure reduction degree increases, as shown by a two-dot chain line in the figure, the depressed concave portion 22 is further displaced upward in a depressed shape, and the reduced pressure absorption function is exhibited. However, even when the reduced pressure absorption function by the depressed recess 22 is not sufficient, the function of complementing the lack of the reduced pressure absorption function is exhibited by the shoulder panel 16 as in the case of the first embodiment. Distortion deformation and plastic deformation can be effectively suppressed, and as a result, the casing 1 as a whole exhibits a sufficient reduced pressure absorption function.

以上、実施例に沿って本願発明の実施形態とその作用効果について説明したが、本願発明はこの実施例に限定されるものではない。
たとえば、肩パネルの形状は三角形状の他に、上方に向かって縮幅すると云う範疇の中で、台形状等の他の形状とすることができ、その大きさについても角部の形状等を考慮して適宜設定することができる。
また、本実施例では280mlと比較的小型の壜体について説明したが、薄肉化への要請が強い中、500ml、1リッター程度の壜体においても十分その作用効果が発揮される。
As mentioned above, although embodiment of this invention and its effect were demonstrated along the Example, this invention is not limited to this Example.
For example, the shape of the shoulder panel can be other shapes such as a trapezoidal shape within the category of reducing the width upward in addition to the triangular shape. It can be set as appropriate in consideration.
Further, in this embodiment, a relatively small casing of 280 ml has been described. However, while there is a strong demand for thinning, a 500 ml, 1 liter casing is sufficiently effective.

以上説明したように、本発明の合成樹脂製丸型壜体は、周壁を薄肉化するなかで、肩パネルに胴部や底部における減圧吸収機能の不足を補完する機能を発揮させて、小型ボトルにおいても、壜体全体として高温充填用途で必要とされる減圧吸収機能が十分に発揮されるものであり、PETボトル等の分野における幅広い用途展開が期待される。
As described above, the synthetic resin round casing of the present invention allows the shoulder panel to exhibit the function of complementing the lack of the reduced pressure absorption function at the trunk and the bottom while reducing the thickness of the peripheral wall. In this case, the vacuum absorption function required for high-temperature filling applications as a whole is fully exhibited, and a wide range of application development in fields such as PET bottles is expected.

1 ;壜体
2 ;口筒部
3 ;肩部
4 ;胴部
5 ;底部
6 ;周溝
7 ;短円筒部
8 ;周溝
11;段部
12;減圧吸収パネル
13;柱部
15;段部
16;肩パネル
17;肩柱部
21;環状平坦部
22;陥没凹部
31;壜体
101;壜体
102;口筒部
103;肩部
104;胴部
105;底部
106;周溝
111;段部
112;減圧吸収パネル
113;柱部
F ;陥没領域
BL;折曲り部
P ;残存柱部
DESCRIPTION OF SYMBOLS 1; Housing 2; Mouth part 3; Shoulder part 4; Trunk part 5; Bottom part 6; Circumferential groove 7; Short cylindrical part 8; Peripheral groove 11; Step part 12; 16; shoulder panel 17; shoulder column portion 21; annular flat portion 22; depressed recess 31; housing 101; housing 102; mouth tube portion 103; shoulder portion 104; trunk portion 105; 112; Vacuum absorbing panel 113; Column
F: Depression area BL: Bending part P: Remaining pillar part

Claims (3)

口筒部(2)、テーパー筒状の肩部(3)、円筒状の胴部(4)、そして底部(5)を有し、前記胴部(4)と底部(5)の少なくとも一方に壜体内の減圧時に減圧吸収機能を発揮する減圧吸収機能部を配設した丸形壜体において、
前記肩部(3)の周壁に、周囲を段部(15)で囲うようにして上方に向かって縮幅する角取りした三角形状の肩パネル(16)を5ケ、周方向に並列状に陥没形成し、隣接する前記肩パネル(16)の間に肩柱部(17)を残存形成し、
陥没形成される肩パネル(16)の縦断面において、該肩パネル(16)の下端部における段部(15)の段差を上端部に比較して大きくした
ことを特徴とする合成樹脂製丸形壜体。
It has a mouth tube (2), a tapered tube shoulder (3), a cylindrical body (4), and a bottom (5), and at least one of the body (4) and the bottom (5). In a round housing with a reduced pressure absorption function part that exerts a reduced pressure absorption function during decompression in the housing,
The peripheral wall of the shoulder portion (3), surrounding the stepped portion (15) so as to surround at 5 shoulder panels (16) of the chamfering the triangular shape width decreasing upward and Ke, parallel form in the circumferential direction Forming a depression, forming a shoulder column portion (17) between the adjacent shoulder panels (16),
In the longitudinal section of the shoulder panel (16) formed in the depression, a round shape made of synthetic resin, characterized in that the step of the step (15) at the lower end of the shoulder panel (16) is larger than the upper end. Body.
胴部(4)の周壁の所定の高さ範囲に、周囲を段部(11)で囲うようにして減圧吸収パネル(12)を複数、周方向に並列状に陥没形成し、該減圧吸収パネル(12)を減圧吸収機能部とした請求項1記載の合成樹脂製丸形壜体。 A plurality of reduced pressure absorption panels (12) are formed in a predetermined height range of the peripheral wall of the trunk portion (4) so as to surround the periphery with a stepped portion (11), and are formed in parallel in the circumferential direction. (12) a reduced pressure-absorbing function unit and claims 1 Symbol placement synthetic resin round bottle body. 底部(5)に、底面壁を上方、内部方向に陥没させて形成した陥没凹部(22)を配設し、該陥没凹部(22)を減圧吸収機能部とした請求項1記載の合成樹脂製丸形壜体。
The bottom (5), the bottom wall upwardly, and disposed recessed recess (22) which is formed by recessed inwardly, synthetic resins of claim 1 Symbol mounting the該陥deaths recess (22) was vacuum absorption function portion Round frame.
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