JP7093120B2 - Packaging container lid and its molding method - Google Patents

Packaging container lid and its molding method Download PDF

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JP7093120B2
JP7093120B2 JP2019221964A JP2019221964A JP7093120B2 JP 7093120 B2 JP7093120 B2 JP 7093120B2 JP 2019221964 A JP2019221964 A JP 2019221964A JP 2019221964 A JP2019221964 A JP 2019221964A JP 7093120 B2 JP7093120 B2 JP 7093120B2
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lid
flat surface
top plate
side wall
sheet material
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和馬 込山
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シーピー化成株式会社
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本発明は、合成樹脂シートを成形して得られる成形容器の蓋体に係り、蓋自体の剛性を保持したうえで内容物の視認性を向上することができる構成に関するものである。 The present invention relates to a lid of a molded container obtained by molding a synthetic resin sheet, and relates to a configuration capable of improving the visibility of the contents while maintaining the rigidity of the lid itself.

スーパーマーケットやデパートなどで広く利用されているシート成形からなる食品の包装用容器には、その容器に収納する食材を保護するとともに、容器を積み重ねて陳列する際でも耐荷重性が重視されるため、容器本体のみならず蓋体にも剛性が求められる。一般的に包装用蓋体の剛性を向上させるためには、蓋体の天面、側壁に補強用のリブを付設することが多い。しかしながら、これらの箇所にリブを付設すると、容器内の食材の視認性が低下するという問題がある。したがって、食材の視認性を向上すると同時に蓋体の剛性を確保するという背反する課題を同時に解決する手段が求められている。 Sheet-molded food packaging containers, which are widely used in supermarkets and department stores, protect the foodstuffs stored in the containers and place importance on load resistance when stacking and displaying the containers. Rigidity is required not only for the container body but also for the lid. Generally, in order to improve the rigidity of the packaging lid, reinforcing ribs are often attached to the top surface and side walls of the lid. However, if ribs are attached to these portions, there is a problem that the visibility of the foodstuff in the container is lowered. Therefore, there is a need for a means for simultaneously solving the contradictory problems of improving the visibility of foodstuffs and at the same time ensuring the rigidity of the lid.

特開2012-30887号公報Japanese Unexamined Patent Publication No. 2012-30887 特開2014-141270号公報Japanese Unexamined Patent Publication No. 2014-141270

特許文献1に記載の発明では、蓋体の剛性を維持するための一手段として側壁部に複数の垂直方向のリブが形成されている。しかしながらリブが設けられることによって側面方向からの視認性に劣るという課題がある。特許文献2に記載の発明では、同様に蓋体の側壁部にリブが設けられているので、側面方向からの視認性に劣っている。なお、この種の蓋体が用いられる容器には、例えば刺身や惣菜など、視覚に訴えて購買意欲を喚起することが重要である一面があるとともに、内容物が入った容器を複数段重ねて陳列することもあるので、側面、すなわち側壁からの視認性は重要である。 In the invention described in Patent Document 1, a plurality of vertical ribs are formed on the side wall portion as one means for maintaining the rigidity of the lid. However, there is a problem that the visibility from the side surface direction is inferior due to the provision of the rib. In the invention described in Patent Document 2, since the rib is similarly provided on the side wall portion of the lid, the visibility from the side surface direction is inferior. In addition, the container in which this type of lid is used has one aspect that it is important to visually appeal to the customer, such as sashimi and prepared foods, and to motivate the purchase. Visibility from the side, that is, the side wall, is important because it may be displayed.

本発明は、上述した課題に鑑みなされたもので、その目的とするところは、剛性を保持しつつ視認性の向上を図った包装用容器の蓋体を提供することにある。 The present invention has been made in view of the above-mentioned problems, and an object of the present invention is to provide a lid of a packaging container that maintains rigidity and improves visibility.

上述した目的を達成するために本発明では、熱可塑性樹脂製のシート材を成型してなる包装用容器の蓋体において、平面視が多角形である天板部と、該天板部の周囲に連設される側壁部とを備え、前記天板部は、平面で構成され、前記側壁部は、前記天板部及び隣合う側壁部と直線状の連設部を介して連設する平面部を有し、前記天板部と前記側壁部とがなす二面角θはθ>90°であり、前記連設部における表面側の曲率半径RはR≦0.6mmとする手段を用いた。 In order to achieve the above-mentioned object, in the present invention, in the lid of the packaging container formed by molding the sheet material made of thermoplastic resin, the top plate portion having a polygonal plan view and the periphery of the top plate portion. The top plate portion is composed of a flat surface, and the side wall portion is connected to the top plate portion and the adjacent side wall portion via a linear continuous portion. A means is used in which the dihedral angle θ formed by the top plate portion and the side wall portion is θ> 90 °, and the radius of curvature R on the surface side of the continuous portion is R ≦ 0.6 mm. board.

上記手段によれば、天板部が平面で構成され、且つ、側壁部の天板部に連設する部分が平面部で構成されることで、ガラス張りのように内容物の視認性が極めて良好である。しかも、側壁部が天板部をほぼ垂直に支持しつつ、各連設部は極めて小さい曲率半径の曲面で形成されるので、連設部を曲率半径が0.6mmを超える比較的緩やかなカーブに形成した場合と比べて、曲げや捻れなどに対する耐力が高まり、リブによらずとも、剛性を保持することができる。この点、0.6mmという数値は、本発明の作用効果を奏することができる限りにおいて、多少の誤差は許容する。なお、天板部は平面視で長方形や正方形であることが典型的であるが、それ以外の多角形であってもよい。また、連設部が直線状であるとは、連設部にリブ等の変形部分がないことを意味する。さらに、連設部の表面側とは、容器外側の外面側を意味する。これに対して、連設部の裏面側、即ち容器内側の内面側は、当然、表面側の曲率半径よりも小さくなるが、具体的な数値については、用いるシート材の厚みや、金型の当該連設部に接するエッジ形状等に依存するため、特定しない。 According to the above means, the top plate portion is composed of a flat surface, and the portion connected to the top plate portion of the side wall portion is composed of a flat surface portion, so that the visibility of the contents is extremely good as if it were covered with glass. Is. Moreover, since the side wall portion supports the top plate portion almost vertically and each continuous portion is formed by a curved surface having an extremely small radius of curvature, the continuous portion has a relatively gentle curve with a radius of curvature exceeding 0.6 mm. Compared with the case where it is formed in, the resistance to bending and twisting is increased, and the rigidity can be maintained without using ribs. In this respect, the numerical value of 0.6 mm allows some error as long as the action and effect of the present invention can be achieved. The top plate portion is typically a rectangle or a square in a plan view, but may be a polygon other than that. Further, the fact that the continuous portion is linear means that there is no deformed portion such as a rib in the continuous portion. Further, the surface side of the continuous portion means the outer surface side of the outside of the container. On the other hand, the back surface side of the continuous portion, that is, the inner surface side inside the container is naturally smaller than the radius of curvature on the front surface side, but the specific numerical values are the thickness of the sheet material used and the mold. Since it depends on the edge shape in contact with the continuous portion, it is not specified.

また、上記手段では、天板部と側壁部とがなす二面角θは90°超に設定する。本来、90°ちょうどが垂直方向の耐荷重が最も高く、力学的に好ましいが、そうすると成型後の蓋体を複数枚積層しにくく、また無理に積層した場合は蓋体を分離しにくくなるためである。ただし、二面角θをあまり大きな角度とすると、内容物を収容した包装用容器を複数個、積み重ねた場合に、上段の重みによって側壁部が外方に拡開して、蓋体がひしゃげるおそれがあるため、その最大角度はせいぜい105°とする。 Further, in the above means, the dihedral angle θ formed by the top plate portion and the side wall portion is set to more than 90 °. Originally, 90 ° has the highest load capacity in the vertical direction and is mechanically preferable, but this makes it difficult to stack multiple molded lids, and it is difficult to separate the lids if they are forcibly stacked. be. However, if the dihedral angle θ is too large, when a plurality of packaging containers containing the contents are stacked, the side wall portion expands outward due to the weight of the upper stage, and the lid is squeezed. Since there is a risk, the maximum angle is 105 ° at most.

一方、蓋体を成型するシート材については、熱可塑性ポリエステル系樹脂が好適である。熱可塑性ポリエステル系樹脂としては、PBT樹脂(ポリブチレンテレフタレート樹脂)、PEN樹脂(ポリエチレンナフタレート樹脂)、PET樹脂(ポリエチレンテレフタレート樹脂)、PETG樹脂(ポリエステルにエチレングリコールの一部をシクロヘキサンジメタノールで代替した変性ポリエステル樹脂)、SPG樹脂(ポリエステルにエチレングリコールの一部をスピログリコールで代替した変性ポリエステス樹脂)などを挙げることができる。その中でも、作業性、成型性、コストに優れたPET樹脂を選択することが好ましい。 On the other hand, as the sheet material for molding the lid, a thermoplastic polyester resin is suitable. As the thermoplastic polyester resin, PBT resin (polybutylene terephthalate resin), PEN resin (polyethylene naphthalate resin), PET resin (polyethylene terephthalate resin), PETG resin (a part of ethylene glycol in polyester is replaced with cyclohexanedimethanol). Modified polyester resin), SPG resin (modified polyestes resin in which a part of ethylene glycol is replaced with spiroglycol in polyester) and the like can be mentioned. Among them, it is preferable to select a PET resin having excellent workability, moldability, and cost.

そして、シート材がPET樹脂である場合、上述した手段をより確実に達成するためには、前記PET樹脂のIV値(JIS K7367-1に準拠)が0.70~0.85であり、前記シート材の水分率(JIS K0113に準拠したカールフィッシャー電量滴定法)が1500PPM未満であり、前記シート材の厚みが0.10~0.80mmであることが、より好ましいものである。 When the sheet material is a PET resin, the IV value of the PET resin (based on JIS K7367-1) is 0.70 to 0.85 in order to more reliably achieve the above-mentioned means. It is more preferable that the moisture content of the sheet material (curl Fisher coulometric titration method based on JIS K0113) is less than 1500 PPM and the thickness of the sheet material is 0.10 to 0.80 mm.

さらに、シート材の厚みは0.20~0.50mmであることが好ましく、当該厚みのシート材であれば、剛性の保持と視認性をより高度に両立することができる。 Further, the thickness of the sheet material is preferably 0.20 to 0.50 mm, and if the sheet material has the thickness, it is possible to achieve both the maintenance of rigidity and the visibility at a higher level.

また、本発明の蓋体を成型する方法は、上述した手段をより満足に実行するために、シート材を雄型側に真空引きする真空成型法であることが好ましい。ただし、圧縮空気によってシート材を金型に密着させる圧空成型法を採用してもよく、真空成型法と併用することも可能である。 Further, the method for molding the lid of the present invention is preferably a vacuum forming method in which the sheet material is evacuated to the male mold side in order to carry out the above-mentioned means more satisfactorily. However, a pressure forming method in which the sheet material is brought into close contact with the mold by compressed air may be adopted, and it can also be used in combination with the vacuum forming method.

本発明によれば、天板部と側壁部が平面構成でありながら、剛性を保持しつつ、内容物の視認性を阻害する部分にリブが形成されないので、当該リブが付設された蓋体よりも視認性を大幅に向上させることができる。 According to the present invention, although the top plate portion and the side wall portion have a planar structure, ribs are not formed in the portions that hinder the visibility of the contents while maintaining the rigidity. The visibility can be greatly improved.

本発明の一実施形態に係る包装用容器の斜視図Perspective view of a packaging container according to an embodiment of the present invention. 同、蓋体の平面図Same as above, plan view of the lid 同、蓋体の側面図Same, side view of the lid 図2におけるA-A線端面図AA line end view in FIG. 図2におけるB-B線端面図BB line end view in FIG. 本発明の成型方法を示す工程図Process diagram showing the molding method of this invention

以下、本発明の好ましい実施の形態を添付した図面に従って説明する。図1は、本発明の一実施形態に係る包装用容器の斜視図であり、蓋体10と容器本体20を分離して示したものである。一方、図2・3は、蓋体10のみを示した平面図と側面図である。蓋体10は容器本体20の開口縁部に外側から装着するフランジ部11を有し、さらに、フランジ部11の側面には本体嵌合部21に嵌合する凹状の蓋体嵌合部12を有して、容器本体20に収容した内容物を保護する部分を、天板部1と、その周囲に連設される側壁部2とで構成している。 Hereinafter, preferred embodiments of the present invention will be described with reference to the accompanying drawings. FIG. 1 is a perspective view of a packaging container according to an embodiment of the present invention, showing the lid 10 and the container body 20 separately. On the other hand, FIGS. 2 and 3 are a plan view and a side view showing only the lid 10. The lid 10 has a flange portion 11 to be attached to the opening edge of the container body 20 from the outside, and a concave lid fitting portion 12 to be fitted to the main body fitting portion 21 is further provided on the side surface of the flange portion 11. The portion that protects the contents housed in the container main body 20 is composed of a top plate portion 1 and a side wall portion 2 that is continuously provided around the top plate portion 1.

天板部1は全体が平面で構成される平面視長方形である。そして、当該天板部1の四辺それぞれには、連設部3を介して側壁部2が連設している。連設部3それぞれは天板部1の四辺に沿った水平方向の直線状であるが、全体的に見れば、天板部1と同じ平面視長方形をなす。 The top plate portion 1 is a rectangular shape in a plan view, which is entirely composed of a flat surface. A side wall portion 2 is continuously provided on each of the four sides of the top plate portion 1 via the continuous portion 3. Each of the continuous portions 3 is a straight line in the horizontal direction along the four sides of the top plate portion 1, but as a whole, it forms the same rectangular shape in a plan view as the top plate portion 1.

側壁部2は、この実施形態の場合、図3によく示されるように、上段平面部4と下段平面部5を境界部6を介した二段構成としている。このうち上段平面部4は、上述した水平方向の連設部3を介して天板部1に連設されつつ、隣合う上段平面部4同士は上下方向に直線状をなす連設部7で連設されている。一方、下段平面部5は境界部6を介して上段平面部4と連設しつつ、隣合う下段平面部5同士は三角形状の面取り部8を介して連設している。ここで、上段平面部4と下段平面部5は、フランジ部11側から天板部1側に向かう立ち上がり角度が同一であって、いわゆる面一であるから、実際には図示のように直線状の境界部6は存在しないのであるが、隣合う同士の連設構成が、上段平面部4では直線状の連設部7、下段平面部5では三角形状の面取り部8という違いがあるため、説明の便宜上、境界部6とした。 In the case of this embodiment, the side wall portion 2 has a two-stage configuration in which the upper flat surface portion 4 and the lower flat surface portion 5 are interposed via the boundary portion 6, as is often shown in FIG. Of these, the upper flat surface portion 4 is connected to the top plate portion 1 via the above-mentioned horizontal continuous connection portion 3, and the adjacent upper flat surface portions 4 are connected to each other in a vertical linear shape. It is installed continuously. On the other hand, the lower flat surface portion 5 is connected to the upper flat surface portion 4 via the boundary portion 6, and the adjacent lower flat surface portions 5 are connected to each other via the triangular chamfered portion 8. Here, since the upper flat surface portion 4 and the lower flat surface portion 5 have the same rising angle from the flange portion 11 side to the top plate portion 1 side and are so-called flush with each other, they are actually linear as shown in the drawing. Although the boundary portion 6 of the above does not exist, there is a difference in the continuous configuration of adjacent to each other, that is, the linear continuous portion 7 in the upper flat surface portion 4 and the triangular chamfered portion 8 in the lower flat surface portion 5. For convenience of explanation, the boundary portion 6 is used.

なお、側壁部2には、下段平面部5とフランジ部11にまたがって、容器外側に膨出するスタック用突部9を形成している。これによって蓋体10同士を重ね合わせたときに、蓋体同士が完全に嵌り込んでしまうことを防止し、内容物(食材等)を収容した容器本体20への閉蓋作業時に、蓋体10を一つずつ取り出しやすくしている。 The side wall portion 2 is formed with a stacking protrusion 9 that bulges out of the container, straddling the lower flat surface portion 5 and the flange portion 11. This prevents the lids from completely fitting into each other when the lids 10 are overlapped with each other, and when the lid 10 is closed to the container body 20 containing the contents (foodstuffs, etc.). It is easy to take out one by one.

上記蓋体10の特徴的構成を、図4・5にしたがって説明すると、まず、天板部1と側壁部2(上段平面部4)とがなす二面角は、蓋体10の長辺側、短辺側とも90°超、105°以下に設定している。具体的には、長辺側の二面角θ1は、図4に示すように、97.0°に設定しており、短辺側については図示を省略するが、やはり90°超、105°以下に設定している。また、蓋体10のコーナー部における天板部1と連設部7とのなす角θ2は、図5に示すように、100.0°に設定している。なお、長辺側と短辺側の二組の二面角は、上述した範囲であれば、異なる角度に設定することができる。このように角度を異にすることで、内容物を収容した容器を陳列した際に、角度が同一のものより陳列の見栄えに変化を持たせることができ、顧客吸引性を高めることができる。 Explaining the characteristic configuration of the lid 10 according to FIGS. 4 and 5, first, the dihedral angle formed by the top plate 1 and the side wall 2 (upper plane portion 4) is the long side of the lid 10. Both the short side and the short side are set to more than 90 ° and 105 ° or less. Specifically, the dihedral angle θ1 on the long side is set to 97.0 ° as shown in FIG. 4, and the short side is not shown, but it is still over 90 ° and 105 °. It is set as follows. Further, the angle θ2 formed by the top plate portion 1 and the continuous portion 7 at the corner portion of the lid 10 is set to 100.0 ° as shown in FIG. The two sets of dihedral angles on the long side and the short side can be set to different angles within the above range. By making the angles different in this way, when the containers containing the contents are displayed, the appearance of the display can be changed as compared with the ones having the same angle, and the customer attraction can be enhanced.

さらに、天板部1と側壁部2(上段平面部4)との連設部3、及び側壁部2(上段平面部4)同士の連設部7において、その表面側の曲率半径Rは全て0.4mmに設定している。この数値も一例であり、より小さく設定することが好ましいが、0.6mm以下であれば、本発明の目的は達成することができる。 Further, in the continuous portion 3 between the top plate portion 1 and the side wall portion 2 (upper flat surface portion 4) and the continuous portion 7 between the side wall portions 2 (upper flat surface portion 4), the radius of curvature R on the surface side thereof is all. It is set to 0.4 mm. This numerical value is also an example, and it is preferable to set it smaller, but if it is 0.6 mm or less, the object of the present invention can be achieved.

天板部1と側壁部2とを上述した構成とすることで、剛性を保持しつつ、視認性が良好な蓋体10となる。つまり、剛性については、天板部1を側壁部2によってほぼ垂直に支持するため、耐荷重が高まり、連設部3・7を曲率半径が極めて小さい曲面状に形成することで、曲げや捻りに対する耐力が高まる。 By forming the top plate portion 1 and the side wall portion 2 as described above, the lid 10 has good visibility while maintaining rigidity. That is, with regard to rigidity, since the top plate portion 1 is supported substantially vertically by the side wall portion 2, the load bearing capacity is increased, and the continuous portions 3.7 are formed into a curved surface having an extremely small radius of curvature, whereby bending and twisting are performed. Increases resistance to.

視認性については、天板部1は全面が平面であり、側壁部2も、上段平面部4が全面的に平面であって、下段平面部5ではスタック用突部9を除けば平面で構成されているため、真上や斜め上からはもちろん、真横からも、内容物を歪みがない状態で鮮明に見ることができる。 Regarding visibility, the top plate portion 1 is entirely flat, the side wall portion 2 is also entirely flat in the upper flat portion 4, and the lower flat portion 5 is composed of flat surfaces except for the stacking protrusion 9. Therefore, the contents can be clearly seen without distortion not only from directly above or diagonally above, but also from the side.

なお、蓋体10は、無色透明であることが、最も視認性を高めることができるが、色彩や透明度について限定するものではない。また、成型素材、即ちシート材については、従来公知の熱可塑性樹脂から選択することができるが、PBT樹脂、PEN樹脂、PET樹脂、PETG樹脂、SPG樹脂などの熱可塑性ポリエステル系樹脂が好適である。とりわけ、作業性、成型性、コストに優れたPET樹脂を選択することが好ましい。 It should be noted that the colorless and transparent lid 10 can maximize visibility, but is not limited in terms of color and transparency. Further, the molding material, that is, the sheet material can be selected from conventionally known thermoplastic resins, but thermoplastic polyester resins such as PBT resin, PEN resin, PET resin, PETG resin, and SPG resin are preferable. .. In particular, it is preferable to select a PET resin having excellent workability, moldability, and cost.

さらに、PET樹脂製のシート材を素材として蓋体10を成型する場合は、IV値(JIS K7367-1に準拠)が0.70~0.85のPET樹脂により、水分率(JIS K0113に準拠したカールフィッシャー電量滴定法)が1500PPM未満で、厚みが0.10~0.80mmのシート材を用いることが好ましい。なお、シート厚は0.20~0.50mmの範囲であれば、上述した剛性と視認性をより高度な次元で両立することができる。 Further, when the lid 10 is molded from a PET resin sheet material, a PET resin having an IV value (based on JIS K7367-1) of 0.70 to 0.85 is used to obtain a moisture content (based on JIS K0113). It is preferable to use a sheet material having a curl Fisher coulometric titration method) of less than 1500 PPM and a thickness of 0.10 to 0.80 mm. If the sheet thickness is in the range of 0.20 to 0.50 mm, the above-mentioned rigidity and visibility can be achieved at a higher level.

次に、上記蓋体10の成型方法を、図6にしたがって説明する。同図の(a)~(e)は、蓋体10の成型工程を示す概念図であり、まず、上述した熱可塑性樹脂製のシート材30を両面ヒータ31により加熱して軟化させる(図6(a))。そして、軟化状態にあるシート材30を金型(雄型)32とプラグ33の間に搬送し(図6(b))、金型32を上昇させて、その成型面をシート材30に押し当てる(図6(c))。この状態で、シート材30を金型32との間で密封するようにプラグ33を作動させ、金型32に貫通して設けた多数の吸引孔32aを通じて真空引きを行う(図6(d))。そして、金型32とプラグ33を元の位置に戻して離型し(図6(e))、その後、余剰部をカットし、トリミングを行うことで蓋体10を得ることができる。 Next, the molding method of the lid 10 will be described with reference to FIG. (A) to (e) of the figure are conceptual diagrams showing the molding process of the lid body 10. First, the above-mentioned thermoplastic resin sheet material 30 is heated by a double-sided heater 31 to be softened (FIG. 6). (A)). Then, the softened sheet material 30 is conveyed between the mold (male mold) 32 and the plug 33 (FIG. 6 (b)), the mold 32 is raised, and the molded surface thereof is pushed against the sheet material 30. Hit (Fig. 6 (c)). In this state, the plug 33 is operated so as to seal the sheet material 30 with the mold 32, and evacuation is performed through a large number of suction holes 32a provided through the mold 32 (FIG. 6 (d)). ). Then, the mold 32 and the plug 33 are returned to their original positions and released from the mold (FIG. 6 (e)), and then the excess portion is cut and trimmed to obtain the lid 10.

ここでは、蓋体10の成型方法として真空成型法を説明したが、軟化したシート材を圧縮空気によって金型に密着させる圧空成型法を採用してもよく、これら真空成型法と圧空成型法を同時に採用することも可能である。 Here, the vacuum forming method has been described as the molding method of the lid 10, but a pressure forming method in which the softened sheet material is brought into close contact with the mold by compressed air may be adopted, and these vacuum forming methods and the pressure forming methods may be used. It is also possible to adopt at the same time.

1 天板部
2 側壁部
3・7 連設部
4 上段平面部
5 下段平面部
6 境界部
8 面取り部
9 スタック用突部
10 蓋体
20 容器本体
30 シート材
31 ヒータ
32 金型(雄型)
32a 吸引孔
33 プラグ
1 Top plate part 2 Side wall part 3.7 Continuous part 4 Upper flat part 5 Lower flat part 6 Boundary part 8 Chamfering part 9 Stacking protrusion 10 Lid 20 Container body 30 Sheet material 31 Heater 32 Mold (male type)
32a Suction hole 33 plug

Claims (4)

熱可塑性樹脂製のシート材を成型してなる包装用容器の蓋体において、
平面視が多角形である天板部と、
該天板部の周囲に連設される側壁部と
該側壁部の周囲に形成されるフランジ部とを備え
前記天板部は、平面で構成され、
前記側壁部は、前記天板部及び隣合う側壁部と直線状の連設部を介して連設する平面部を有し、
前記平面部は、隣合う同士が上下方向に直線状の連設部を介して連設される上段平面部と、隣合う同士が前記上段平面部同士の前記連設部の下端と頂点が連続する三角形状の面取り部を介して連設される下段平面部とを有し、
前記上段平面部と前記下段平面部とは、前記フランジ部側から前記天板部に向かう立ち上がり角度を同一として面一の平面を構成し、
前記天板部と前記側壁部とがなす二面角θは90°<θ≦105°であり、
前記連設部における表面側の曲率半径RはR≦0.6mmである
ことを特徴とした包装用容器の蓋体。
In the lid of a packaging container made by molding a sheet material made of thermoplastic resin,
The top plate, which has a polygonal view in plan view,
A side wall portion continuously provided around the top plate portion and a side wall portion
A flange portion formed around the side wall portion is provided .
The top plate portion is composed of a flat surface.
The side wall portion has a flat surface portion that is continuously connected to the top plate portion and the adjacent side wall portion via a linear continuous portion.
The flat surface portion has an upper flat surface portion in which adjacent plane portions are continuously connected via a linear continuous portion in the vertical direction, and the lower end and the apex of the continuous flat portion in which the adjacent flat surface portions are connected to each other in the vertical direction. It has a lower flat surface portion that is continuously connected via a triangular chamfered portion.
The upper flat surface portion and the lower flat surface portion form a flush plane with the same rising angle from the flange portion side toward the top plate portion.
The dihedral angle θ formed by the top plate portion and the side wall portion is 90 ° <θ≤105 °.
A lid of a packaging container characterized in that the radius of curvature R on the surface side of the continuous portion is R ≦ 0.6 mm.
シート材は、PET樹脂製であり、
前記PET樹脂のIV値(JIS K7367-1に準拠)は0.70~0.85であり、
前記シート材の水分率(JIS K0113に準拠したカールフィッシャー電量滴定法)が1500PPM未満であり、
前記シート材の厚みが0.10~0.80mmである
請求項記載の包装用容器の蓋体。
The sheet material is made of PET resin and is made of PET resin.
The IV value of the PET resin (based on JIS K7367-1) is 0.70 to 0.85.
The moisture content of the sheet material (Karl Fischer potentiometric titration method based on JIS K0113) is less than 1500 PPM.
The lid of the packaging container according to claim 1 , wherein the thickness of the sheet material is 0.10 to 0.80 mm.
シート材の厚みは0.20~0.50mmである
請求項記載の包装用容器の蓋体。
The lid of the packaging container according to claim 2 , wherein the thickness of the sheet material is 0.20 to 0.50 mm.
請求項1~のうち何れか一項記載の包装用容器の蓋体の成型方法であって、
シート材を雄型側に真空引きする真空成型法である
ことを特徴とした包装用容器の蓋体の成型方法。
The method for molding a lid of a packaging container according to any one of claims 1 to 3 .
A method for molding the lid of a packaging container, which is characterized by a vacuum forming method in which the sheet material is evacuated to the male mold side.
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JP2003231540A (en) 2002-02-08 2003-08-19 Idemitsu Unitech Co Ltd Container
JP2010058838A (en) 2008-09-08 2010-03-18 Cp Kasei Kk Food vessel
JP2014227185A (en) 2013-05-21 2014-12-08 シーピー化成株式会社 Lid for food packaging container
CN203482999U (en) 2013-09-29 2014-03-19 刘越 Lunch box
US20150210442A1 (en) 2014-01-24 2015-07-30 Vegware Limited Food container
JP2019001533A (en) 2017-06-19 2019-01-10 株式会社北新商事 Adhesion method for food container

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