JPH0246610B2 - HIITOSHIIRUYOFUIRUMU - Google Patents

HIITOSHIIRUYOFUIRUMU

Info

Publication number
JPH0246610B2
JPH0246610B2 JP16667086A JP16667086A JPH0246610B2 JP H0246610 B2 JPH0246610 B2 JP H0246610B2 JP 16667086 A JP16667086 A JP 16667086A JP 16667086 A JP16667086 A JP 16667086A JP H0246610 B2 JPH0246610 B2 JP H0246610B2
Authority
JP
Japan
Prior art keywords
styrene
film
sealing
container
heat
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
JP16667086A
Other languages
Japanese (ja)
Other versions
JPS6211747A (en
Inventor
Tsuguo Hasegawa
Takeshi Masui
Kenji Nabeta
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Denka Co Ltd
Original Assignee
Denki Kagaku Kogyo KK
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Denki Kagaku Kogyo KK filed Critical Denki Kagaku Kogyo KK
Priority to JP16667086A priority Critical patent/JPH0246610B2/en
Publication of JPS6211747A publication Critical patent/JPS6211747A/en
Publication of JPH0246610B2 publication Critical patent/JPH0246610B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Landscapes

  • Manufacture Of Macromolecular Shaped Articles (AREA)
  • Laminated Bodies (AREA)
  • Compositions Of Macromolecular Compounds (AREA)

Description

【発明の詳細な説明】[Detailed description of the invention]

(産業上の利用分野) 本発明はヒートシール用のフイルムに関し、特
に、スチレン系樹脂製の容器をヒートシールする
際にシール材として用いられるフイルムに関す
る。 (従来の技術) スチレン系樹脂で造られた容器(以下スチレン
容器と称する)はシールパツクとして、近年乳製
品、菓子、豆腐等の食品包装用に広く利用されて
きている。そして、それら容器のシール用材とし
ては、専らホツトメルト接着剤又は容剤型接着剤
をコーテイングしたアルミニウム箔が使用されて
いるが、シール材の剥離後に容器側に残る接着剤
が食品衛生上の点から問題となつており、アルミ
ニウム箔に代るシール材が望まれている。 (発明が解決しようとする問題点) この点に関し、本出願人は既に、スチレン−ブ
タジエンブロツク共重合体を含むシール材を用い
てスチレン容器をヒートシールする方法について
提案した(特公昭52−46150号公報)。この方法に
依る時は、従来易開封性を有するシール温度条件
巾が極めて狭いとされていたスチレン容器のシー
ル温度条件巾を広くすることが可能となつたが、
この場合でも実用的には末だ充分満足するものと
はいえない。 本発明者等は、更にシール温度条件巾を広く採
ることの出来るシール材に就き研究を行い実用的
にも充分満足し得るシール材として以下に説明す
るフイルムを見出し、本発明を完成するに至つ
た。 (問題点を解決するための手段) すなわち本発明は、エチレン−アクリル酸エス
テル共重合体(A)5〜50wt%と、 スチレン含量10〜50wt%のスチレン−ブタジ
エンブロツク共重合体(B)5〜50wt%及び ポリスチレン及び/又は耐衝撃タイプスチレン
−ブタジエングラフト共重合体(C)10〜80wt%
(但し、スチレンが幹ポリマー)の樹脂組成物か
らなるヒートシール用フイルムである。 次に本発明のエチレン−アクリル酸エステル共
重合体(A)(以下(A)成分と略す)とスチレン含量10
〜50wt%のスチレン−ブタジエンブロツク共重
合体(B)(以下(B)成分という)及びポリスチレン及
び/又は耐衝撃タイプスチレン−ブタジエングラ
フト共重合体(C)(以下(C)成分という)から成るフ
イルムであり、(A)成分は5〜50wt%の範囲であ
り、5wt%末満では易開封性のシール温度条件巾
が狭くなり、50wt%を越えると粘着性が増大し、
ブロツキングを起すと同時に、シール強度自体が
低下する。使用するアクリル酸エステルとして
は、エチルアクリレートが代表的なものとして挙
げられるが、その他のエステルも同様に使用する
ことができる。(A)成分中のアクリル酸エステルの
含有量は5〜35wt%の範囲のものがフイルム強
度の点で好適である。又(B)成分は、5wt%未満で
はフイルム強度で充分なものが得られず、50wt
%を越える時は粘着性が増し、ブロツキングを起
すため好ましくない。さらに(C)成分としてのポリ
スチレン及び/又は耐衝撃タイプスチレン−ブタ
ジエングラフト共重合体が10wt%に満たない時
は、フイルムの粘着性が大となり、一方80wt%
を越えるとシール温度の条件巾が狭くなつてく
る。 この樹組成物から成るヒートシール用フイルム
を用いて、スチレン容器をシールする時は、従来
のシール材を用いる場合に比べ更に易開封性を有
するシール温度条件巾を広く採ることが可能とな
る。 ヒートシールの方法としては通常のヒートシー
ラーの形状、方法で良く、更にインパルスシーラ
ー等による方法が用いられる。 ヒートシールの対象となるスチレン容器の材質
としては一般用ポリスチレン樹脂、ゴム変性ポリ
スチレン樹脂、AS樹脂、ABS樹脂等のスチレン
系樹脂が使用される。 本発明に係るフイルムは、又他のフイルム或い
は、アルミニウム箔と積層として、或いはアルミ
ニウムを蒸着して使用するとことも可能である。 (実施例) 以下更に本発明を、実施例を以つて詳説する。 実施例 表に示す組成範囲で各成分を混合し、インフレ
ーシヨン法により100μm厚のフイルムを成形し、
そのフイルムのシール性、製膜性及びフイルム物
性を測定した。尚シール性は、耐衝撃性スチロー
ル樹脂製容器を用いて測定した。各測定は、次の
基準で判定された。 (1) シール製 耐衝撃性スチロール樹脂製のプリン容器に、
表中の組成物より得られたフイルムをヒートシ
ールし、易開封性を有するシール温度条件巾が
20℃以上の場合を○とし、20℃に満たない場合
を×とした。尚易開封性とは通常の状態で密封
しており、蓋を剥離する際に、蓋又は容器が破
損しないで、手で容易に開封することのできる
性質を意味する。 (2) 製膜性 インフレーシヨン法によりフイルム化できる
ものを○とし、ブロツキング等でフイルム化で
きないものを×とした。 (3) フイルム物性 シール容器よりシールフイルムを剥離する
時、フイルムが破損するものを×とし、破損す
ることなく開封されるものを○とした。
(Industrial Application Field) The present invention relates to a film for heat sealing, and particularly to a film used as a sealing material when heat sealing containers made of styrene resin. (Prior Art) Containers made of styrene resin (hereinafter referred to as styrene containers) have been widely used as seal packs in recent years for packaging foods such as dairy products, confectionery, and tofu. Aluminum foil coated with hot-melt adhesive or container-type adhesive is used exclusively as sealing material for these containers, but from a food hygiene point of view, the adhesive remaining on the container side after the sealing material is peeled off is used. This has become a problem, and a sealing material that can replace aluminum foil is desired. (Problems to be Solved by the Invention) Regarding this point, the applicant has already proposed a method of heat sealing styrene containers using a sealing material containing a styrene-butadiene block copolymer (Japanese Patent Publication No. 52-46150). Publication No.). When using this method, it became possible to widen the sealing temperature range of styrene containers, which was previously thought to have an extremely narrow sealing temperature range, but
Even in this case, it cannot be said to be completely satisfactory from a practical standpoint. The inventors of the present invention further conducted research into sealing materials that can accommodate a wide range of sealing temperature conditions, and discovered the film described below as a sealing material that is fully satisfactory from a practical standpoint, and were able to complete the present invention. Ivy. (Means for Solving the Problems) That is, the present invention comprises an ethylene-acrylic acid ester copolymer (A) of 5 to 50 wt% and a styrene-butadiene block copolymer (B) having a styrene content of 10 to 50 wt%. ~50wt% and polystyrene and/or impact-resistant styrene-butadiene graft copolymer (C) 10~80wt%
(However, styrene is the main polymer.) This is a heat sealing film made of a resin composition. Next, the ethylene-acrylic acid ester copolymer (A) of the present invention (hereinafter abbreviated as component (A)) and the styrene content 10
Consisting of ~50wt% styrene-butadiene block copolymer (B) (hereinafter referred to as (B) component) and polystyrene and/or impact-resistant type styrene-butadiene graft copolymer (C) (hereinafter referred to as (C) component) It is a film, and the content of component (A) is in the range of 5 to 50 wt%. At less than 5 wt%, the sealing temperature range for easy opening becomes narrower, and when it exceeds 50 wt%, the tackiness increases.
At the same time as blocking occurs, the seal strength itself decreases. Ethyl acrylate is a typical example of the acrylic ester used, but other esters can be used as well. The content of acrylic ester in component (A) is preferably in the range of 5 to 35 wt% from the viewpoint of film strength. In addition, if component (B) is less than 5wt%, sufficient film strength cannot be obtained;
%, it is not preferable because it increases tackiness and causes blocking. Furthermore, when the amount of polystyrene and/or impact-resistant styrene-butadiene graft copolymer as component (C) is less than 10 wt%, the tackiness of the film increases;
As the temperature exceeds 100, the range of sealing temperature conditions becomes narrower. When sealing a styrene container using a heat-sealing film made of this resin composition, it is possible to use a wider range of sealing temperature conditions that provide easier opening than when using conventional sealing materials. As for the heat sealing method, a conventional heat sealer shape and method may be used, and a method using an impulse sealer or the like may be used. Styrene resins such as general polystyrene resin, rubber-modified polystyrene resin, AS resin, and ABS resin are used as the material for the styrene container to be heat-sealed. The film according to the present invention can also be used as a laminate with other films or aluminum foil, or by vapor-depositing aluminum. (Examples) Hereinafter, the present invention will be further explained in detail with reference to Examples. Example Each component was mixed within the composition range shown in the table, and a film with a thickness of 100 μm was formed by the inflation method.
The sealing properties, film forming properties, and physical properties of the film were measured. The sealability was measured using a container made of impact-resistant styrene resin. Each measurement was judged based on the following criteria. (1) Made by Seal A pudding container made of impact-resistant styrene resin,
The film obtained from the composition in the table is heat-sealed, and the sealing temperature condition range for easy opening is determined.
When the temperature was 20°C or higher, it was marked as ○, and when the temperature was less than 20°C, it was marked as ×. Easy-to-open property means that the container is sealed in a normal state and can be easily opened by hand without damaging the lid or the container when the lid is peeled off. (2) Film-forming properties Those that can be made into a film by the inflation method are marked as ○, and those that cannot be made into a film due to blocking or the like are marked as ×. (3) Physical properties of the film When the seal film was peeled from the sealed container, it was marked as × if the film was damaged, and it was marked as ○ if the film was opened without being damaged.

【表】 (発明の効果) 以上のとおり本発明のフイルムは、ヒートシー
ル性にすぐれ、しかも再開封時の剥離も容易にで
きるため、容器の破損をまねかない特徴を有して
いる。
[Table] (Effects of the Invention) As described above, the film of the present invention has excellent heat-sealability and can be easily peeled off when resealing, so it has the characteristic of not causing damage to the container.

Claims (1)

【特許請求の範囲】 1 エチレン−アクリル酸エステル共重合体(A)5
〜50wt%と、 スチレン含量10〜50wt%のスチレン−ブタジ
エンブロツク共重合体(B)5〜50wt%及び ポリスチレン及び/又は耐衝撃タイプスチレン
−ブタジエングラフト共重合体(C)10〜80wt%
(但し、スチレンが幹ポリマー)の樹脂組成物か
らなるヒートシール用フイルム。
[Claims] 1. Ethylene-acrylic acid ester copolymer (A) 5
~50wt%, styrene-butadiene block copolymer (B) with styrene content of 10-50wt%, 5-50wt%, and polystyrene and/or impact type styrene-butadiene graft copolymer (C) 10-80wt%.
(However, styrene is the main polymer.) A heat sealing film made of a resin composition.
JP16667086A 1986-07-17 1986-07-17 HIITOSHIIRUYOFUIRUMU Expired - Lifetime JPH0246610B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP16667086A JPH0246610B2 (en) 1986-07-17 1986-07-17 HIITOSHIIRUYOFUIRUMU

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP16667086A JPH0246610B2 (en) 1986-07-17 1986-07-17 HIITOSHIIRUYOFUIRUMU

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
JP3193478A Division JPS54141872A (en) 1978-03-20 1978-03-20 Heat sealing film, and sealing method

Publications (2)

Publication Number Publication Date
JPS6211747A JPS6211747A (en) 1987-01-20
JPH0246610B2 true JPH0246610B2 (en) 1990-10-16

Family

ID=15835547

Family Applications (1)

Application Number Title Priority Date Filing Date
JP16667086A Expired - Lifetime JPH0246610B2 (en) 1986-07-17 1986-07-17 HIITOSHIIRUYOFUIRUMU

Country Status (1)

Country Link
JP (1) JPH0246610B2 (en)

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2232677B (en) * 1989-06-08 1993-06-30 Labofina Sa Polymeric material composition
FR2666838B1 (en) * 1990-09-19 1995-06-02 Gerland COATINGS BASED ON THERMO-PLASTIC ELASTOMERS IN PARTICULAR FLOOR COVERINGS.
FR2682666B1 (en) * 1991-10-18 1994-01-21 Atochem THERMOSCELLABLE AND PEELABLE FILM FOR POLYSTYRENE CONTAINERS AND SEALING METHOD USING THE SAME.
JP4929537B2 (en) * 2001-06-29 2012-05-09 住友化学株式会社 Easy peelable film

Also Published As

Publication number Publication date
JPS6211747A (en) 1987-01-20

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