JPH02182432A - Biaxially stretched polyester film for seal bag - Google Patents

Biaxially stretched polyester film for seal bag

Info

Publication number
JPH02182432A
JPH02182432A JP257689A JP257689A JPH02182432A JP H02182432 A JPH02182432 A JP H02182432A JP 257689 A JP257689 A JP 257689A JP 257689 A JP257689 A JP 257689A JP H02182432 A JPH02182432 A JP H02182432A
Authority
JP
Japan
Prior art keywords
film
refractive index
biaxially stretched
polyester film
seal bag
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.)
Pending
Application number
JP257689A
Other languages
Japanese (ja)
Inventor
Shigeo Uchiumi
滋夫 内海
Nobuo Shiroishi
城石 信夫
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.)
Diafoil Co Ltd
Original Assignee
Diafoil Co Ltd
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 Diafoil Co Ltd filed Critical Diafoil Co Ltd
Priority to JP257689A priority Critical patent/JPH02182432A/en
Publication of JPH02182432A publication Critical patent/JPH02182432A/en
Pending legal-status Critical Current

Links

Abstract

PURPOSE:To obtain a seal bag easy to tear by using a biaxially stretched polyester film having specific physical properties. CONSTITUTION:A polyester film to be used is a biaxially stretched film wherein polyethylene terephthalate occupies 80mol% or more and simultaneously satisfies formulae I-IV when theta is set to the angle formed by the main orientation direction within a film plane and the longitudinal direction of the film, DELTAn is set to the double refractive index within the film plane, nalpha is set to the refractive index of the film in the thickness direction, [eta] is set to the extreme viscosity of the film and n is set to the mean refractive index of the film. This film has strength sufficient from a practical aspect as a seal bag and excellent preservability and is broken at the time of opening but breakage is not propagated in an unexpected direction.

Description

【発明の詳細な説明】 〔産業上の利用分野〕 本発明は、シール袋用二軸延伸ポリエステルフィルム、
さらに詳しくは、引き裂きの容易なシール袋用二軸延伸
ポリエステルフィルムに関する。
[Detailed description of the invention] [Industrial application field] The present invention provides a biaxially stretched polyester film for seal bags,
More specifically, the present invention relates to a biaxially stretched polyester film for sealable bags that is easy to tear.

〔従来の技術および発明が解決しようとする課題〕従来
、二輪延伸ポリエステルフィルムは、機械的性質、耐水
性、耐薬品性、寸法安定性、透明性等が優れている点か
ら種々の用途に用いられ、また酸素、香り、油等の低透
過性、食品衛生上有害な添加剤を含まないなどの長所に
よって、包装素材としても広く用いられている。
[Prior art and problems to be solved by the invention] Conventionally, two-wheel stretched polyester films have been used for various purposes due to their excellent mechanical properties, water resistance, chemical resistance, dimensional stability, transparency, etc. It is also widely used as a packaging material due to its low permeability to oxygen, fragrance, and oil, and its lack of additives harmful to food hygiene.

この二軸延伸ポリエステルフィルムは、シール袋として
使用される場合が多(、例えば10数μm厚程度の二輪
延伸フィルムにイミン系、ウレタン系等の接着剤を塗布
し、次いで30μm前後のポリエチレンをラミネートし
た後、ポリエチレン層をシール面として熱シールされ製
袋されている。
This biaxially stretched polyester film is often used as a seal bag (for example, an imine-based or urethane-based adhesive is applied to a two-wheel stretched film about 10-odd μm thick, and then polyethylene of about 30 μm thick is laminated. After that, the bag is heat-sealed using the polyethylene layer as a sealing surface.

このシール袋を開封する場合には、袋の融着部に多数の
傷痕が設けられ、どこからでも開封できるようになって
いる。
When opening this sealed bag, a large number of scars are provided on the fused portion of the bag so that the bag can be opened from anywhere.

しかしながら、このタイプのシール袋では裂けにくいも
のや、裂けても斜めに切れてしまうものが多く、内容物
が周囲に飛散するなどの問題があった。
However, many of these types of sealed bags are difficult to tear, or even if they are torn, they often tear diagonally, causing problems such as the contents being scattered around.

〔課題を解決するための手段〕[Means to solve the problem]

本発明者らは、上記課題に鑑み鋭意検討した結果、ある
特定の物性を有するポリエステルフィルムがシール袋用
として有用であることを見出し、本発明を完成するに至
った。
As a result of intensive studies in view of the above problems, the present inventors discovered that a polyester film having certain specific physical properties is useful for sealable bags, and completed the present invention.

すなわち本発明の要旨は、下記式[1]〜[4]を同時
に満足することを特徴とするシール袋用二軸延伸ポリエ
ステルフィルムに存する。
That is, the gist of the present invention resides in a biaxially stretched polyester film for sealable bags, which is characterized in that it satisfies the following formulas [1] to [4] at the same time.

(90−θ)(Δnxlo’−30)≦200−・・[
1]1.483≦nα≦1.501       −・
・■0.45≦〔η〕≦0.64        ・・
・■1.602≦n≦1.608         ・
、、■(但し、上記式中、θはフィルム面内の主配向方
向とフィルム長手方向とのなす角度(0〜90°)、Δ
nはフィルム面内の複屈折率、nαはフィルム厚み方向
の屈折率、〔η〕はフィルムの極限粘度、nはフィルム
の平均屈折率を示す) 以下、本発明の詳細な説明する。
(90-θ)(Δnxlo'-30)≦200-...[
1] 1.483≦nα≦1.501 −・
・■0.45≦[η]≦0.64 ・・
・■1.602≦n≦1.608 ・
,, ■ (However, in the above formula, θ is the angle (0 to 90°) between the main orientation direction in the film plane and the longitudinal direction of the film, Δ
(n is the in-plane birefringence of the film, nα is the refractive index in the film thickness direction, [η] is the intrinsic viscosity of the film, and n is the average refractive index of the film).The present invention will be described in detail below.

本発明において用いられるポリエステルフィルムは、8
0モル%以上がポリエチレンテレフタレートからなる二
軸延伸フィルムであって、そのフィルム組成物には、ジ
エチレングリコール、エチレングリコール、ネオペンチ
ルグリコール、1,4−シクロヘキサンジメタノール、
ポリオキシエチレングリコール、プロピレングリコール
、テトラメチレングリコール、ヘキサメチレングリコー
ル、ペンタエリスリトール等のジオール成分、イソフタ
ル酸、フタル酸、テレフタル酸、アジピン酸、セバシン
酸等のジカルボン酸、P−ヒドロキシ安息香酸等のヒド
ロキシカルボン酸等を共重合または、これらのジオール
、ジカルボン酸、オキシカルボン酸からなるポリエステ
ルを添加配合あるいは複合させてもよい。またフィルム
組成物中には、ナイロン、ポリプロピレン、ポリエチレ
ン、ポリエチレンオキシド、プロピレンオキシドコポリ
マー等のポリマー、無a微粒子等の改質剤を添加配合さ
せてもよい。
The polyester film used in the present invention is 8
A biaxially stretched film containing 0 mol% or more of polyethylene terephthalate, the film composition including diethylene glycol, ethylene glycol, neopentyl glycol, 1,4-cyclohexanedimethanol,
Diol components such as polyoxyethylene glycol, propylene glycol, tetramethylene glycol, hexamethylene glycol, and pentaerythritol, dicarboxylic acids such as isophthalic acid, phthalic acid, terephthalic acid, adipic acid, and sebacic acid, and hydroxyl such as P-hydroxybenzoic acid. Carboxylic acids and the like may be copolymerized, or polyesters made of these diols, dicarboxylic acids, and oxycarboxylic acids may be added or compounded. Further, polymers such as nylon, polypropylene, polyethylene, polyethylene oxide, and propylene oxide copolymers, and modifiers such as non-aluminum fine particles may be added to the film composition.

なお、そのフィルムの表面には必要に応じて、コロナ処
理、コーティング、印刷等が行われてもよい。
Note that the surface of the film may be subjected to corona treatment, coating, printing, etc., if necessary.

本発明で用いるポリエステルフィルムは、次式0式% ここで、θはフィルム面内主配向方向(γ方向)と、フ
ィルムの長手方向とのなす角度(90°以下の方)を表
わす。Δnはフィルム面内の複屈折率で主配向方向(γ
方向)の屈折率と該方向と直交する方向(β方向)との
差で表わされる。横方向が縦方向よりも高強度であるフ
ィルムは一般にθが90°近くであり、縦方向が横方向
よりも高強度であるフィルムは一般にθが06付近にあ
る。
The polyester film used in the present invention has the following formula: 0 Formula % Here, θ represents the angle (90° or less) between the main in-plane orientation direction (γ direction) of the film and the longitudinal direction of the film. Δn is the in-plane birefringence of the film and the main orientation direction (γ
It is expressed as the difference between the refractive index in a direction) and a direction perpendicular to the direction (β direction). A film with higher strength in the horizontal direction than the vertical direction generally has θ of about 90°, and a film with higher strength in the longitudinal direction than in the horizontal direction generally has θ of about 06°.

0式を満足しない領域では、極めて裂は難いか、裂は易
いが斜めに裂けてしまうため好ましくない。
In a region where the formula 0 is not satisfied, it is not preferable because it is extremely difficult to tear, or it is easy to tear but it tears diagonally.

また、本発明においてフィルムの厚み方向の屈折率nα
は1.483〜1.501の範囲である。
In addition, in the present invention, the refractive index nα in the thickness direction of the film is
is in the range of 1.483 to 1.501.

nαカ月、483未満では、フィルムが極端に裂は易く
なり、包装として不適当である。一方nαが1.501
を超えるフィルムでは、たとえ0式を満足するフィルム
であっても裂は難くなるため好ましくない。
When nα months are less than 483, the film becomes extremely easy to tear and is unsuitable for packaging. On the other hand, nα is 1.501
A film exceeding 0 is not preferable because it becomes difficult to tear even if the film satisfies the formula 0.

更に本発明においてフィルムの極限粘度〔η〕は、0.
45〜0.64の範囲である。〔η〕が0.45未満で
は、破れ易くなり包装として不適当であり、一方〔η〕
が0.64を超えるフィルムでは、0式およびnαを満
足するフィルムであっても裂は難くなり不適当である。
Furthermore, in the present invention, the intrinsic viscosity [η] of the film is 0.
It is in the range of 45 to 0.64. When [η] is less than 0.45, it is easy to tear and is unsuitable for packaging; on the other hand, [η]
A film with a value exceeding 0.64 is unsuitable because it is difficult to tear even if it satisfies the 0 formula and nα.

好ましくは0.50〜0.60、更に好ましくは0.5
6〜0.59の範囲である。
Preferably 0.50 to 0.60, more preferably 0.5
It is in the range of 6 to 0.59.

また、本発明においてフィルムの平均屈折率nは1.6
02〜1.608の範囲である。nが1.602未満の
フィルムではやはり他の条件を満足していても裂は難く
、1.608を超えるものではフィルムの強度が低いた
め包装として不適当である。
In addition, in the present invention, the average refractive index n of the film is 1.6
It is in the range of 02 to 1.608. Films with n less than 1.602 are difficult to tear even if other conditions are satisfied, and films with n greater than 1.608 are unsuitable for packaging because of their low strength.

nは、好ましくは1.604〜1.60?、更に好まし
くは1.605〜1.607の範囲である。
n is preferably 1.604 to 1.60? , more preferably in the range of 1.605 to 1.607.

〔実施例〕〔Example〕

以下、実施例により本発明を更に詳細に説明するが、本
発明はその要旨を越えない限り、以下の例に限定される
ものではない。
EXAMPLES Hereinafter, the present invention will be explained in more detail with reference to examples, but the present invention is not limited to the following examples unless it exceeds the gist thereof.

なお、本発明のフィルムの特性評価方法は次に示す通り
である。
The method for evaluating the characteristics of the film of the present invention is as follows.

■ フィルム面内の主配向方向とフィルム長手方向との
なす角度θ 偏光顕微鏡にて、フィルム面内の最大屈折率を示す方向
つまり主配向方向(T方向)を見出し、γ方向とフィル
ムの長手方向となす角度(90゜以下の方)をθとした
■ Angle θ between the main orientation direction in the film plane and the longitudinal direction of the film. Using a polarizing microscope, find the direction showing the maximum refractive index in the film plane, that is, the main orientation direction (T direction), and calculate the angle θ between the γ direction and the longitudinal direction of the film. The angle (less than 90°) made with θ is defined as θ.

■ 屈折率、複屈折率Δn、平均屈折率nAbbeの屈
折計にてNa−D線を用いて、γ方向の屈折率nT、フ
ィルム面内でγ方向と直交す方向の屈折率nβ及び厚み
方向の屈折率nαを測定し、次式に従って求めた。
■ Using a Na-D line with a refractometer with refractive index, birefringence Δn, and average refractive index nAbbe, measure the refractive index nT in the γ direction, the refractive index nβ in the direction orthogonal to the γ direction within the film plane, and the thickness direction. The refractive index nα was measured and determined according to the following formula.

Δn=n7−nβ n=1/3(nα+Ωβ十nγ) ■ 極限粘度〔η〕 フィルムIgをフェノール/テトラクロロエタン−50
150(重量比)の混合溶媒100  中に溶解し、3
0℃で測定した。
Δn=n7−nβ n=1/3 (nα+Ωβ+nγ) ■ Intrinsic viscosity [η] Film Ig is phenol/tetrachloroethane-50
150 (weight ratio) in a mixed solvent of 100, 3
Measured at 0°C.

■ シール部分の引き裂き性 袋状にシールした後、手で引き裂き、引き裂き性が良好
で又引き裂きの方向も幅方向に平行に入るものを○、裂
けにくいものを△、裂けるが引き裂きの方向が斜めとな
ってしまうものを×とした。
■ Tearability of the seal part After sealing into a bag shape, tear it by hand. If the tearability is good and the direction of tearing is parallel to the width direction, it is ○, if it is difficult to tear, it is △, if it tears but the direction of tearing is diagonal. Those that result in the following are marked as ×.

実施例1〜3 極限粘度0.60、平均粒径1.5μmのシリカ0.0
8wt%含有のポリエチレンテレフタレートを押出機と
Tダイで口金スリットからシート状に溶融押出し、キャ
スティングドラムで冷却して未延伸フィルムを得た。
Examples 1 to 3 Silica 0.0 with an intrinsic viscosity of 0.60 and an average particle size of 1.5 μm
Polyethylene terephthalate containing 8 wt% was melt-extruded into a sheet through a die slit using an extruder and a T-die, and cooled with a casting drum to obtain an unstretched film.

得られた未延伸フィルムをまず107°Cで3.0倍縦
方向に延伸し、更に98℃で1.3倍縦方向に延伸した
後、横方向に110℃で3.9倍延伸して230℃で熱
固定した。かくして巻きあげたフィルムについて中央品
(実施例1)と5:h品(実施例3)及びその中間の部
分(実施例2)をサンプリングして評価した。
The obtained unstretched film was first stretched 3.0 times in the machine direction at 107°C, further stretched 1.3 times in the machine direction at 98°C, and then stretched 3.9 times in the transverse direction at 110°C. Heat fixation was performed at 230°C. The films thus wound were sampled and evaluated for the central product (Example 1), the 5:h product (Example 3), and the intermediate portion (Example 2).

実施例4.比較例1、比較例2 実施例1で得られた未延伸フィルムを用い、縦方向に8
5℃で2.9倍、更に縦方向に78℃で1.35倍延伸
する以外は実施例1と同様に製膜した。得られたフィル
ムの中央品(実施例4)と端品(比較例2)とその中間
品(比較例1)について評価した。
Example 4. Comparative Example 1, Comparative Example 2 Using the unstretched film obtained in Example 1, 8
A film was formed in the same manner as in Example 1, except that it was stretched 2.9 times at 5°C and further 1.35 times in the longitudinal direction at 78°C. The center product (Example 4), edge product (Comparative Example 2), and intermediate product (Comparative Example 1) of the obtained film were evaluated.

比較例3 実施例4において2段目の縦延伸倍率を1.4倍とする
以外は実施例4と同様に製膜してその中央品を評価した
Comparative Example 3 A film was formed in the same manner as in Example 4, except that the longitudinal stretching ratio in the second stage was 1.4 times, and the central product was evaluated.

実施例5,6.7 実施例4において2段口の延伸倍率を1.28倍とする
以外は実施例4と同様に製膜してその中央品(実施例5
)、端品(実施例7)及びその中間品(実施例6)を評
価した。
Examples 5 and 6.7 A film was formed in the same manner as in Example 4 except that the stretching ratio of the second stage was 1.28 times, and the central product (Example 5
), a scrap product (Example 7), and an intermediate product (Example 6) were evaluated.

実施例8.比較例4,5 実施例1で得られた未延伸フィルムを用いて縦方向に8
5℃で3.0倍、次いで横方向に95℃で4.3倍延伸
した後、中央品(実施例8)、端品(比較例5)、その
中間品(比較例4)について評価した。
Example 8. Comparative Examples 4 and 5 Using the unstretched film obtained in Example 1, 8
After stretching 3.0 times at 5°C and then 4.3 times in the transverse direction at 95°C, the center product (Example 8), the edge product (Comparative Example 5), and the intermediate product (Comparative Example 4) were evaluated. .

比較例6.7 フィルム粘度が0.68(比較例6)のものと0.40
(比較例7)のものとを用いる以外は実施例1と同様に
製膜し、中央品について評価した。
Comparative Example 6.7 Film viscosity of 0.68 (Comparative Example 6) and 0.40
A film was formed in the same manner as in Example 1 except that (Comparative Example 7) was used, and the central product was evaluated.

比較例8,9 250℃(比較例8)及び200℃(比較例9)で熱処
理する以外は実施例1と同様に製膜し評価した。
Comparative Examples 8 and 9 Films were formed and evaluated in the same manner as in Example 1, except that heat treatment was performed at 250°C (Comparative Example 8) and 200°C (Comparative Example 9).

比較例10 横延伸倍率を3.2倍とする以外は実施例1と同様に製
膜し、その中央品について評価した。
Comparative Example 10 A film was formed in the same manner as in Example 1 except that the lateral stretching ratio was 3.2 times, and the central product was evaluated.

比較例11 横延伸倍率を4.5倍とする以外は実施例4と同様にし
て製膜し、中央品について評価した。
Comparative Example 11 A film was formed in the same manner as in Example 4 except that the lateral stretching ratio was 4.5 times, and the central product was evaluated.

以上、得られた結果をまとめて表1に示す。The results obtained above are summarized in Table 1.

〔発明の効果〕〔Effect of the invention〕

本発明のフィルムは、シール袋用として、実用上充分な
強度を有し、保存性に優れ、また、開封時には彼れが不
本意な方向へ伝播することのない優れた素材であり、そ
の工業的価値は高い。
The film of the present invention is an excellent material that has sufficient strength for practical use for seal bags, has excellent preservability, and does not spread in unwanted directions when opened. The value is high.

Claims (1)

【特許請求の範囲】[Claims] (1)下記式[1]〜[4]を同時に満足することを特
徴とするシール袋用二軸延伸ポリエステルフィルム。 (90−θ)(Δn×10^3−30)≦200・・・
[1] 1.483≦nα≦1.501・・・・・・・・・・・
[2] 0.45≦〔η〕≦0.64・・・・・・・・・・・・
[3] 1.602≦@n@≦1.608・・・・・・・・・・
[4] (但し、上記式中、θはフィルム面内の主配向方向とフ
ィルム長手方向とのなす角度(0〜90゜)、Δnはフ
ィルム面内の複屈折率、nαはフィルム厚み方向の屈折
率、〔η〕はフィルムの極限粘度、@n@はフィルムの
平均屈折率を示す)
(1) A biaxially stretched polyester film for seal bags, which satisfies the following formulas [1] to [4] at the same time. (90-θ) (Δn×10^3-30)≦200...
[1] 1.483≦nα≦1.501・・・・・・・・・・・・
[2] 0.45≦[η]≦0.64・・・・・・・・・・・・
[3] 1.602≦@n@≦1.608・・・・・・・・・・・・
[4] (However, in the above formula, θ is the angle (0 to 90°) between the main orientation direction in the film plane and the longitudinal direction of the film, Δn is the birefringence index in the film plane, and nα is the angle in the film thickness direction. Refractive index, [η] is the intrinsic viscosity of the film, @n@ is the average refractive index of the film)
JP257689A 1989-01-09 1989-01-09 Biaxially stretched polyester film for seal bag Pending JPH02182432A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP257689A JPH02182432A (en) 1989-01-09 1989-01-09 Biaxially stretched polyester film for seal bag

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP257689A JPH02182432A (en) 1989-01-09 1989-01-09 Biaxially stretched polyester film for seal bag

Publications (1)

Publication Number Publication Date
JPH02182432A true JPH02182432A (en) 1990-07-17

Family

ID=11533200

Family Applications (1)

Application Number Title Priority Date Filing Date
JP257689A Pending JPH02182432A (en) 1989-01-09 1989-01-09 Biaxially stretched polyester film for seal bag

Country Status (1)

Country Link
JP (1) JPH02182432A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7943230B2 (en) * 2004-04-30 2011-05-17 Toyo Boseki Kabushiki Kaisha Easy tear biaxially stretched polyester based film

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7943230B2 (en) * 2004-04-30 2011-05-17 Toyo Boseki Kabushiki Kaisha Easy tear biaxially stretched polyester based film
KR101237678B1 (en) * 2004-04-30 2013-02-26 도요보 가부시키가이샤 Easy tear biaxially stretched polyester based film

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