JP2000182441A - Non-halogen flame retardant resin composition - Google Patents

Non-halogen flame retardant resin composition

Info

Publication number
JP2000182441A
JP2000182441A JP10355235A JP35523598A JP2000182441A JP 2000182441 A JP2000182441 A JP 2000182441A JP 10355235 A JP10355235 A JP 10355235A JP 35523598 A JP35523598 A JP 35523598A JP 2000182441 A JP2000182441 A JP 2000182441A
Authority
JP
Japan
Prior art keywords
weight
parts
resin composition
ethylene
halogen flame
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.)
Withdrawn
Application number
JP10355235A
Other languages
Japanese (ja)
Inventor
Hiroshi Matsui
浩志 松井
Atsushi Suzuki
淳 鈴木
Takashi Edo
崇司 江戸
Koichi Iinuma
浩一 飯沼
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.)
Fujikura Ltd
Original Assignee
Fujikura 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 Fujikura Ltd filed Critical Fujikura Ltd
Priority to JP10355235A priority Critical patent/JP2000182441A/en
Publication of JP2000182441A publication Critical patent/JP2000182441A/en
Withdrawn legal-status Critical Current

Links

Abstract

PROBLEM TO BE SOLVED: To make incineration treatment possible, and obtain flame resistance similar to a polyvinyl chloride composition by adding magnesium hydroxide, silicon powder, and mica powder to polyolefin base resin. SOLUTION: A non-halogen flame retardant resin composition is obtained by adding 10-250 pts.wt. of magnesium hydroxide, 3-50 pts.wt. of silicon powder, and 5-100 pts.wt. of mica powder to 100 pts.wt. of polyolefin base resin. The polyolefin base resin is at least one selected from the group comprising ethylene- vinyl acetate copolymer, ethylene-ethyl acrylate copolymer, ethylene-propylene rubber, polypropylene, and polyethylene. When the non-halogen flame retardant resin is used as a covering material of an electric wire and a cable, it can stand a combustion test specified in Electrical Appliance and Material Control Low, UL Standards, IEEE Standard 383, IEC Standard 332-1.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、ポリ塩化ビニル
(PVC)組成物と同等の難燃性を有し、ハロゲンを含
まないので焼却処分が可能な難燃性樹脂組成物に関す
る。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a flame-retardant resin composition having the same flame retardancy as a polyvinyl chloride (PVC) composition and containing no halogen and capable of being incinerated.

【0002】[0002]

【従来の技術】PVC組成物は電気絶縁性が良く、自消
性の難燃性を有していることから、電線被覆、チュー
ブ、テープ、包装材、建材等に広く使用されている。と
ころでPVC組成物はハロゲンである塩素(Cl)を含
んでいるため、燃焼時にHCl等の腐食性ガスやダイオ
キシン等の有毒ガスを発生する。このため各種のPVC
製品が廃棄物となった場合に、これらを焼却処分できな
い問題があった。そこで現状では埋立処分がなされてい
るが、PVC組成物には添加剤としてPb系の安定剤が
用いられていることから、これが土壌等に溶出する問題
もあり、産業廃棄物として処理が困難になってきてい
る。
2. Description of the Related Art PVC compositions are widely used in wire coatings, tubes, tapes, packaging materials, building materials, etc. because of their good electrical insulation and self-extinguishing flame retardancy. Incidentally, since the PVC composition contains chlorine (Cl) which is a halogen, a corrosive gas such as HCl or a toxic gas such as dioxin is generated during combustion. Therefore, various PVC
There was a problem that when products became waste, they could not be incinerated. Therefore, at present, landfill disposal is performed. However, since a Pb-based stabilizer is used as an additive in the PVC composition, there is also a problem that this is eluted into soil and the like, and it is difficult to dispose of it as industrial waste. It has become to.

【0003】[0003]

【発明が解決しようとする課題】これに対して、PVC
に代わる樹脂組成物として、ハロゲンを含まないポリエ
チレン(PE)やポリプロピレン(PP)を用いれば、
燃焼時に有害ガスが発生しないので焼却処分が可能であ
るが、これらのハロゲンを含まない樹脂組成物はPVC
に比べて難燃性が劣る欠点があった。例えば、樹脂組成
物の難燃性の評価尺度の1つである酸素指数(OI)を
比較すると、PVCのOIが23〜40であるのに対し
て、PEおよびPPのOIは17〜19程度と劣ってい
ることがわかる。そこで、PEやPPといったハロゲン
を含まない樹脂組成物に難燃性を付与するために、通
常、これらにMg(OH)2などの金属水和物を添加す
ることが行われている。しかしながら、金属水和物だけ
では所望の高難燃性が得られなかったり、所望の高難燃
性を得るために多量の金属水和物を添加すると機械特性
等の特性が著しく劣化する場合がある。
On the other hand, PVC
If a halogen-free polyethylene (PE) or polypropylene (PP) is used as a resin composition instead of
Since no harmful gas is generated during combustion, incineration is possible. However, these halogen-free resin compositions are made of PVC.
There was a defect that the flame retardancy was inferior to that of For example, comparing the oxygen index (OI), which is one of the evaluation criteria for the flame retardancy of the resin composition, the OI of PVC is 23 to 40, whereas the OI of PE and PP is about 17 to 19. It turns out that it is inferior. Therefore, in order to impart flame retardancy to a halogen-free resin composition such as PE or PP, a metal hydrate such as Mg (OH) 2 is usually added to the resin composition. However, the desired high flame retardancy cannot be obtained with metal hydrate alone, or when a large amount of metal hydrate is added to obtain the desired high flame retardancy, properties such as mechanical properties are significantly deteriorated. is there.

【0004】本発明は前記事情に鑑みてなされたもの
で、PVCと同程度の難燃性を有し、焼却処理時に有害
なガスを発生しない樹脂組成物を提供することを目的と
する。
The present invention has been made in view of the above circumstances, and an object of the present invention is to provide a resin composition having the same level of flame retardancy as PVC and generating no harmful gas during incineration.

【0005】[0005]

【課題を解決するための手段】前記課題は、ポリオレフ
ィン系樹脂に水酸化マグネシウム、シリコーンパウダ
ー、およびマイカ粉末を添加してなるノンハロゲン難燃
性樹脂組成物によって解決できる。ポリオレフィン系樹
脂100重量部に対して、水酸化マグネシウムの添加量
が10重量部以上250重量部以下、シリコーンパウダ
ーの添加量が3重量部以上50重量部以下、およびマイ
カ粉末の添加量が5重量部以上100重量部以下である
ことが好ましい。前記ポリオレフィン系樹脂が、エチレ
ン−酢酸ビニル共重合体、エチレン−エチルアクリレー
ト共重合体、エチレン−プロピレンゴム、ポリプロピレ
ン、およびポリエチレンからなる群から選ばれる1種ま
たは2種以上からなることが好ましい。そして本発明の
ノンハロゲン難燃性樹脂組成物は、電線、ケーブルまた
はその類似品の被覆材料として用いたときに、電気用品
取締法、UL規格、IEEE規格383、およびIEC
規格332−1にそれぞれ制定されている燃焼試験のう
ちの1以上の試験に合格できるものである。
The above object can be attained by a non-halogen flame-retardant resin composition obtained by adding magnesium hydroxide, silicone powder and mica powder to a polyolefin resin. The addition amount of magnesium hydroxide is 10 parts by weight or more and 250 parts by weight or less, the addition amount of silicone powder is 3 parts by weight or more and 50 parts by weight or less, and the addition amount of mica powder is 5 parts by weight with respect to 100 parts by weight of polyolefin resin. It is preferable that the amount be not less than 100 parts by weight and not more than 100 parts by weight. It is preferable that the polyolefin-based resin is composed of one or more members selected from the group consisting of ethylene-vinyl acetate copolymer, ethylene-ethyl acrylate copolymer, ethylene-propylene rubber, polypropylene, and polyethylene. When the non-halogen flame-retardant resin composition of the present invention is used as a coating material for electric wires, cables, or the like, it can be used as an electric appliance control law, UL standard, IEEE standard 383, and IEC.
It can pass at least one of the combustion tests specified in the standard 332-1.

【0006】[0006]

【発明の実施の形態】以下、本発明を詳しく説明する。
本発明のハロゲンを含まない難燃性の樹脂組成物(以
下、ノンハロゲン難燃性樹脂組成物という)は、ハロゲ
ンを含まないポリオレフィン系樹脂に、難燃剤として金
属水和物を添加するとともに、難燃補助剤を併用するこ
とにより、好ましい高難燃性を達成できるようにしたも
のである。
DESCRIPTION OF THE PREFERRED EMBODIMENTS The present invention will be described below in detail.
The halogen-free flame-retardant resin composition of the present invention (hereinafter referred to as a non-halogen flame-retardant resin composition) is obtained by adding a metal hydrate as a flame retardant to a halogen-free polyolefin-based resin. By using a flame retardant in combination, preferable high flame retardancy can be achieved.

【0007】本発明で用いられるポリオレフィン系樹脂
としては、エチレン−酢酸ビニル共重合体(EVA)、
エチレン−エチルアクリレート共重合体(EEA)、エ
チレン−プロピレンゴム(EPR)、ポリプロピレン
(PP)、ポリエチレン(PE)などが好ましく、これ
らの樹脂は1種単独で用いてもよく、あるいは2種以上
をブレンドして用いてもよい。ポリエチレンとしては密
度が0.88〜0.96g/cm3であるものが好まし
く、例えば直鎖状低密度ポリエチレン(LLDPE)や
超低密度ポリエチレン(VLDPE)が好適に用いられ
る。また上記の樹脂の中でも特にEVAを単独で、ある
いは他の樹脂とブレンドして用いれば、PPやLLDP
E等と比較してより高い難燃性を得ることができるので
好ましい。
The polyolefin resin used in the present invention includes ethylene-vinyl acetate copolymer (EVA),
Preferred are ethylene-ethyl acrylate copolymer (EEA), ethylene-propylene rubber (EPR), polypropylene (PP), polyethylene (PE) and the like. These resins may be used alone or in combination of two or more. It may be used by blending. The polyethylene preferably has a density of 0.88 to 0.96 g / cm 3. For example, linear low-density polyethylene (LLDPE) and very low-density polyethylene (VLDPE) are suitably used. In particular, if EVA is used alone or in a blend with other resins, PP or LLDP may be used.
It is preferable because higher flame retardancy can be obtained as compared with E and the like.

【0008】本発明で用いられる金属水和物は、燃焼時
に酸化物と水蒸気に分解して難燃性を発現するもので、
水酸化マグネシウムが好適に用いられる。ポリオレフィ
ン系樹脂に水酸化マグネシウム(Mg(OH)2)を添加
すると、燃焼時に水酸化マグネシウムが酸化物と水蒸気
に分解することによって温度を下げるとともに、発生す
る水蒸気によって燃焼している部分への酸素の供給を抑
える。また燃焼した部分に酸化物が付着することによっ
て新たな樹脂面へ炎が広がらないようにすることができ
る。また本発明では、樹脂との親和性向上や、熱分解特
性改善等の理由から、ステアリン酸、シュウ酸アニオ
ン、シランカップリング剤等によって表面処理された水
酸化マグネシウムが特に好ましく用いられる。本発明に
おいて水酸化マグネシウムの添加量は、ポリオレフィン
系樹脂100重量部に対して10重量部以上250重量
部以下、より好ましくは40重量部以上150重量部以
下である。水酸化マグネシウムの添加量が少なすぎると
好ましい難燃性が得られず、多すぎると得られるノンハ
ロゲン難燃性樹脂組成物の機械的特性等の低下や絶縁抵
抗の低下が著しくなる。
[0008] The metal hydrate used in the present invention decomposes into oxides and water vapor during combustion to exhibit flame retardancy.
Magnesium hydroxide is preferably used. When magnesium hydroxide (Mg (OH) 2 ) is added to a polyolefin resin, magnesium hydroxide is decomposed into an oxide and water vapor during combustion, thereby lowering the temperature and generating oxygen by the generated steam. Control supply. Further, it is possible to prevent the flame from spreading to a new resin surface due to the attachment of the oxide to the burned portion. In the present invention, magnesium hydroxide surface-treated with stearic acid, an oxalate anion, a silane coupling agent, or the like is particularly preferably used for reasons such as improvement in affinity with a resin and improvement in thermal decomposition characteristics. In the present invention, the amount of magnesium hydroxide to be added is 10 parts by weight or more and 250 parts by weight or less, more preferably 40 parts by weight or more and 150 parts by weight or less based on 100 parts by weight of the polyolefin resin. If the added amount of magnesium hydroxide is too small, favorable flame retardancy cannot be obtained, and if it is too large, the resulting non-halogen flame-retardant resin composition will have significantly reduced mechanical properties and insulation resistance.

【0009】本発明では水酸化マグネシウムと併用され
る難燃補助剤として、シリコーンパウダーとマイカ粉末
が用いられる。シリコーンパウダーの添加量は、ポリオ
レフィン系樹脂100重量部に対して3重量部以上50
重量部以下、より好ましくは5重量部以上40重量部以
下である。シリコーンパウダーの添加量が3重量部より
少ないと好ましい難燃性が得られず、50重量部より多
く添加しても原材料費が増大するだけで難燃性の向上は
あまり望めない。マイカ粉末の添加量は、少な過ぎると
難燃性に対する添加効果が得られず、多過ぎると樹脂組
成物の機械的特性を低下させるので、ポリオレフィン系
樹脂100重量部に対して5重量部以上100重量部以
下、より好ましくは10重量部以上80重量部以下であ
る。
In the present invention, silicone powder and mica powder are used as a flame retardant auxiliary used in combination with magnesium hydroxide. The addition amount of the silicone powder is 3 parts by weight or more and 50 parts by weight with respect to 100 parts by weight of the polyolefin resin.
It is at most 5 parts by weight, more preferably at least 5 parts by weight and at most 40 parts by weight. If the added amount of the silicone powder is less than 3 parts by weight, favorable flame retardancy cannot be obtained. If the added amount is more than 50 parts by weight, the cost of raw materials increases but the improvement in flame retardancy cannot be expected much. When the amount of the mica powder is too small, the effect of adding the flame retardant is not obtained, and when the amount is too large, the mechanical properties of the resin composition are deteriorated. It is not more than 10 parts by weight, more preferably not more than 10 parts by weight and not more than 80 parts by weight.

【0010】このように上記のポリオレフィン系樹脂
に、水酸化マグネシウム、シリコーンパウダー、および
マイカ粉末を必須成分として添加することによって好ま
しい高難燃性が達成され、電線、ケーブルまたはその類
似品の被覆材料として用いたときに、電気用品取締法、
UL規格、IEEE規格383、およびIEC規格33
2−1にそれぞれ制定されている燃焼試験のうちの1以
上の試験に合格するノンハロゲン難燃性樹脂組成物を得
ることができる。
As described above, preferable high flame retardancy is achieved by adding magnesium hydroxide, silicone powder, and mica powder as essential components to the above-mentioned polyolefin resin, and a coating material for electric wires, cables or similar products is obtained. When used as the Electrical Appliance and Material Control Law,
UL standard, IEEE standard 383, and IEC standard 33
It is possible to obtain a halogen-free flame-retardant resin composition that passes at least one of the combustion tests established in 2-1.

【0011】また、上記の配合剤以外にも、紫外線吸収
剤、老化防止剤、架橋剤、銅害防止剤、顔料、染料その
他の着色剤、少量のタルクなどの無機物微粉末など、用
途に応じて適宜の添加剤を配合することができるが、添
加剤はハロゲンおよび、特に鉛(Pb)を含まないもの
が選択される。また、カドミウム(Cd)などの有害な
重金属をできるだけ含まないものが好ましく、本発明の
ノンハロゲン難燃性樹脂組成物における有害な重金属の
含有量を0.1重量%未満に抑えるのが好ましい。ま
た、本発明のノンハロゲン難燃性樹脂組成物は、発泡度
が10%未満の範囲で発泡していてもよい。さらに、本
発明のノンハロゲン難燃性樹脂組成物を絶縁材として用
いる場合は、体積抵抗率を1×1013(Ω・cm)以上と
するのが好ましい。
In addition to the above compounding agents, ultraviolet absorbers, anti-aging agents, cross-linking agents, copper damage inhibitors, pigments, dyes and other coloring agents, small amounts of inorganic fine powder such as talc, etc. Any suitable additives can be blended, but those which do not contain halogen and especially lead (Pb) are selected. Further, it is preferable that harmful heavy metals such as cadmium (Cd) are not contained as much as possible, and it is preferable that the content of harmful heavy metals in the non-halogen flame-retardant resin composition of the present invention is suppressed to less than 0.1% by weight. Further, the non-halogen flame-retardant resin composition of the present invention may have a degree of foaming of less than 10%. Furthermore, when the non-halogen flame-retardant resin composition of the present invention is used as an insulating material, the volume resistivity is preferably set to 1 × 10 13 (Ω · cm) or more.

【0012】このようなノンハロゲン難燃性樹脂組成物
は、酸素指数(OI)が24以上でPVCと同等の自消
性の難燃性を有しており、火災時に燃え難く、発煙量も
少ない。またハロゲンを含んでおらず、燃焼時にダイオ
キシンやハロゲンガス等の有毒ガスを発生しないので、
焼却処分することができ、火災時にも有毒ガスを発生し
ない。さらに鉛の溶出がなく、埋立処分も可能である。
Such a non-halogen flame-retardant resin composition has an oxygen index (OI) of 24 or more, has a self-extinguishing flame retardancy equivalent to that of PVC, is difficult to burn in a fire, and has a small amount of smoke. . Also, because it does not contain halogen and does not generate toxic gases such as dioxin and halogen gas during combustion,
Can be incinerated and does not emit toxic gases in the event of fire. Furthermore, there is no elution of lead, and landfill disposal is possible.

【0013】本発明のノンハロゲン難燃性樹脂組成物
は、例えば絶縁電線、電子機器配線用電線、自動車用電
線、機器用電線、電源コード、屋外配電用絶縁電線、電
力用ケーブル、制御用ケーブル、通信用ケーブル、計装
用ケーブル、信号用ケーブル、移動用ケーブル、および
船用ケーブルなどの各種電線・ケーブルの絶縁材、シー
ス材、テープ類、および介在物、ならびにケース、プラ
グ、およびテープなどの電線・ケーブル用付属部品(具
体的には収縮チューブ、ゴムストレスリリーフコーン
等)、電線管、配線ダクト、およびバスダクトなどの電
材製品などの他、農業用シート、水道用ホース、ガス管
被覆材、建築内装材、およびフロア材などに好適であ
る。
The non-halogen flame-retardant resin composition of the present invention includes, for example, insulated wires, electronic device wiring wires, automobile wires, device wires, power cords, insulated wires for outdoor distribution, power cables, control cables, Insulation materials, sheath materials, tapes, and inclusions for various cables and cables such as communication cables, instrumentation cables, signal cables, transfer cables, and ship cables, as well as wires and cables for cases, plugs, and tapes. Cable accessories (specifically, shrink tubing, rubber stress relief cones, etc.), electrical materials such as conduits, wiring ducts, and bus ducts, as well as agricultural seats, water hoses, gas pipe coverings, and building interiors It is suitable for materials and floor materials.

【0014】[0014]

【実施例】以下、具体的な実施例を示して本発明の効果
を明らかにする。本発明の実施例および比較例として、
下記表1および2に示す配合割合(単位:重量部)で各
種成分を配合し、混練機で混練して樹脂組成物を得た。
燃焼試験を行うために、2mm2の導体上に混練後の樹
脂組成物を押出機にて0.8mmの厚さで被覆して電線
を製造した。燃焼試験はこの電線を用いて、電気取締法
燃焼試験に制定される60゜傾斜燃焼試験、UL規格V
W−1に制定される垂直燃焼試験、IEC規格332−
1およびIEEE規格383に制定される垂直トレイ燃
焼試験にそれぞれ準じて行った。その合否を表に示す。
またJIS K7201の試験法に準処する酸素指数
(OI)、JIS K7113に記載されている方法に
準処する引張強度、および引張伸びを測定した。その結
果を表に示す。引張強度の評価は1kgf/mm2以上
を○、1kgf/mm2未満を×、引張伸びの評価は2
50%以上を○、200%以上250%未満を△、20
0%未満を×として示した。尚、上記4つの燃焼試験が
全て不合格だったものについては引張強度および引張伸
びの測定は行わなかった。
EXAMPLES Hereinafter, the effects of the present invention will be clarified by showing specific examples. As examples and comparative examples of the present invention,
Various components were blended in the blending ratios (unit: parts by weight) shown in Tables 1 and 2 below, and kneaded with a kneader to obtain a resin composition.
In order to conduct a combustion test, the kneaded resin composition was coated on a 2 mm 2 conductor with a thickness of 0.8 mm using an extruder to produce an electric wire. The combustion test uses this electric wire to establish a 60 ° tilt combustion test specified in the Electricity Control Law combustion test, UL standard V
W-1 vertical combustion test, IEC standard 332-
1 and a vertical tray combustion test defined in IEEE Standard 383, respectively. The results are shown in the table.
Further, the oxygen index (OI) according to the test method of JIS K7201, the tensile strength and the tensile elongation according to the method described in JIS K7113 were measured. The results are shown in the table. The evaluation of tensile strength was 1 kgf / mm 2 or more, ○, and less than 1 kgf / mm 2, and the evaluation of tensile elongation was 2
を for 50% or more, Δ for 200% or more and less than 250%, 20
Less than 0% was indicated as x. In addition, the tensile strength and tensile elongation were not measured for any of the four combustion tests that failed.

【0015】[0015]

【表1】 [Table 1]

【0016】[0016]

【表2】 [Table 2]

【0017】尚、上記実施例および比較例において各樹
脂および配合剤としてはそれぞれ次のものを用いた。 EVA:メルトフローレート(以下、MFRと記す)
2.5、酢酸ビニル含有量19%のエチレン−酢酸ビニ
ル共重合体 EEA:MFR=0.5、エチルアクリレート含有量1
4%のエチレン−エチルアクリレート共重合体 EPR:ムーニー粘度ML1+4(100℃)40、エ
チレン含有量70mol%、プロピレン含有量30mol%の
エチレンプロピレンゴム PP:MFR=4、密度0.91g/cm3のポリプロ
ピレン LLDPE:MFR=0.7、密度0.92g/cm3
の直鎖状低密度ポリエチレン VLDPE:MFR=4、密度0.91g/cm3の超
低密度ポリエチレン シリコーンパウダー:東レ・ダウコーニング・シリコー
ン社製、DC4−7081 水酸化マグネシウム:ステアリン酸表面処理水酸化マグ
ネシウム マイカ粉末:湿式粉砕マスコバイト、平均粒径22.5
μm 酸化劣化防止剤(老化防止剤):日本チバガイギー社
製、Irganox1010
In the above Examples and Comparative Examples, the following resins and compounding agents were used, respectively. EVA: Melt flow rate (hereinafter referred to as MFR)
2.5, an ethylene-vinyl acetate copolymer having a vinyl acetate content of 19% EEA: MFR = 0.5, an ethyl acrylate content of 1
4% ethylene-ethyl acrylate copolymer EPR: Mooney viscosity ML1 + 4 (100 ° C.) 40, ethylene content 70 mol%, propylene content 30 mol% ethylene propylene rubber PP: MFR = 4, density 0.91 g / cm 3 Polypropylene LLDPE: MFR = 0.7, density 0.92 g / cm 3
Linear low density polyethylene VLDPE: Ultra low density polyethylene having MFR = 4, density 0.91 g / cm 3 Silicone powder: DC4-7081, manufactured by Dow Corning Toray Silicone Co., Ltd. Magnesium hydroxide: Hydroxyl surface treatment with stearic acid Magnesium mica powder: wet crushed mascot, average particle size 22.5
μm antioxidant (antiaging agent): Irganox1010, manufactured by Ciba-Geigy Japan

【0018】[0018]

【発明の効果】以上説明したように本発明によれば、P
VCと同等の難燃性を有し、かつハロゲンを含まないの
で焼却処分が可能なノンハロゲン難燃性樹脂組成物が得
られる。また本発明によれば、電線、ケーブルまたはそ
の類似品の被覆材料として用いたときに、電気用品取締
法、UL規格、IEEE規格383、およびIEC規格
332−1にそれぞれ制定されている燃焼試験のうちの
1以上の試験に合格することができ、したがって実用性
が高いノンハロゲン難燃性樹脂組成物を得ることができ
る。
As described above, according to the present invention, P
A non-halogen flame-retardant resin composition having the same flame retardancy as VC and containing no halogen can be incinerated. Further, according to the present invention, when used as a covering material for electric wires, cables or the like, the combustion test of the Electric Appliance and Material Control Law, UL standard, IEEE standard 383, and IEC standard 332-1, respectively. One or more of these tests can be passed, and thus a highly practical non-halogen flame-retardant resin composition can be obtained.

───────────────────────────────────────────────────── フロントページの続き (72)発明者 江戸 崇司 東京都江東区木場1丁目5番1号 株式会 社フジクラ内 (72)発明者 飯沼 浩一 東京都江東区木場1丁目5番1号 株式会 社フジクラ内 Fターム(参考) 5G303 AA06 AB12 AB20 BA12 CA01 CA09 CB17 5G305 AA02 AA14 AB15 AB25 AB35 BA15 BA24 CA01 CA04 CA07 CA40 CA45 CA51 CC03 CC13 CD13  ────────────────────────────────────────────────── ─── Continued on the front page (72) Inventor Takashi Edo 1-5-1 Kiba, Koto-ku, Tokyo Inside Fujikura Co., Ltd. (72) Inventor Koichi Iinuma 1-5-1 Kiba, Koto-ku, Tokyo Stock Company F-term in Fujikura (reference) 5G303 AA06 AB12 AB20 BA12 CA01 CA09 CB17 5G305 AA02 AA14 AB15 AB25 AB35 BA15 BA24 CA01 CA04 CA07 CA40 CA45 CA51 CC03 CC13 CD13

Claims (4)

【特許請求の範囲】[Claims] 【請求項1】 ポリオレフィン系樹脂に水酸化マグネシ
ウム、シリコーンパウダー、およびマイカ粉末を添加し
てなることを特徴とするノンハロゲン難燃性樹脂組成
物。
1. A non-halogen flame-retardant resin composition comprising magnesium hydroxide, silicone powder, and mica powder added to a polyolefin resin.
【請求項2】 ポリオレフィン系樹脂100重量部に対
して、水酸化マグネシウムの添加量が10重量部以上2
50重量部以下、シリコーンパウダーの添加量が3重量
部以上50重量部以下、およびマイカ粉末の添加量が5
重量部以上100重量部以下であることを特徴とする請
求項1記載のノンハロゲン難燃性樹脂組成物。
2. The amount of magnesium hydroxide added is at least 10 parts by weight based on 100 parts by weight of the polyolefin resin.
50 parts by weight or less, the addition amount of silicone powder is 3 parts by weight or more and 50 parts by weight or less, and the addition amount of mica powder is 5 parts by weight.
2. The non-halogen flame-retardant resin composition according to claim 1, wherein the content is not less than 100 parts by weight and not more than 100 parts by weight.
【請求項3】 前記ポリオレフィン系樹脂が、エチレン
−酢酸ビニル共重合体、エチレン−エチルアクリレート
共重合体、エチレン−プロピレンゴム、ポリプロピレ
ン、およびポリエチレンからなる群から選ばれる1種ま
たは2種以上からなることを特徴とする請求項1または
2のいずれかに記載のノンハロゲン難燃性樹脂組成物。
3. The polyolefin-based resin comprises one or more selected from the group consisting of ethylene-vinyl acetate copolymer, ethylene-ethyl acrylate copolymer, ethylene-propylene rubber, polypropylene, and polyethylene. The non-halogen flame-retardant resin composition according to claim 1.
【請求項4】 電線、ケーブルまたはその類似品の被覆
材料として用いたときに、電気用品取締法、UL規格、
IEEE規格383、およびIEC規格332−1にそ
れぞれ制定されている燃焼試験のうちの1以上の試験に
合格することを特徴とする請求項1ないし3のいずれか
に記載のノンハロゲン難燃性樹脂組成物。
4. When used as a coating material for an electric wire, a cable or the like, the electric appliance control law, UL standard,
The non-halogen flame-retardant resin composition according to any one of claims 1 to 3, wherein the resin composition passes at least one of the combustion tests specified in IEEE Standard 383 and IEC Standard 332-1. object.
JP10355235A 1998-12-14 1998-12-14 Non-halogen flame retardant resin composition Withdrawn JP2000182441A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP10355235A JP2000182441A (en) 1998-12-14 1998-12-14 Non-halogen flame retardant resin composition

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP10355235A JP2000182441A (en) 1998-12-14 1998-12-14 Non-halogen flame retardant resin composition

Publications (1)

Publication Number Publication Date
JP2000182441A true JP2000182441A (en) 2000-06-30

Family

ID=18442754

Family Applications (1)

Application Number Title Priority Date Filing Date
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Country Status (1)

Country Link
JP (1) JP2000182441A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002285011A (en) * 2001-01-19 2002-10-03 Sekisui Chem Co Ltd Thermoplastic resin composition for electric wire coating or sheath, sheath and electric wire using the same
WO2006120811A1 (en) 2005-05-13 2006-11-16 Aoi Co., Ltd. Control tube
CN103333429A (en) * 2013-06-05 2013-10-02 安徽荣玖光纤通信科技有限公司 Anti-aging polyvinyl chloride cable material

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002285011A (en) * 2001-01-19 2002-10-03 Sekisui Chem Co Ltd Thermoplastic resin composition for electric wire coating or sheath, sheath and electric wire using the same
WO2006120811A1 (en) 2005-05-13 2006-11-16 Aoi Co., Ltd. Control tube
EP1889711A4 (en) * 2005-05-13 2011-08-03 Aoi Co Ltd Control tube
CN103333429A (en) * 2013-06-05 2013-10-02 安徽荣玖光纤通信科技有限公司 Anti-aging polyvinyl chloride cable material

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