JP4661205B2 - Fluorine-containing copolymer composition and molded article comprising the same - Google Patents

Fluorine-containing copolymer composition and molded article comprising the same Download PDF

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JP4661205B2
JP4661205B2 JP2004364648A JP2004364648A JP4661205B2 JP 4661205 B2 JP4661205 B2 JP 4661205B2 JP 2004364648 A JP2004364648 A JP 2004364648A JP 2004364648 A JP2004364648 A JP 2004364648A JP 4661205 B2 JP4661205 B2 JP 4661205B2
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毅 岩佐
篤 船木
義明 樋口
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AGC Inc
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本発明は、含フッ素共重合体組成物及びそれからなる成形品に関する。   The present invention relates to a fluorine-containing copolymer composition and a molded article comprising the same.

ポリアミド6、ポリアミド66等のポリアミドは、耐熱性、耐薬品性、剛性、耐摩耗性、成形性等に優れることから、エンジニアリングプラスチックとして種々の用途に使用されている。特に、耐摩耗性に優れ、無潤滑状態でも焼付き難く、騒音が小さく、軽量性、耐腐蝕性にも優れるので、軸受け、歯車、ブッシュ、スペーサー、ローラー、カム等の摺動部品に数多く使用されている。   Polyamides such as polyamide 6 and polyamide 66 are excellent in heat resistance, chemical resistance, rigidity, wear resistance, moldability, etc., and are therefore used in various applications as engineering plastics. In particular, it has excellent wear resistance, is hard to seize even in a non-lubricated state, has low noise, and is excellent in lightness and corrosion resistance, so it is used in many sliding parts such as bearings, gears, bushes, spacers, rollers, and cams. Has been.

しかし、上記ポリアミドを摺動部に使用した場合、摩擦熱による温度上昇により、溶融すると同時に著しく摩耗する場合がある。また、ポリアミドは吸水により、寸法変化や物性低下を生起するため、改良が要請されている。   However, when the polyamide is used for the sliding portion, it may be worn at the same time as it melts due to a temperature rise due to frictional heat. In addition, polyamides are required to be improved because they cause dimensional changes and deterioration of physical properties due to water absorption.

1,4−ジアミノブタンとアジピン酸から製造されるポリアミド46は、融点が290℃と高く、結晶性も高く、ポリアミド6等に比べ耐摩耗性に優れる。ポリアミド46に超高分子量ポリエチレンを配合し、耐摩耗性をさらに向上した組成物が提案されている(例えば、特許文献1を参照。)。しかし、ポリアミド46は、ポリアド6等に比べて吸水性が高く、寸法変化や物性変化が大きいため、自動車分野等の用途に使用できない。   Polyamide 46 produced from 1,4-diaminobutane and adipic acid has a high melting point of 290 ° C., high crystallinity, and excellent wear resistance compared to polyamide 6 and the like. A composition in which ultrahigh molecular weight polyethylene is blended with polyamide 46 to further improve the wear resistance has been proposed (see, for example, Patent Document 1). However, since polyamide 46 has higher water absorption than polyad 6 and the like, and has large dimensional changes and physical property changes, it cannot be used in applications such as the automobile field.

半芳香族ポリアミドにフッ素油を配合して得た、耐摩耗性に優れる組成物が提案されている(例えば、特許文献2を参照。)。しかし、該組成物は耐磨耗性の耐久性が充分でなかった。
フッ素樹脂とポリアミド12との組成物が提案されている(例えば、特許文献3を参照。)が、該組成物は、吸水性が低いが耐摩耗性は充分でなかった。
A composition excellent in wear resistance obtained by blending fluorine oil with semi-aromatic polyamide has been proposed (see, for example, Patent Document 2). However, the composition was not sufficiently durable against abrasion.
Although a composition of a fluororesin and polyamide 12 has been proposed (see, for example, Patent Document 3), the composition has low water absorption but has insufficient wear resistance.

特開平8−134348号公報JP-A-8-134348 特開2004−107525号公報JP 2004-107525 A 特開2003−176394号公報JP 2003-176394 A

本発明の目的は、耐摩耗性及びその耐久性に優れるともに、低吸水性、寸法安定性、力学強度、耐熱性、耐薬品性、耐候性、ガスバリア性等に優れる含フッ素共重合体組成物及びそれからなる成形品を提供することである。   The object of the present invention is a fluorine-containing copolymer composition that is excellent in wear resistance and durability, and is excellent in low water absorption, dimensional stability, mechanical strength, heat resistance, chemical resistance, weather resistance, gas barrier properties, etc. And a molded article comprising the same.

本発明は、テトラフルオロエチレン及び/又はクロロトリフルオロエチレンに基づく繰り返し単位(a)、フッ素モノマー(ただし、テトラフルオロエチレン及びクロロトリフルオロエチレンを除く。)に基づく繰り返し単位(b)、及び酸無水物残基と重合性不飽和結合とを有するモノマーに基づく繰り返し単位(c)を含有し、((a)+(b)+(c))に対して(a)が50〜99.89モル%、(b)が0.1〜49.99モル%、(c)が0.01〜5モル%である含フッ素共重合体(A)と、ポリアミド66、ポリアミド46、ポリアミド6T、ポリアミドMXD6及びポリアミド9Tから選ばれる1種類以上の熱可塑性ポリアミド(B)とを含有し、含フッ素共重合体(A)/ポリアミド(B)の質量比が90/10〜10/90であり、前記含フッ素共重合体(A)は、テトラフルオロエチレン及び/又はクロロトリフルオロエチレン、前記フッ素モノマー、及び、前記酸無水物残基と重合性不飽和結合とを有するモノマー、をラジカル共重合して得たものであることを特徴とする含フッ素共重合体組成物を提供する。 The present invention relates to a repeating unit (a) based on tetrafluoroethylene and / or chlorotrifluoroethylene, a repeating unit (b) based on a fluorine monomer (excluding tetrafluoroethylene and chlorotrifluoroethylene), and an acid anhydride. A repeating unit (c) based on a monomer having a product residue and a polymerizable unsaturated bond, wherein (a) is 50 to 99.89 mol with respect to ((a) + (b) + (c)) %, (B) 0.1 to 49.99 mol%, and (c) 0.01 to 5 mol% of the fluorine-containing copolymer (A) , polyamide 66, polyamide 46, polyamide 6T, polyamide MXD6 and containing the one or more thermoplastic polyamides selected from polyamides 9T (B), the mass ratio of the fluorocopolymer (a) / polyamide (B) is 90 / 10-10 90 der is, the fluorine-containing copolymer (A), tetrafluoroethylene and / or chlorotrifluoroethylene, the fluorine monomer, and a monomer having a polymerizable unsaturated bond and the acid anhydride residue, A fluorine-containing copolymer composition characterized by being obtained by radical copolymerization of

また、本発明は、前記含フッ素共重合体組成物が成形されてなる成形品を提供する。   The present invention also provides a molded article obtained by molding the fluorine-containing copolymer composition.

本発明の含フッ素共重合体組成物は、摩擦係数が小さく、耐摩耗性及びその耐久性に優れる。また、低吸水性、寸法安定性、力学特性、耐熱性、耐薬品性、耐候性、ガスバリア性に優れる。   The fluorine-containing copolymer composition of the present invention has a small friction coefficient and is excellent in wear resistance and durability. In addition, it has excellent low water absorption, dimensional stability, mechanical properties, heat resistance, chemical resistance, weather resistance, and gas barrier properties.

本発明における含フッ素共重合体(A)は、テトラフルオロエチレン(以下、TFEという。)及び/又はクロロトリフルオロエチレン(以下、CTFEという。)に基づく繰り返し単位(a)、フッ素モノマー(ただし、TFE及びCTFEを除く。)に基づく繰り返し単位(b)、及び酸無水物残基と重合性不飽和結合とを有するモノマーに基づく繰り返し単位(c)を含有する。   The fluorine-containing copolymer (A) in the present invention is a repeating unit (a) based on tetrafluoroethylene (hereinafter referred to as TFE) and / or chlorotrifluoroethylene (hereinafter referred to as CTFE), a fluorine monomer (however, A repeating unit (b) based on (excluding TFE and CTFE)) and a repeating unit (c) based on a monomer having an acid anhydride residue and a polymerizable unsaturated bond.

本発明におけるフッ素モノマーとしては、フッ化ビニル、フッ化ビニリデン(以下、VdFという。)、トリフルオロエチレン、ヘキサフルオロプロピレン(以下、HFPという。)等のフルオロオレフィン、CF=CFOR(ここで、Rは炭素原子数1から10の酸素原子を含んでもよいペルフルオロアルキル基。)、CF=CFORSO(Rは炭素原子数1〜10の酸素原子を含んでもよいペルフルオロアルキル基、Xはハロゲン原子又は水酸基。)、CF=CFORCO(ここで、Rは炭素原子数1から10の酸素原子を含んでもよいペルフルオロアルキル基、Xは水素原子又は炭素数3以下のアルキル基。)、CF=CF(CFOCF=CF(ここで、pは1又は2。)、CH=CX(CF(ここで、Xは水素原子又はフッ素原子、qは2から10の整数、Xは水素原子又はフッ素原子。)及びペルフルオロ(2−メチレン−4−メチル−1、3−ジオキソラン)等が挙げられる。 As the fluorine monomer in the present invention, fluoroolefin such as vinyl fluoride, vinylidene fluoride (hereinafter referred to as VdF), trifluoroethylene, hexafluoropropylene (hereinafter referred to as HFP), CF 2 = CFOR 1 (here , R 1 may be a perfluoroalkyl group that may contain an oxygen atom having 1 to 10 carbon atoms.), CF 2 = CFOR 2 SO 2 X 1 (R 2 may contain an oxygen atom having 1 to 10 carbon atoms) An alkyl group, X 1 is a halogen atom or a hydroxyl group.), CF 2 = CFOR 3 CO 2 X 2 (wherein R 3 is a perfluoroalkyl group which may contain an oxygen atom having 1 to 10 carbon atoms, X 2 is hydrogen) atom or alkyl group having 3 or less carbon atoms.), CF 2 = CF ( CF 2) p OCF = CF 2 ( wherein, p is 1 Is 2.), CH 2 = CX 3 (CF 2) q X 4 ( wherein, X 3 represents a hydrogen atom or a fluorine atom, q is from 2 to 10 integer, X 4 is a hydrogen atom or a fluorine atom.) And perfluoro (2-methylene-4-methyl-1,3-dioxolane) and the like.

好ましくは、VdF、HFP、CF=CFOR及びCH=CX(CFからなる群から選ばれる1種以上であり、より好ましくは、CF=CFOR又はCH=CX(CFである。
CF=CFORとしては、CF=CFOCFCF、CF=CFOCFCFCF、CF=CFOCFCFCFCF、CF=CFO(CFF等が挙げられる。好ましくは、CF=CFOCFCFCFである。
CH=CX(CFとしては、CH=CH(CFF、CH=CH(CFF、CH=CH(CFF、CH=CF(CFH、CH=CF(CFH等が挙げられる。好ましくは、CH=CH(CFF又はCH=CH(CFFである。
Preferably, it is one or more selected from the group consisting of VdF, HFP, CF 2 = CFOR 1 and CH 2 = CX 3 (CF 2 ) q X 4 , more preferably CF 2 = CFOR 1 or CH 2 = CX 3 (CF 2 ) q X 4 .
CF 2 = CFO 1 includes CF 2 = CFOCF 2 CF 3 , CF 2 = CFOCF 2 CF 2 CF 3 , CF 2 = CFOCF 2 CF 2 CF 2 CF 3 , CF 2 = CFO (CF 2 ) 8 F, and the like. Can be mentioned. Preferably, a CF 2 = CFOCF 2 CF 2 CF 3.
As CH 2 = CX 3 (CF 2 ) q X 4 , CH 2 = CH (CF 2 ) 2 F, CH 2 = CH (CF 2 ) 3 F, CH 2 = CH (CF 2 ) 4 F, CH 2 ═CF (CF 2 ) 3 H, CH 2 ═CF (CF 2 ) 4 H, and the like. Preferably, CH 2 ═CH (CF 2 ) 4 F or CH 2 ═CH (CF 2 ) 2 F.

本発明における酸無水物残基と重合性不飽和結合とを有するモノマー(以下、AMモノマーともいう。)としては、無水イタコン酸(以下、IAHという。)、無水シトラコン酸(以下、CAHという。)、5−ノルボルネン−2,3−ジカルボン酸無水物(以下、NAHという。)、無水マレイン酸等が挙げられる。好ましくは、IAH、CAH及びNAHからなる群から選ばれる1種以上であり、より好ましくは、IAH又はCAHである。
IAH、CAH及びNAHからなる群から選ばれる1種以上を用いると無水マレイン酸を用いた場合に必要となる特殊な重合方法(特開平11−193312号を参照。)を用いないで、酸無水物残基を含有する含フッ素共重合体が容易に製造できるのでより好ましい。
As the monomer having an acid anhydride residue and a polymerizable unsaturated bond (hereinafter also referred to as AM monomer) in the present invention, itaconic anhydride (hereinafter referred to as IAH) and citraconic anhydride (hereinafter referred to as CAH). ), 5-norbornene-2,3-dicarboxylic acid anhydride (hereinafter referred to as NAH), maleic anhydride and the like. Preferably, it is at least one selected from the group consisting of IAH, CAH and NAH, more preferably IAH or CAH.
When at least one selected from the group consisting of IAH, CAH and NAH is used, acid anhydride can be used without using a special polymerization method (see JP-A-11-19312) required when maleic anhydride is used. A fluorine-containing copolymer containing a residue is more preferable because it can be easily produced.

本発明における含フッ素共重合体(A)において、((a)+(b)+(c))に対して(a)が50〜99.89モル%、(b)が0.1〜49.99モル%、(c)が0.01〜5モル%である。好ましくは、繰り返し単位(a)が50〜99.4モル%、繰り返し単位(b)が0.5〜49.9モル%、繰り返し単位(c)が0.1〜3モル%であり、より好ましくは、繰り返し単位(a)が50〜98.9モル%、繰り返し単位(b)が1〜49.9モル%、繰り返し単位(c)が0.1〜2モル%である。   In the fluorine-containing copolymer (A) in the present invention, (a) is 50 to 99.89 mol% and (b) is 0.1 to 49 with respect to ((a) + (b) + (c)). .99 mol% and (c) is 0.01 to 5 mol%. Preferably, the repeating unit (a) is 50 to 99.4 mol%, the repeating unit (b) is 0.5 to 49.9 mol%, the repeating unit (c) is 0.1 to 3 mol%, and more Preferably, the repeating unit (a) is 50 to 98.9 mol%, the repeating unit (b) is 1 to 49.9 mol%, and the repeating unit (c) is 0.1 to 2 mol%.

繰り返し単位(a)、(b)及び(c)の含有量がこの範囲にあると、含フッ素共重合体(A)は、耐熱性、耐薬品性に優れ、含フッ素共重合体組成物は、耐摩耗性に優れる。繰り返し単位(b)の含有量がこの範囲にあると、含フッ素共重合体は、成形性に優れ、耐ストレスクラック性等の機械物性に優れる。繰り返し単位(c)の含有量がこの範囲にあると、含フッ素共重合体(A)は、ポリアミド(B)との接着性に優れる。   When the content of the repeating units (a), (b) and (c) is in this range, the fluorinated copolymer (A) is excellent in heat resistance and chemical resistance, and the fluorinated copolymer composition is Excellent wear resistance. When the content of the repeating unit (b) is within this range, the fluorine-containing copolymer is excellent in moldability and mechanical properties such as stress crack resistance. When content of a repeating unit (c) exists in this range, a fluorine-containing copolymer (A) is excellent in adhesiveness with a polyamide (B).

なお、本発明における含フッ素共重合体には、AMモノマーが加水分解して得られる、イタコン酸、シトラコン酸、5−ノルボルネン−2,3−ジカルボン酸、マレイン酸等のジカルボン酸に基づく繰り返し単位が含まれていてもよい。該ジカルボン酸に基づく繰り返し単位が含有される場合には、上記繰り返し単位(c)の含有量としては、AMモノマーに基づく繰り返し単位とジカルボン酸に基づく繰り返し単位の合計量を表すものとする。
本発明の含フッ素共重合体において、全繰り返し単位に対する((a)+(b)+(c))は、60モル%以上が好ましく、65モル%以上がより好ましく、68モル%以上が最も好ましい。
In addition, the fluorine-containing copolymer in the present invention includes a repeating unit based on dicarboxylic acid such as itaconic acid, citraconic acid, 5-norbornene-2,3-dicarboxylic acid, maleic acid, etc., obtained by hydrolysis of AM monomer. May be included. When the repeating unit based on the dicarboxylic acid is contained, the content of the repeating unit (c) represents the total amount of the repeating unit based on the AM monomer and the repeating unit based on the dicarboxylic acid.
In the fluorine-containing copolymer of the present invention, ((a) + (b) + (c)) with respect to all repeating units is preferably 60 mol% or more, more preferably 65 mol% or more, and most preferably 68 mol% or more. preferable.

本発明における含フッ素共重合体(A)は、繰り返し単位(a)、(b)、(c)に加えて、さらに非フッ素モノマー(ただし、AMモノマーを除く。)に基づく繰り返し単位(d)を含有することも好ましい。
該非フッ素モノマーとしては、エチレン(以下、Eという。)、プロピレン(以下、Pという。)等の炭素数3以下のオレフィン、酢酸ビニル(以下、VOAという。)等のビニルエステル、エチルビニルエーテル、シクロヘキシルビニルエーテル等のビニルエーテル等が挙げられる。好ましくは、E、P又はVOAである。より好ましくは、Eである。
繰り返し単位(d)を含有する場合には、その含有量は、((a)+(b)+(c))/(d)のモル比が100/5〜100/90が好ましく、100/5〜100/80がより好ましく、100/10〜100/65が最も好ましい。
The fluorine-containing copolymer (A) in the present invention includes a repeating unit (d) based on a non-fluorine monomer (excluding an AM monomer) in addition to the repeating units (a), (b) and (c). It is also preferable to contain.
Examples of the non-fluorine monomer include olefins having 3 or less carbon atoms such as ethylene (hereinafter referred to as E) and propylene (hereinafter referred to as P), vinyl esters such as vinyl acetate (hereinafter referred to as VOA), ethyl vinyl ether, and cyclohexyl. And vinyl ethers such as vinyl ether. E, P or VOA is preferable. More preferably, it is E.
When the repeating unit (d) is contained, the content thereof is preferably such that the molar ratio of ((a) + (b) + (c)) / (d) is 100/5 to 100/90, 5-100 / 80 is more preferable, and 100 / 10-100 / 65 is most preferable.

本発明における含フッ素共重合体(A)の好ましい具体例としては、TFE/CF=CFOCFCFCF/IAH共重合体、TFE/CF=CFOCFCFCF/CAH共重合体、TFE/HFP/IAH共重合体、TFE/HFP/CAH共重合体、TFE/VdF/IAH共重合体、TFE/VdF/CAH共重合体、TFE/CH=CH(CFF/IAH/E共重合体、TFE/CH=CH(CFF/CAH/エチレン共重合体、TFE/CH=CH(CFF/IAH/E共重合体、TFE/CH=CH(CFF/CAH/E共重合体、CTFE/CH=CH(CFF/IAH/E共重合体、CTFE/CH=CH(CFF/CAH/E共重合体、CTFE/CH=CH(CFF/IAH/E共重合体、CTFE/CH=CH(CFF/CAH/E共重合体等が挙げられる。 Preferable specific examples of the fluorine-containing copolymer (A) in the present invention include TFE / CF 2 = CFOCF 2 CF 2 CF 3 / IAH copolymer, TFE / CF 2 = CFOCF 2 CF 2 CF 3 / CAH copolymer. Copolymer, TFE / HFP / IAH copolymer, TFE / HFP / CAH copolymer, TFE / VdF / IAH copolymer, TFE / VdF / CAH copolymer, TFE / CH 2 = CH (CF 2 ) 4 F / IAH / E copolymer, TFE / CH 2 ═CH (CF 2 ) 4 F / CAH / ethylene copolymer, TFE / CH 2 ═CH (CF 2 ) 2 F / IAH / E copolymer, TFE / CH 2 = CH (CF 2) 2 F / CAH / E copolymer, CTFE / CH 2 = CH ( CF 2) 4 F / IAH / E copolymer, CTFE / CH 2 = CH ( CF 2) 4 F / CAH / E copolymer, CTFE / CH 2 ═CH (CF 2 ) 2 F / IAH / E copolymer, CTFE / CH 2 ═CH (CF 2 ) 2 F / CAH / E copolymer, etc. .

本発明における含フッ素共重合体(A)の高分子末端基として、エステル基、カーボネート基、水酸基、カルボキシル基、カルボニルフルオリド基、酸無水物等の官能基を有することも、含フッ素共重合体(A)とポリアミド(B)とが良好に混合するので好ましい。該高分子末端基は、含フッ素共重合体(A)の製造時に使用される、ラジカル重合開始剤、連鎖移動剤等を適宜選定することにより導入することが好ましい。   The fluorine-containing copolymer (A) in the present invention may have a functional group such as an ester group, a carbonate group, a hydroxyl group, a carboxyl group, a carbonyl fluoride group, or an acid anhydride as a polymer terminal group. The blend (A) and the polyamide (B) are preferable because they are mixed well. The polymer end group is preferably introduced by appropriately selecting a radical polymerization initiator, a chain transfer agent and the like used in the production of the fluorine-containing copolymer (A).

本発明に用いられる含フッ素共重合体(A)の溶融粘度は、実施例に記載の方法で測定される230℃〜350℃におけるMFR(Melt Flow Rate)値で、0.5〜100g/10分であることが好ましく、1〜30g/10分がより好ましく、5〜20g/10分が最も好ましい。MFR値は、分子量の目安であり、この値が大きい分子量が低く、小さいと分子量が大きいことを示す。小さいと成形加工性及び成形品の外観が充分でなく、大きいと機械強度が低い。この範囲内にあると組成物を成形してなる成形品が、平滑性に優れ、かつ機械特性、ガスバリア性に優れる。   The melt viscosity of the fluorine-containing copolymer (A) used in the present invention is an MFR (Melt Flow Rate) value at 230 ° C. to 350 ° C. measured by the method described in Examples, and is 0.5 to 100 g / 10. Minute, preferably 1 to 30 g / 10 minutes, and most preferably 5 to 20 g / 10 minutes. The MFR value is a measure of the molecular weight. When this value is large, the molecular weight is low, and when it is small, the molecular weight is large. If it is small, the moldability and the appearance of the molded product are not sufficient, and if it is large, the mechanical strength is low. Within this range, a molded product obtained by molding the composition is excellent in smoothness, mechanical properties and gas barrier properties.

本発明における含フッ素共重合体(A)の製造方法としては、特に制限はなく、ラジカル重合開始剤を用いる重合方法が用いられる。該重合方法としては、塊状重合、フッ化炭化水素、塩化炭化水素、フッ化塩化炭化水素、アルコール、炭化水素等の有機溶媒を使用する溶液重合、水性媒体及び必要に応じて適当な有機溶剤を使用する懸濁重合、水性媒体及び乳化剤を使用する乳化重合が挙げられ、特に溶液重合が好ましい。   There is no restriction | limiting in particular as a manufacturing method of the fluorine-containing copolymer (A) in this invention, The polymerization method using a radical polymerization initiator is used. Examples of the polymerization method include bulk polymerization, solution polymerization using an organic solvent such as fluorinated hydrocarbon, chlorohydrocarbon, fluorinated chlorohydrocarbon, alcohol, hydrocarbon, an aqueous medium, and an appropriate organic solvent as necessary. Examples include suspension polymerization to be used, emulsion polymerization using an aqueous medium and an emulsifier, and solution polymerization is particularly preferable.

ラジカル重合開始剤としては、その半減期が10時間である温度が、0℃〜100℃であることが好ましく、20〜90℃であることがより好ましい。具体例としては、アゾビスイソブチロニトリル等のアゾ化合物、イソブチリルペルオキシド、オクタノイルペルオキシド、ベンゾイルペルオキシド、ラウロイルペルオキシド等の非フッ素系ジアシルペルオキシド、ジイソプロピルペルオキシジカ−ボネート等のペルオキシジカーボネート、tert−ブチルペルオキシピバレート、tert−ブチルペルオキシイソブチレート、tert−ブチルペルオキシアセテート等のペルオキシエステル、(Z(CFCOO)(ここで、Zは水素原子、フッ素原子又は塩素原子であり、rは1〜10の整数である。)で表される化合物等の含フッ素ジアシルペルオキシド、過硫酸カリウム、過硫酸ナトリウム、過硫酸アンモニウム等の無機過酸化物等が挙げられる。 As a radical polymerization initiator, the temperature at which the half-life is 10 hours is preferably 0 ° C. to 100 ° C., more preferably 20 to 90 ° C. Specific examples include azo compounds such as azobisisobutyronitrile, non-fluorine diacyl peroxides such as isobutyryl peroxide, octanoyl peroxide, benzoyl peroxide and lauroyl peroxide, peroxydicarbonates such as diisopropylperoxydicarbonate, tert - butyl peroxypivalate, tert- butylperoxy isobutyrate, tert- butyl peroxy ester peroxy acetate, etc., 2 (where (Z (CF 2) r COO ), Z represents a hydrogen atom, a fluorine atom or a chlorine atom , R is an integer of 1 to 10.) Fluorine-containing diacyl peroxide such as a compound represented by formula (I), inorganic peroxides such as potassium persulfate, sodium persulfate, and ammonium persulfate.

本発明において、含フッ素共重合体の溶融粘度を制御するために、連鎖移動剤を使用することも好ましい。連鎖移動剤としては、メタノール、エタノール等のアルコール、1,3−ジクロロ−1,1,2,2,3−ペンタフルオロプロパン、1,1−ジクロロ−1−フルオロエタン等のクロロフルオロハイドロカーボン、ペンタン、ヘキサン、シクロヘキサン等のハイドロカーボンが挙げられる。また、エステル基、カーボネート基、水酸基、カルボキシ基、カルボニルフルオリド基等の官能基を有する連鎖移動剤を用いると含フッ素共重合体に接着性の高分子末端基が導入されるので好ましい。該連鎖移動剤としては、酢酸、無水酢酸、酢酸メチル、エチレングリコール、プロピレングリコール等が挙げられる。   In the present invention, it is also preferable to use a chain transfer agent in order to control the melt viscosity of the fluorinated copolymer. Chain transfer agents include alcohols such as methanol and ethanol, chlorofluorohydrocarbons such as 1,3-dichloro-1,1,2,2,3-pentafluoropropane, 1,1-dichloro-1-fluoroethane, Hydrocarbons such as pentane, hexane, and cyclohexane are listed. In addition, it is preferable to use a chain transfer agent having a functional group such as an ester group, a carbonate group, a hydroxyl group, a carboxy group, or a carbonyl fluoride group because an adhesive polymer terminal group is introduced into the fluorine-containing copolymer. Examples of the chain transfer agent include acetic acid, acetic anhydride, methyl acetate, ethylene glycol, propylene glycol and the like.

重合条件は特に限定されず、重合温度は0〜100℃が好ましく、20〜90℃がより好ましい。重合圧力は0.1〜10MPaが好ましく、0.5〜3MPaがより好ましい。重合時間は1〜30時間が好ましい。
重合中のAMモノマーの濃度は、全モノマーに対して0.01〜5%が好ましく、0.1〜3%がより好ましく、0.1〜1%が最も好ましい。AMモノマーの濃度が高すぎると、重合速度が低下する傾向となる。前記範囲にあると製造時の重合速度が適度で、かつ、得られる含フッ素共重合体(A)は、ポリアミド(B)との接着性に優れる。重合中、AMモノマーが重合で消費されるに従って、消費された量を連続的又は断続的に重合槽内に供給し、AMモノマーの濃度をこの範囲に維持することが好ましい。
The polymerization conditions are not particularly limited, and the polymerization temperature is preferably 0 to 100 ° C, more preferably 20 to 90 ° C. The polymerization pressure is preferably from 0.1 to 10 MPa, more preferably from 0.5 to 3 MPa. The polymerization time is preferably 1 to 30 hours.
The concentration of the AM monomer during the polymerization is preferably 0.01 to 5%, more preferably 0.1 to 3%, and most preferably 0.1 to 1% with respect to all monomers. When the concentration of the AM monomer is too high, the polymerization rate tends to decrease. Within the above range, the polymerization rate during production is moderate, and the resulting fluorinated copolymer (A) is excellent in adhesion to the polyamide (B). During the polymerization, as the AM monomer is consumed in the polymerization, it is preferable to supply the consumed amount into the polymerization tank continuously or intermittently to maintain the concentration of the AM monomer within this range.

本発明におけるポリアミド(B)としては、ポリアミド6(PA6)、ポリアミド66(PA66)、ポリアミド46(PA46)、ポリアミド11(PA11)、ポリアミド12(PA12)、ポリアミド610(PA610)、ポリアミド612(PA612)、ポリアミド6/66コポリマー(PA6/66)、ポリアミド6/66/610コポリマー(PA6/66/610)、ポリアミドMXD6(MXD6)、ポリアミド6T、ポリアミド9T、ポリアミド6/6Tコポリマーから選ばれる1種類以上の熱可塑性ポリアミドであることが好ましい。なかでも、PA66、PA46、ポリアミド6T、MXD6及びポリアミド9Tから選ばれる1種類以上の熱可塑性ポリアミドであることが好ましい。さらにPA46又は/及びポリアミド9Tであることが最も好ましい。なお、Tはテレフタル酸を意味する。これらのポリアミドを用いると含フッ素共重合体組成物が、力学強度及びその耐熱性、低吸水性、寸法安定性、耐薬品性、耐候性等に優れる。   As the polyamide (B) in the present invention, polyamide 6 (PA6), polyamide 66 (PA66), polyamide 46 (PA46), polyamide 11 (PA11), polyamide 12 (PA12), polyamide 610 (PA610), polyamide 612 (PA612) ), Polyamide 6/66 copolymer (PA6 / 66), polyamide 6/66/610 copolymer (PA6 / 66/610), polyamide MXD6 (MXD6), polyamide 6T, polyamide 9T, polyamide 6 / 6T copolymer The above thermoplastic polyamide is preferable. Among these, one or more thermoplastic polyamides selected from PA66, PA46, polyamide 6T, MXD6, and polyamide 9T are preferable. Further, PA46 or / and polyamide 9T are most preferable. T means terephthalic acid. When these polyamides are used, the fluorine-containing copolymer composition is excellent in mechanical strength and heat resistance, low water absorption, dimensional stability, chemical resistance, weather resistance and the like.

本発明におけるポリアミド(B)は、その高分子鎖末端を封止剤により封止することも好ましい。
末端封止剤としては、ポリアミド(B)の末端のアミノ基又はカルボキシル基と反応性を有する官能基を1個有する化合物が好ましい。特に、反応性及び封止された末端の安定性等に優れる、モノカルボン酸又はモノアミンがより好ましく、取扱性に優れるモノカルボン酸が最も好ましい。その他に、無水フタル酸等の酸無水物、イソシアネート類、酸ハロゲン化物類、エステル類、モノアルコール類等も使用できる。
It is also preferable that the polyamide (B) in the present invention has its polymer chain end sealed with a sealant.
As the end-capping agent, a compound having one functional group having reactivity with the terminal amino group or carboxyl group of the polyamide (B) is preferable. In particular, monocarboxylic acids or monoamines that are excellent in reactivity, stability of the sealed end, and the like are more preferable, and monocarboxylic acids that are excellent in handleability are most preferable. In addition, acid anhydrides such as phthalic anhydride, isocyanates, acid halides, esters, monoalcohols, and the like can be used.

該モノカルボン酸の具体例としては、酢酸、プロピオン酸、酪酸、吉草酸、カプロン酸、カプリル酸、ラウリン酸、トリデカン酸、ミリスチン酸、パルミチン酸、ステアリン酸、ピバリン酸、イソ酪酸等の脂肪族モノカルボン酸類、シクロヘキサンカルボン酸等の脂環式モノカルボン酸類、安息香酸、トルイル酸、α−ナフタレンカルボン酸、β−ナフタレンカルボン酸、メチルナフタレンカルボン酸等の芳香族モノカルボン酸類、及びこれらの混合物等が挙げられる。なかでも、反応性、封止末端の安定性に優れ、安価である、酢酸、プロピオン酸、酪酸、吉草酸、カプロン酸、カプリル酸、ラウリン酸、トリデカン酸、ミリスチン酸、パルミチン酸、ステアリン酸及び安息香酸が好ましい。   Specific examples of the monocarboxylic acid include aliphatic acids such as acetic acid, propionic acid, butyric acid, valeric acid, caproic acid, caprylic acid, lauric acid, tridecanoic acid, myristic acid, palmitic acid, stearic acid, pivalic acid, and isobutyric acid. Monocarboxylic acids, alicyclic monocarboxylic acids such as cyclohexanecarboxylic acid, benzoic acid, toluic acid, α-naphthalenecarboxylic acid, β-naphthalenecarboxylic acid, aromatic monocarboxylic acids such as methylnaphthalenecarboxylic acid, and mixtures thereof Etc. Among them, it is excellent in reactivity, stability at the sealing end, and inexpensive, acetic acid, propionic acid, butyric acid, valeric acid, caproic acid, caprylic acid, lauric acid, tridecanoic acid, myristic acid, palmitic acid, stearic acid and Benzoic acid is preferred.

該モノアミンの具体例としては、メチルアミン、エチルアミン、プロピルアミン、ブチルアミン、ヘキシルアミン、オクチルアミン、デシルアミン、ステアリルアミン、ジメチルアミン、ジエチルアミン、ジプロピルアミン、ジブチルアミン等の脂肪族モノアミン類、シクロヘキシルアミン、ジシクロヘキシルアミン等の脂環式モノアミン類、アニリン、トルイジン、ジフェニルアミン、ナフチルアミン等の芳香族モノアミン類、及びこれらの混合物等が挙げられる。なかでも、高沸点で、反応性、封止末端の安定性に優れ、安価である、ブチルアミン、ヘキシルアミン、オクチルアミン、デシルアミン、ステアリルアミン、シクロヘキシルアミン及びアニリンが好ましい。   Specific examples of the monoamine include aliphatic monoamines such as methylamine, ethylamine, propylamine, butylamine, hexylamine, octylamine, decylamine, stearylamine, dimethylamine, diethylamine, dipropylamine, dibutylamine, cyclohexylamine, Examples include alicyclic monoamines such as dicyclohexylamine, aromatic monoamines such as aniline, toluidine, diphenylamine, and naphthylamine, and mixtures thereof. Of these, butylamine, hexylamine, octylamine, decylamine, stearylamine, cyclohexylamine, and aniline, which have a high boiling point, are excellent in reactivity, are excellent in stability at the sealing end, and are inexpensive, are preferable.

本発明に用いられるポリアミド(B)は、MFR値が230℃〜350℃において0.5〜200g/10分であることが好ましく、1〜100g/10分がより好ましく、3〜50g/10分が最も好ましい。この範囲内にあると成形品が平滑性に優れ、かつ機械特性にも優れる。   The polyamide (B) used in the present invention preferably has an MFR value of 0.5 to 200 g / 10 min at 230 ° C. to 350 ° C., more preferably 1 to 100 g / 10 min, and 3 to 50 g / 10 min. Is most preferred. Within this range, the molded article has excellent smoothness and excellent mechanical properties.

本発明の含フッ素共重合体組成物は、さらに無機フィラー(C)を含有することも好ましい。無機フィラー(C)の具体例としては、繊維状フィラー類(ガラス繊維、炭素繊維、ホウ素繊維、アラミド繊維、液晶ポリエステル繊維、ステンレス鋼マイクロファイバー等)、粉末状フィラー類(タルク、マイカ、グラファイト、二硫化モリブデン、ポリテトラフルオロエチレン、炭酸カルシウム、シリカ、シリカアルミナ、アルミナ、二酸化チタン等)、導電性フィラー(カーボンナノチューブ、カーボンナノホーン、アセチレンブラック、ケッチェンブラック等のカーボンブラック類等)、低融点金属等が挙げられる。   The fluorine-containing copolymer composition of the present invention preferably further contains an inorganic filler (C). Specific examples of the inorganic filler (C) include fibrous fillers (glass fiber, carbon fiber, boron fiber, aramid fiber, liquid crystal polyester fiber, stainless steel microfiber, etc.), powdery fillers (talc, mica, graphite, Molybdenum disulfide, polytetrafluoroethylene, calcium carbonate, silica, silica alumina, alumina, titanium dioxide, etc.), conductive filler (carbon blacks such as carbon nanotubes, carbon nanohorns, acetylene black, ketjen black), low melting point Metal etc. are mentioned.

これらの無機フィラーは1種単独で用いてもよく、2種以上を併用してもよい。含フッ素共重合体組成物中の無機フィラー(C)の含有量は、(含フッ素共重合体(A)+ポリアミド(B))/無機フィラー(C)が質量比で90/10〜50/50であることが好ましい。この範囲にあると、含フッ素共重合体組成物は、機械的特性や導電性に優れる。   These inorganic fillers may be used alone or in combination of two or more. The content of the inorganic filler (C) in the fluorine-containing copolymer composition is such that (fluorine-containing copolymer (A) + polyamide (B)) / inorganic filler (C) is 90/10 to 50 / in mass ratio. 50 is preferable. Within this range, the fluorine-containing copolymer composition is excellent in mechanical properties and conductivity.

上記繊維状フィラー類としては、補強効果と摺動性に優れる、ガラス繊維、炭素繊維及びアラミド繊維が好ましく、アラミド繊維及び炭素繊維がより好ましい。上記粉末状フィラーとしては、摺動性に優れる、タルク、マイカ、二硫化モリブデン及びグラファイトが好ましい。   As said fibrous filler, the glass fiber, carbon fiber, and aramid fiber which are excellent in the reinforcement effect and sliding property are preferable, and an aramid fiber and carbon fiber are more preferable. As the powder filler, talc, mica, molybdenum disulfide and graphite, which are excellent in slidability, are preferable.

上記導電性フィラーとしては、炭素系導電性フィラーが好ましい。炭素系導電性フィラーは、BET比表面積が50〜1000m/gであり、かつDBP吸油量が100ml/100g〜1000ml/100gである炭素系導電性フィラーであることが好ましく、BET比表面積が60〜600m/gであり、かつDBP吸油量が150〜1000ml/100gであることがより好ましい。BET比表面積が小さすぎると導電性が低く、大きすぎると導電性フィラーが凝集し、含フッ素共重合体を成形して得られた成形品の表面平滑性が充分でない。DBP吸油量が小さすぎると導電性が低く、大きすぎると含フッ素共重合体を成形して得られた成形品の表面平滑性が充分でない。この範囲にあると導電性に優れ、成形して得られた成形品は表面平滑性に優れる。 As the conductive filler, a carbon-based conductive filler is preferable. The carbon-based conductive filler is preferably a carbon-based conductive filler having a BET specific surface area of 50 to 1000 m 2 / g and a DBP oil absorption of 100 ml / 100 g to 1000 ml / 100 g, and a BET specific surface area of 60. More preferably, it is ˜600 m 2 / g and the DBP oil absorption is 150 to 1000 ml / 100 g. If the BET specific surface area is too small, the conductivity is low, and if it is too large, the conductive filler aggregates, and the surface smoothness of the molded product obtained by molding the fluorine-containing copolymer is not sufficient. If the DBP oil absorption is too small, the conductivity is low, and if it is too large, the surface smoothness of the molded product obtained by molding the fluorine-containing copolymer is not sufficient. Within this range, the conductivity is excellent, and the molded product obtained by molding is excellent in surface smoothness.

カーボンナノチューブ及びカーボンナノホーンは、直径が3.5〜70nmであり、アスペクト比が5〜200であることが好ましく、直径が5〜60nmであり、アスペクト比が5〜200であることがより好ましく、直径が10〜55nmであり、アスペクト比が10〜100であることが最も好ましい。この範囲にあると成形品が表面平滑性に優れる。カーボンブラックは、平均粒子径が3.5〜70nmであることが好ましく、5〜50nmであることがより好ましく、10〜40nmであることが最も好ましい。この範囲にあると成形品が表面平滑性に優れる。   The carbon nanotube and the carbon nanohorn have a diameter of 3.5 to 70 nm, preferably an aspect ratio of 5 to 200, more preferably a diameter of 5 to 60 nm, and an aspect ratio of 5 to 200, Most preferably, the diameter is 10 to 55 nm and the aspect ratio is 10 to 100. When it is in this range, the molded product is excellent in surface smoothness. The carbon black preferably has an average particle size of 3.5 to 70 nm, more preferably 5 to 50 nm, and most preferably 10 to 40 nm. When it is in this range, the molded product is excellent in surface smoothness.

炭素系導電性フィラーの体積固有抵抗は、1×10−4〜1×10Ω/cmが好ましく、1×10−4〜10Ω/cmがより好ましく、1×10−4〜1Ω/cmが最も好ましい。 The volume resistivity of the carbon-based conductive filler is preferably 1 × 10 -4 ~1 × 10 2 Ω / cm, more preferably 1 × 10 -4 ~10Ω / cm, 1 × 10 -4 ~1Ω / cm is Most preferred.

無機フィラー(C)は、フィラーを単独で含フッ素共重合体組成物に配合してもよく、あらかじめ含フッ素共重合体(A)、ポリアミド(B)、含フッ素共重合体(A)及びポリアミド(B)以外の熱可塑性樹脂に分散させたマスターバッチを作成し、該マスターバッチを用いて、所定量を配合してもよい。   As for the inorganic filler (C), the filler alone may be blended in the fluorine-containing copolymer composition, and the fluorine-containing copolymer (A), the polyamide (B), the fluorine-containing copolymer (A) and the polyamide are preliminarily prepared. A master batch dispersed in a thermoplastic resin other than (B) may be prepared, and a predetermined amount may be blended using the master batch.

無機フィラー(C)を含有する含フッ素共重合体組成物の製造方法としては、含フッ素共重合体組成物(A)及びポリアミド(B)にドライブレンドする方法、押出機を用いて溶融混練する方法等が挙げられる。なかでも、操作の容易さの点から、押出機を用いて溶融混練する方法が好ましい。使用される押出機は、2軸スクリュータイプが好ましく、溶融混練温度は280〜380℃が好ましい。滞留時間は、10秒以上10分以下が好ましい。スクリュー回転数は、50rpm以上1500rpm以下が好ましい。   As a method for producing a fluorine-containing copolymer composition containing an inorganic filler (C), a method of dry blending with a fluorine-containing copolymer composition (A) and a polyamide (B), and melt-kneading using an extruder Methods and the like. Of these, the method of melt kneading using an extruder is preferred from the viewpoint of ease of operation. The extruder used is preferably a twin screw type, and the melt kneading temperature is preferably 280 to 380 ° C. The residence time is preferably 10 seconds or more and 10 minutes or less. The screw rotation speed is preferably 50 rpm or more and 1500 rpm or less.

本発明の含フッ素共重合体組成物は、その特性を大きく損なわない限り、含フッ素共重合体(A)及びポリアミド(B)以外の、その他の重合体を含有することも好ましい。その他の重合体の含有量は、含フッ素共重合体組成物の全質量に対して30質量%以下であることが好ましい。   The fluorine-containing copolymer composition of the present invention preferably contains another polymer other than the fluorine-containing copolymer (A) and the polyamide (B) as long as the characteristics thereof are not significantly impaired. The content of the other polymer is preferably 30% by mass or less with respect to the total mass of the fluorine-containing copolymer composition.

その他の重合体としては、ポリカーボネート、ポリエチレンテレフタレート、ポリブチレンテレフタレート、ポリアリレート、ポリカプロラクトン、フェノキシ樹脂、ポリスルホン、ポリエーテルスルホン、ポリエーテルケトン、ポリエーテルエーテルケトン、ポリエーテルイミド、ポリアミド6、ポリアミド66、ポリアミド11、ポリアミド12、ポリアミド610、ポリフェニレンオキシド、ポリフェニレンスルフィド、ポリテトラフルオロエチレン、ABS、PMMA、ポリプロピレン、ポリエチレン、ポリブタジエン、ブタジエン−スチレン共重合体、エチレン−プロピレン共重合体、EPDM、スチレン−ブタジエンブロック共重合体、ブタジエン−アクリロニトリル共重合体、アクリルゴム、スチレン−無水マレイン酸共重合体、スチレン−フェニルマレイミド共重合体等が挙げられる。   Other polymers include polycarbonate, polyethylene terephthalate, polybutylene terephthalate, polyarylate, polycaprolactone, phenoxy resin, polysulfone, polyethersulfone, polyetherketone, polyetheretherketone, polyetherimide, polyamide 6, polyamide 66, Polyamide 11, polyamide 12, polyamide 610, polyphenylene oxide, polyphenylene sulfide, polytetrafluoroethylene, ABS, PMMA, polypropylene, polyethylene, polybutadiene, butadiene-styrene copolymer, ethylene-propylene copolymer, EPDM, styrene-butadiene block Copolymer, butadiene-acrylonitrile copolymer, acrylic rubber, styrene-maleic anhydride copolymer , Styrene - phenylmaleimide copolymer and the like.

本発明の含フッ素共重合体組成物の成形方法としては、射出成形、押出成形、プレス成形、ブロー成形、カレンダー成形等が挙げられる。前記成形方法は、目的とする成形品の種類、用途、形状等に応じて適宜選択され、これらを2種以上を組合わせてもよい。   Examples of the molding method of the fluorine-containing copolymer composition of the present invention include injection molding, extrusion molding, press molding, blow molding, calendar molding and the like. The said shaping | molding method is suitably selected according to the kind of intended molded product, a use, a shape, etc., You may combine these 2 or more types.

以下に実施例を挙げて、本発明を詳細に説明するが、本発明はこれらに限定されない。
なお、含フッ素共重合体の共重合組成、融点、MFR、耐磨耗性、吸水性、燃料バリア性は、以下の方法により測定した。
[含フッ素共重合体の共重合組成]溶融NMR分析、フッ素含有量分析及び赤外吸収スペクトル分析を用いて算出した。
The present invention will be described in detail below with reference to examples, but the present invention is not limited thereto.
The copolymer composition, melting point, MFR, abrasion resistance, water absorption, and fuel barrier properties of the fluorinated copolymer were measured by the following methods.
[Copolymerization Composition of Fluorine-Containing Copolymer] Calculated by using melt NMR analysis, fluorine content analysis and infrared absorption spectrum analysis.

[融点(℃)]セイコー電子製DSC装置を用い、10℃/分の速度で昇温したときの融解ピークを記録し、極大値に対応する温度(℃)を融点(Tm)とした。   [Melting Point (° C.)] Using a DSC apparatus manufactured by Seiko Denshi, the melting peak when the temperature was raised at a rate of 10 ° C./min was recorded, and the temperature (° C.) corresponding to the maximum value was defined as the melting point (Tm).

[MFR(g/10分)]テクノセブン製メルトインデクサーを用い、各種温度、5kg荷重下で直径2mm、長さ8mmのノズルから単位時間として10分間に流出するポリマーの質量(g)を測定した。測定温度は230℃〜350℃の範囲で行った。
[耐摩耗性]回転式摩擦摩耗試験機で、対金属(SMC45)、荷重0.294MPa、速度30m/分で24時間摺動試験を行った。24時間後の摩耗量を測定した。また、動摩擦係数を求めた。磨耗量が少ないほど耐摩耗性に優れる。
[MFR (g / 10 min)] Using a Techno Seven melt indexer, the mass (g) of the polymer flowing out in 10 minutes as a unit time from a nozzle with a diameter of 2 mm and a length of 8 mm under various temperatures and 5 kg load was measured. did. The measurement temperature was 230 ° C to 350 ° C.
[Abrasion resistance] A sliding test was performed with a rotary friction and abrasion tester for 24 hours at a metal resistance (SMC45), a load of 0.294 MPa, and a speed of 30 m / min. The amount of wear after 24 hours was measured. In addition, the coefficient of dynamic friction was determined. The smaller the amount of wear, the better the wear resistance.

[吸水性(%)]JIS1号ダンベル型試験片を作製し、試験片を23℃の水中に24時間浸漬したときの質量増加分を測定し、浸漬前質量に対する割合(%)を算出し、吸水率とした。
[燃料透過率(g・mm/m・d)]約20mlの容積を有するSUS製容器に試験燃料(CE10;トルエン:イソオクタン:エタノール=45:45:10(容積比))を充填し、開放された片側を試験フィルムで密閉した後、60℃に保持し24時間あたりの質量変化が一定となった時点での燃料透過率を算出した。
[Water absorption (%)] A JIS No. 1 dumbbell-shaped test piece was prepared, and the mass increase when the test piece was immersed in water at 23 ° C. for 24 hours was measured, and the ratio (%) to the mass before immersion was calculated. The water absorption rate was used.
[Fuel permeability (g · mm / m 2 · d)] An SUS container having a volume of about 20 ml is filled with a test fuel (CE10; toluene: isooctane: ethanol = 45: 45: 10 (volume ratio)), After the opened one side was sealed with a test film, the fuel permeability at the time when the mass change per 24 hours was kept constant at 60 ° C. was calculated.

[実施例1]
内容積が94リットルの撹拌機付き重合槽を脱気し、1−ヒドロトリデカフルオロヘキサン(以下、HTFHという。)の71.3kg、1,3−ジクロロ−1,1,2,2,3−ペンタフルオロプロパン(旭硝子社製、AK225cb、以下、AK225cbという。)の20.4kg、CH=CH(CFFの562g、IAHの4.45gを仕込み、重合槽内を66℃に昇温し、TFE/Eのモル比で89/11の初期モノマー混合ガスで1.5MPa/Gまで昇圧した。重合開始剤としてtert−ブチルペルオキシピバレートの0.7%HTFH溶液の1Lを仕込み、重合を開始させた。重合中圧力が一定になるようにTFE/Eの59.5/40.5モル比のモノマー混合ガスを連続的に仕込んだ。また、重合中に仕込むTFEとEの合計モル数に対して3.3モル%に相当する量のCH=CH(CFFと0.8モル%に相当する量のIAHを連続的に仕込んだ。重合開始9.9時間後、モノマー混合ガスの7.28kgを仕込んだ時点で、重合槽内温を室温まで降温するとともに常圧までパージした。
[Example 1]
The polymerization tank equipped with a stirrer with an internal volume of 94 liters was degassed, and 71.3 kg of 1-hydrotridecafluorohexane (hereinafter referred to as HTFH), 1,3-dichloro-1,1,2,2,3 -20.4 kg of pentafluoropropane (manufactured by Asahi Glass Co., Ltd., AK225cb, hereinafter referred to as AK225cb), 562 g of CH 2 = CH (CF 2 ) 2 F, and 4.45 g of IAH were charged, and the inside of the polymerization tank was brought to 66 ° C. The temperature was raised and the pressure was increased to 1.5 MPa / G with an initial monomer mixed gas of 89/11 at a molar ratio of TFE / E. As a polymerization initiator, 1 L of a 0.7% HTFH solution of tert-butylperoxypivalate was charged to initiate polymerization. A monomer mixed gas of 59.5 / 40.5 molar ratio of TFE / E was continuously charged so that the pressure was constant during the polymerization. Further, CH 2 ═CH (CF 2 ) 2 F in an amount corresponding to 3.3 mol% and IAH in an amount corresponding to 0.8 mol% are continuously added to the total number of moles of TFE and E charged during the polymerization. I was charged. 9.9 hours after the start of polymerization, when 7.28 kg of the monomer mixed gas was charged, the temperature in the polymerization tank was lowered to room temperature and purged to normal pressure.

得られたスラリ状の含フッ素共重合体1を、水の77kgを仕込んだ200Lの造粒槽に投入し、撹拌下に室温から105℃まで昇温しつつ溶媒を留出除去して造粒した。得られた造粒物を150℃で15時間乾燥することにより、含フッ素共重合体1の造粒物1の6.9kgが得られた
含フッ素共重合体1の共重合組成は、TFEに基づく重合単位/CH=CH(CFFに基づく重合単位/IAHに基づく重合単位/Eに基づく重合単位のモル比で93.5/5.7/0.8/62.9(モル比)であった。融点は230℃であり、280℃でのMFRは20g/10分であった。
押出機を用いて、280℃、滞留時間2分の条件下に造粒物1を溶融し、押出して、含フッ素共重合体1のペレット1を作成した。
The obtained slurry-like fluorine-containing copolymer 1 was put into a 200 L granulation tank charged with 77 kg of water, and the solvent was distilled off and removed while raising the temperature from room temperature to 105 ° C. with stirring. did. By drying the obtained granulated product at 150 ° C. for 15 hours, 6.9 kg of the granulated product 1 of the fluorinated copolymer 1 was obtained. The copolymer composition of the fluorinated copolymer 1 was changed to TFE. 93.5 / 5.7 / 0.8 / 62.9 (molar ratio of polymer units based on / CH 2 ═CH (CF 2 ) 2 F / polymer units based on IAH / polymer units based on E Molar ratio). The melting point was 230 ° C., and the MFR at 280 ° C. was 20 g / 10 minutes.
Using an extruder, the granulated product 1 was melted and extruded under the conditions of 280 ° C. and a residence time of 2 minutes to produce pellets 1 of the fluorinated copolymer 1.

ペレット1の2.5kg、ポリアミドとしてポリアミド66(旭化成社製、REONA1500X11、以下、PA−1という。)の5.0kg、及び、無機フィラーとしてガラスファイバー(旭ファイバーグラス社製 チョップドストランド830A、以下GF830Aという。)の2.5kgをプリブレンドし、次いで、2軸押出機(東芝機械社製)を用いて、スクリュー径35mm、L/D=30、シリンダー温度310〜340℃、回転数400rpmの条件下に、溶融混練することにより含フッ素共重合体組成物1を得た。含フッ素共重合体組成物1の評価結果を表1に示す。   2.5 kg of pellets 1, 5.0 kg of polyamide 66 (manufactured by Asahi Kasei Co., Ltd., REONA 1500X11, hereinafter referred to as PA-1) as a polyamide, and glass fiber (chopped strand 830A, manufactured by Asahi Fiber Glass Co., Ltd., hereinafter GF830A) as an inorganic filler. 2.5 kg of pre-blended, and then using a twin screw extruder (manufactured by Toshiba Machine Co., Ltd.) under the conditions of screw diameter 35 mm, L / D = 30, cylinder temperature 310 to 340 ° C., and rotation speed 400 rpm. Below, the fluorine-containing copolymer composition 1 was obtained by melt-kneading. The evaluation results of the fluorine-containing copolymer composition 1 are shown in Table 1.

[実施例2]
実施例1においてペレット1の3.5kg、ポリアミドとしてポリアミド46(ディーエスエムジャパンエンジニアリングプラスチックス社製、STANYL TW441、以下、PA−2という。)の4.0kg、GF830Aの2.5kgを用いる以外は、実施例1と同様にして含フッ素共重合体組成物2を得た。含フッ素共重合体組成物2の評価結果を表1に示す。
[Example 2]
In Example 1, except that 3.5 kg of pellet 1 and 4.0 kg of polyamide 46 (manufactured by DSM Japan Engineering Plastics, STANY TW441, hereinafter referred to as PA-2) as polyamide and 2.5 kg of GF830A are used. In the same manner as in Example 1, a fluorinated copolymer composition 2 was obtained. The evaluation results of the fluorinated copolymer composition 2 are shown in Table 1.

[実施例3]
実施例1で用いた重合槽を脱気し、AK225cbの902kg、メタノールの0.216kg、CF=CFOCFCFCFの31.6kg、IAHの0.43kgを仕込み、重合槽内を50℃に昇温し、TFEを圧力が0.38MPaになるまで仕込んだ。重合開始剤溶液としてジ(ペルフルオロブチリル)ペルオキシドの0.25%AK225cb溶液の50mLを仕込み、重合を開始させた。重合中圧力が一定になるようにTFEを連続的に仕込んだ。重合中、該重合開始剤溶液を適宜添加し、TFEの仕込み速度をほぼ一定に保った。重合開始剤溶液は合計で120mL仕込んだ。また、連続的に仕込んだTFEの1モル%に相当する量のIAHを連続的に仕込んだ。重合開始6時間後にTFEの7.0kgを仕込んだ時点で、重合槽内を室温まで冷却するとともに、未反応TFEをパージした。
得られたスラリ状の含フッ素共重合体2を、水の75kgを仕込んだ200Lの造粒槽に投入し、撹拌下に室温から105℃まで昇温しつつ溶媒を留出除去しながら造粒した。得られた造粒物を150℃で5時間乾燥することにより、含フッ素共重合体2の造粒物2の7.5kgを得た。
含フッ素共重合体2の共重合組成は、TFEに基づく重合単位/CF=CFOCFCFCFに基づく重合単位/IAHに基づく重合単位=97.7/2.0/0.3(モル比)であった。融点は292℃、320℃でのMFRは15g/10分であった。
[Example 3]
The polymerization tank used in Example 1 was degassed, and 902 kg of AK225cb, 0.216 kg of methanol, 31.6 kg of CF 3 = CFOCF 2 CF 2 CF 3 and 0.43 kg of IAH were charged, and the inside of the polymerization tank was 50. The temperature was raised to 0 ° C., and TFE was charged until the pressure reached 0.38 MPa. As a polymerization initiator solution, 50 mL of a 0.25% AK225cb solution of di (perfluorobutyryl) peroxide was charged to initiate polymerization. TFE was continuously charged so that the pressure was constant during the polymerization. During the polymerization, the polymerization initiator solution was appropriately added to keep the TFE feed rate substantially constant. A total of 120 mL of the polymerization initiator solution was charged. Further, IAH in an amount corresponding to 1 mol% of continuously fed TFE was continuously charged. At the time when 7.0 kg of TFE was charged 6 hours after the start of polymerization, the inside of the polymerization tank was cooled to room temperature, and unreacted TFE was purged.
The obtained slurry-like fluorine-containing copolymer 2 is put into a 200 L granulation tank charged with 75 kg of water, and granulated while distilling and removing the solvent while raising the temperature from room temperature to 105 ° C. with stirring. did. The obtained granulated product was dried at 150 ° C. for 5 hours to obtain 7.5 kg of the granulated product 2 of the fluorinated copolymer 2.
The copolymer composition of the fluorinated copolymer 2 is as follows. Polymer unit based on TFE / CF 2 = polymer unit based on CFOCF 2 CF 2 CF 3 / polymer unit based on IAH = 97.7 / 2.0 / 0.3 ( Molar ratio). The melting point was 292 ° C., and the MFR at 320 ° C. was 15 g / 10 min.

押出機を用いて、320℃、滞留時間2分の条件下に造粒物2を溶融し、押出して、含フッ素共重合体2のペレット2を作成した。ペレット1に代えてペレット2の4.6kg、PA−2の5.4kg、を用い、ガラスファイバーを用いないこと以外は実施例2と同様にして含フッ素共重合体組成物3を得た。含フッ素共重合体組成物3の評価結果を表1に示す。   Using an extruder, the granulated product 2 was melted under conditions of 320 ° C. and a residence time of 2 minutes, and extruded to prepare pellets 2 of the fluorinated copolymer 2. Instead of pellet 1, 4.6 kg of pellet 2 and 5.4 kg of PA-2 were used, and a fluorinated copolymer composition 3 was obtained in the same manner as in Example 2 except that glass fiber was not used. The evaluation results of the fluorinated copolymer composition 3 are shown in Table 1.

[実施例4]
ペレット2の3.3kg、ポリアミドとしてガラス繊維を33%含有するポリアミド9T(クラレ社製、ジェネスタG2330、以下、PA−3という。)の6.7kgを用いた以外は実施例3と同様にして含フッ素共重合体組成物4を得た。含フッ素共重合体組成物4の評価結果を表1に示す。
[Example 4]
Example 3 was used except that 3.3 kg of pellet 2 and 6.7 kg of polyamide 9T containing 33% glass fiber as polyamide (Kuraray Co., Ltd., Genesta G2330, hereinafter referred to as PA-3) were used. A fluorinated copolymer composition 4 was obtained. The evaluation results of the fluorinated copolymer composition 4 are shown in Table 1.

[比較例1]
ペレット3としてTFE/ペルフルオロ(プロピルビニルエーテル)共重合体(旭硝子社製、FluonPFA P−63P、融点290℃、370℃でのMFRは6g/10分)の2.5kg、PA−2の5.0kg、GF830Aの2.5kgを用いた以外は実施例1と同様にして含フッ素共重合体組成物5を得た。含フッ素共重合体組成物5の評価結果を表1に示す。
[Comparative Example 1]
As pellet 3, 2.5 kg of TFE / perfluoro (propyl vinyl ether) copolymer (Asahi Glass Co., Ltd., FluonPFA P-63P, melting point 290 ° C., MFR at 370 ° C. is 6 g / 10 min), 5.0 kg of PA-2 A fluorinated copolymer composition 5 was obtained in the same manner as in Example 1 except that 2.5 kg of GF830A was used. The evaluation results of the fluorinated copolymer composition 5 are shown in Table 1.

[比較例2]
ペレット2の3.3kg、ポリアミドとしてポリアミド12(宇部興産社製、3030JI6L、以下PA−4とう。)の6.7kg、GF830Aを用いなかったこと以外は実施例3と同様にして含フッ素共重合体組成物6を得た。含フッ素共重合体組成物6の評価結果を表1に示す。
[Comparative Example 2]
3.3 kg of pellet 2, 6.7 kg of polyamide 12 (manufactured by Ube Industries, 3030JI6L, hereinafter referred to as PA-4) as polyamide, and fluorine-containing copolymer as in Example 3 except that GF830A was not used A combined composition 6 was obtained. The evaluation results of the fluorinated copolymer composition 6 are shown in Table 1.

Figure 0004661205
Figure 0004661205

本発明の含フッ素共重合体組成物は、耐摩耗性、耐熱性、耐薬品性、機械強度、耐摩耗性、成形性等に優れることから、軸受け、歯車、ブッシュ、スペーサー、ローラー、カム等の摺動部品等の用途に適する。また、燃料バリア性にも優れることからパイプ、チューブ、コネクター、タンク、ボトル等の自動車用燃料系部品等の用途にも適用できる。
Since the fluorine-containing copolymer composition of the present invention is excellent in wear resistance, heat resistance, chemical resistance, mechanical strength, wear resistance, moldability, etc., bearings, gears, bushes, spacers, rollers, cams, etc. Suitable for applications such as sliding parts. In addition, since it has excellent fuel barrier properties, it can be applied to applications such as automobile fuel system parts such as pipes, tubes, connectors, tanks and bottles.

Claims (3)

テトラフルオロエチレン及び/又はクロロトリフルオロエチレンに基づく繰り返し単位(a)、フッ素モノマー(ただし、テトラフルオロエチレン及びクロロトリフルオロエチレンを除く。)に基づく繰り返し単位(b)、及び酸無水物残基と重合性不飽和結合とを有するモノマーに基づく繰り返し単位(c)を含有し、((a)+(b)+(c))に対して(a)が50〜99.89モル%、(b)が0.1〜49.99モル%、(c)が0.01〜5モル%である含フッ素共重合体(A)と、ポリアミド66、ポリアミド46、ポリアミド6T、ポリアミドMXD6及びポリアミド9Tから選ばれる1種類以上の熱可塑性ポリアミド(B)とを含有し、含フッ素共重合体(A)/ポリアミド(B)の質量比が90/10〜10/90であり、前記含フッ素共重合体(A)は、テトラフルオロエチレン及び/又はクロロトリフルオロエチレン、前記フッ素モノマー、及び、前記酸無水物残基と重合性不飽和結合とを有するモノマー、をラジカル共重合して得たものであることを特徴とする含フッ素共重合体組成物。 A repeating unit (a) based on tetrafluoroethylene and / or chlorotrifluoroethylene, a repeating unit (b) based on a fluorine monomer (excluding tetrafluoroethylene and chlorotrifluoroethylene), and an acid anhydride residue; Containing a repeating unit (c) based on a monomer having a polymerizable unsaturated bond, wherein (a) is 50 to 99.89 mol% with respect to ((a) + (b) + (c)), (b ) Is 0.1 to 49.99 mol%, and (c) is 0.01 to 5 mol%, and polyamide 66, polyamide 46, polyamide 6T, polyamide MXD6 and polyamide 9T containing the one or more thermoplastic polyamides selected (B), the mass ratio of the fluorocopolymer (a) / polyamide (B) is 90 / 10-10 / 90 der The fluorine-containing copolymer (A) is a radical copolymer of tetrafluoroethylene and / or chlorotrifluoroethylene, the fluorine monomer, and a monomer having the acid anhydride residue and a polymerizable unsaturated bond. A fluorine-containing copolymer composition characterized by being obtained . 前記含フッ素共重合体組成物が、さらに無機フィラー(C)を含有し、該無機フィラー(C)の含有量は、(含フッ素共重合体(A)+ポリアミド(B))/無機フィラー(C)の質量比で90/10〜50/50である請求項1に記載の含フッ素共重合体組成物。 The fluorine-containing copolymer composition further contains an inorganic filler (C), and the content of the inorganic filler (C) is (fluorine-containing copolymer (A) + polyamide (B)) / inorganic filler ( The fluorine-containing copolymer composition according to claim 1 , wherein the mass ratio of C) is 90/10 to 50/50 . 請求項1または2に記載の含フッ素共重合体組成物が成形されてなる成形品。A molded article formed by molding the fluorine-containing copolymer composition according to claim 1.
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