KR20200024232A - 조사-경화성 폴리올레핀 제형 - Google Patents
조사-경화성 폴리올레핀 제형 Download PDFInfo
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Abstract
Description
Claims (12)
- (전자 빔)-경화성 (EBC) 제형으로서,
(A) 시차 주사 열량측정 (DSC)을 사용한 결정도 테스트 방법에 의해 측정될 때, 0 내지 50 중량 퍼센트(wt%) 미만의 결정도 및/또는 ASTM D792-13, 방법 B에 의해 측정될 때, 0.930 그램/입방 센티미터 (g/㎤) 또는 그 미만의 밀도를 갖는 (전자 빔)-경화성 (EBC) 폴리올레핀 화합물; 및
(B) 식 (I)의 알케닐-기능성 단환형 오르가노실록산: [R1,R2SiO2/2]n (I), (여기서 하첨자 n은 3 이상의 정수이고; 각각의 R1은 독립적으로 (C2-C4)알케닐 또는 H2C=C(R1a)-C(=O)-O-(CH2)m- 이고 여기서 R1a는 H 또는 메틸이고 하첨자 m은 정수 1 내지 4이고; 그리고 각각의 R2는 독립적으로 H, (C1-C4)알킬, 페닐, 또는 R1임)을 포함하며,
여기서, 구성성분 (A) 와 (B)의 결합 중량 중에서, (A)는 50.0 내지 99.99 wt%이고, 그리고 (B)는 50.0 내지 0.01 wt%이고; 그리고
단, EBC 제형은 각각의 포스파젠 염기, 50 wt% 또는 그 초과의 결정도를 갖는 반결정성 폴리올레핀, 및 유기 과산화물이 없는, (전자 빔)-경화성 (EBC) 제형. - 청구항 1에 있어서, 상기 (A) EBC 폴리올레핀 화합물은 하기 제한 (i) 내지 (xv) 중 임의의 하나를 특징으로 하는, (전자 빔)-경화성 제형:
(i) 시차 주사 열량측정 (DSC)을 사용하여 결정도 테스트 방법에 의해 측정될 때, > 0 내지 50.0 wt%의 결정도; (ii) ASTM D792-13, 방법 B에 의해 측정될 때, 0.930 g/㎤ 또는 그 미만의 밀도; (iii) (i) 및 (ii) 양자; (iv) 용융 지수 테스트 방법에 따라 측정되고 폴리에틸렌인, 0.1 내지 20 그램/10 분 (g/10 분)의 용융 지수 (I2, 190℃/2.16 kg 하중); (v) 용융 유량 테스트 방법에 따라 측정되고 폴리프로필렌인, 0.5 내지 20 g/10 분 (230℃/2.16 kg 하중)의 용융 유량 (MFR); (vi) 단일봉인 분자량 분포 (MWD); (vii) 다중봉인 MWD; (viii) 구성성분 (A) 와 (B)의 결합 중량은 (전자 빔)-경화성 제형 중 50 내지 100 wt%임; (ix) (A) EBC 폴리올레핀 화합물은 0.910 내지 0.925 g/㎤의 밀도를 갖는 저밀도 폴리에틸렌 (LDPE)임; (x) (A) EBC 폴리올레핀 화합물은 0.910 내지 0.925 g/㎤의 밀도를 갖는 선형 저밀도 폴리에틸렌 (LLDPE)임; (xi) (A) EBC 폴리올레핀 화합물은 에틸렌-프로필렌 고무 (EPR), 에틸렌-1-부텐 고무 (EBR), 및 에틸렌-1-옥텐 고무 (EOR)로부터 선택된 폴리에틸렌 탄성중합체임; (xii) (A) EBC 폴리올레핀 화합물은 에틸렌/(C3-C20)알파-올레핀) 공중합체임; (xiii) (A) EBC 폴리올레핀 화합물은 에틸렌-프로필렌 공중합체 (EPP)임; (xiv) (A) EBC 폴리올레핀 화합물은 에틸렌-프로필렌-디엔 단량체 (EPDM) 공중합체임; 그리고 (xv) (A) EBC 폴리올레핀 화합물은 (i) 내지 (xiv) 중 임의의 2개 이상의 조합임. - 청구항 1 또는 2에 있어서, 상기 식 (I)의 (B) 알케닐-기능성 단환형 오르가노실록산에서 하첨자 n은 3이고 여기서 EBC 제형은 하기 제한 (i) 내지 (x) 중 임의의 하나에 의해 기술되는, (전자 빔)-경화성 제형:
(i) 각각의 R1은 독립적으로 (C2-C3)알케닐임; 각각의 R2는 독립적으로 H, (C1-C2)알킬, 또는 (C2-C3)알케닐임; (ii) 각각의 R1은 비닐이고; 각각의 R2는 독립적으로 (C1-C2)알킬임; (iii) 각각의 R1은 비닐이고; 각각의 R2는 메틸임; (iv) 각각의 R1은 알릴이고; 각각의 R2는 독립적으로 (C1-C2)알킬임; (v) 각각의 R1은 알릴이고; 각각의 R2는 메틸임; (vi) 각각의 R1은 독립적으로 H2C=C(R1a)-C(=O)-O-(CH2)m-이고 여기서 R1a는 H 또는 메틸이고 하첨자 m은 정수 1 내지 4이고; 그리고 각각의 R2는 독립적으로 H, (C1-C2)알킬, 또는 (C2-C3)알케닐임; (vii) 각각의 R1은 독립적으로 H2C=C(R1a)-C(=O)-O-(CH2)m-이고 여기서 R1a는 H이고 하첨자 m은 3이고; 각각의 R2는 독립적으로 (C1-C2)알킬임; (viii) 각각의 R1은 독립적으로 H2C=C(R1a)-C(=O)-O-(CH2)m-이고 여기서 R1a는 메틸이고 하첨자 m은 3이고; 그리고 각각의 R2는 독립적으로 (C1-C2)알킬임; (ix) EBC 제형은 산화알루미늄, 알루미늄 실리케이트, 칼슘 실리케이트, 규산마그네슘, 실리카, 이산화티타늄, 및 이들의 혼합물로 구성된 군으로부터 선택된 무기 충전제의 24 wt% 또는 그 초과를 함유하지 않음; 그리고 (x) 제한 (ix)와 제한 (i) 내지 (viii) 중 임의의 하나의 조합. - 청구항 1 또는 2에 있어서, 상기 식 (I)의 (B) 알케닐-기능성 단환형 오르가노실록산에서 하첨자 n은 4이고 여기서 EBC 제형은 하기 제한 (i) 내지 (x) 중 임의의 하나에 의해 기술되는, (전자 빔)-경화성 제형:
(i) 각각의 R1은 독립적으로 (C2-C3)알케닐이고; 그리고 각각의 R2는 독립적으로 H, (C1-C2)알킬, 또는 (C2-C3)알케닐임; (ii) 각각의 R1은 비닐이고; 그리고 각각의 R2는 독립적으로 (C1-C2)알킬이고; (iii) 각각의 R1은 비닐이고; 그리고 각각의 R2는 메틸임; (iv) 각각의 R1은 알릴이고; 그리고 각각의 R2는 독립적으로 (C1-C2)알킬임; (v) 각각의 R1은 알릴이고; 그리고 각각의 R2는 메틸임; (vi) 각각의 R1은 독립적으로 H2C=C(R1a)-C(=O)-O-(CH2)m-이고 여기서 R1a는 H 또는 메틸이고 그리고 하첨자 m은 정수 1 내지 4이고; 그리고 각각의 R2는 독립적으로 H, (C1-C2)알킬, 또는 (C2-C3)알케닐임; (vii) 각각의 R1은 독립적으로 H2C=C(R1a)-C(=O)-O-(CH2)m-이고 여기서 R1a는 H이고 하첨자 m은 3이고; 그리고 각각의 R2는 독립적으로 (C1-C2)알킬임; (viii) 각각의 R1은 독립적으로 H2C=C(R1a)-C(=O)-O-(CH2)m-이고 여기서 R1a는 메틸이고 하첨자 m은 3이고; 그리고 각각의 R2는 독립적으로 (C1-C2)알킬임; (ix) EBC 제형은 임의의 무기 충전제의 24 wt% 또는 그 초과를 함유하지 않음; 그리고 (x) 제한 (ix)와 제한 (i) 내지 (viii) 중 임의의 하나의 제한의 조합. - 청구항 1 또는 2에 있어서, 상기 식 (I)의 (B) 알케닐-기능성 단환형 오르가노실록산에서 하첨자 n은 5 또는 6이고 여기서 EBC 제형은 하기 제한 (i) 내지 (x) 중 임의의 하나에 의해 기술되는, (전자 빔)-경화성 제형:
(i) 각각의 R1는 독립적으로 (C2-C3)알케닐이고; 각각의 R2는 독립적으로 H, (C1-C2)알킬, 또는 (C2-C3)알케닐임; (ii) 각각의 R1은 비닐이고; 각각의 R2는 독립적으로 (C1-C2)알킬임; (iii) 각각의 R1은 비닐이고; 각각의 R2는 메틸임; (iv) 각각의 R1은 알릴이고; 각각의 R2는 독립적으로 (C1-C2)알킬임; (v) 각각의 R1은 알릴이고; 각각의 R2는 메틸임; (vi) 각각의 R1은 독립적으로 H2C=C(R1a)-C(=O)-O-(CH2)m-이고 여기서 R1a는 H 또는 메틸이고 그리고 하첨자 m은 정수 1 내지 4이고; 그리고 각각의 R2는 독립적으로 H, (C1-C2)알킬, 또는 (C2-C3)알케닐임; (vii) 각각의 R1은 독립적으로 H2C=C(R1a)-C(=O)-O-(CH2)m-이고 여기서 R1a는 H이고 그리고 하첨자 m은 3이고; 각각의 R2는 독립적으로 (C1-C2)알킬임; (viii) 각각의 R1은 독립적으로 H2C=C(R1a)-C(=O)-O-(CH2)m-이고 여기서 R1a는 메틸이고 하첨자 m은 3이고; 그리고 각각의 R2는 독립적으로 (C1-C2)알킬임; (ix) EBC 제형은 산화알루미늄, 알루미늄 실리케이트, 칼슘 실리케이트, 규산마그네슘, 실리카, 이산화티타늄, 및 이들의 혼합물로 구성된 군으로부터 선택된 무기 충전제의 24 wt% 또는 그 초과를 함유하지 않음; 그리고 (x) 제한 (ix)와 제한 (i) 내지 (viii) 중 임의의 하나의 조합. - 청구항 1 내지 5 중 어느 한 항에 있어서, 선택적인 구성성분 (C) 내지 (O): (C) 탄소-계 보조제제; (D) 난연제; (E) 산화방지제; (F) 가공 조제; (G) 착색제 (예를 들어, 카본블랙); (H) 금속 비활성화제; (I) (불포화된 탄소-탄소 결합)-유리 가수분해성 실란; (J) 부식 억제제; (K) 힌더드 아민 광안정제; (L) 구성성분 (A)와 상이하고 50 wt% 또는 그 초과의 결정도를 갖는 반결정성 폴리올레핀과 상이한 에틸렌계 공중합체 (여기서 (L)은 에틸렌/(C4-C20)알파-올레핀 공중합체, 에틸렌/불포화된 카복실 에스테르 공중합체, 또는 프로필렌/에틸렌계 공중합체임); (M) 충전제; (N) 핵제; 및 (O) 트리잉 지연제 중에서 독립적으로 선택된 적어도 하나의 첨가제를 또한 포함하는, (전자 빔)-경화성 제형.
- 청구항 1 내지 6 중 어느 한 항의 (전자 빔)-경화성 제형을 제조하는 방법으로서,
상기 방법은 구성성분 (A), (B), 및 임의의 선택적인 구성성분 (C) 내지 (O)로 본질적으로 구성되는 혼합물을 제공하고, (전자 빔)-경화성 (EBC) 제형을 제조하기 위해, 분할된 고체 형태 또는 용융 형태의 (A) EBC 폴리올레핀 화합물; 및 (B) 식 (I)의 알케닐-기능성 단환형 오르가노실록산; 및 임의의 선택적인 구성성분 (C) 내지 (O)를 함께 혼합하는 단계를 포함하고; 단, 상기 방법은 각각의 포스파젠 염기, 50 wt% 또는 그 초과의 결정도를 갖는 반결정성 폴리올레핀, 및 유기 과산화물이 없는, 방법. - 이를 필요로 하는 제형을 전자-빔 경화하는 방법으로서,
전자-빔 경화된 폴리올레핀 생성물을 제공하기 위해, 청구항 1 내지 6 중 어느 한 항의 EBC 제형, 또는 청구항 7의 방법에 의해 제조된 (전자 빔)-경화성 제형을, 유효 선량의 전자-빔 조사로 조사하는 단계를 포함하는, 방법. - 청구항 8의 방법에 의해 제조된 전자-빔-경화된 폴리올레핀 생성물.
- 청구항 9의 전자-빔-경화된 폴리올레핀 생성물 및 이와 작용가능하게(operative) 접촉하는 성분을 포함하는 제조 물품.
- 전도성 코어 및 상기 전도성 코어를 적어도 부분적으로 둘러싸는 중합체 층을 포함하는 코팅된 전도체로서, 상기 중합체 층의 적어도 일부분은 청구항 9의 전자-빔-경화된 폴리올레핀 생성물을 포함하는, 코팅된 전도체.
- 전기를 전도하는 방법으로서, 전도성 코어를 통한 전기 흐름을 발생시키기 위해 청구항 11의 코팅된 전도체의 전도성 코어를 가로 질러 전압을 인가하는 단계를 포함하는, 방법.
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