RU2016114439A - Осуществляемый с помощью вакуума способ изготовления закрытопористых жестких пенополиуретанов с использованием смешанных порообразователей - Google Patents
Осуществляемый с помощью вакуума способ изготовления закрытопористых жестких пенополиуретанов с использованием смешанных порообразователей Download PDFInfo
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- C08J9/14—Working-up of macromolecular substances to porous or cellular articles or materials; After-treatment thereof using blowing gases generated by a previously added blowing agent by a physical blowing agent organic
- C08J9/143—Halogen containing compounds
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- C08J9/146—Halogen containing compounds containing carbon, halogen and hydrogen only only fluorine as halogen atoms
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- Polyurethanes Or Polyureas (AREA)
Claims (15)
1. Способ получения полость-заполняющего, закрытопористого, жесткого пенополиуретана, включающий (a) получение реакционноспособной пенопласт-образующей системы, содержащей в качестве компонентов, по меньшей мере, один органический полиизоцианат; смесь полиолов со средней функциональностью не менее 3,0 гидроксильных групп на молекулу и средней гидроксильной эквивалентной массой от 75 до 250; смесь порообразователей, содержащую воду, по меньшей мере, один HFO или HCFO и, необязательно, по меньшей мере, один углеводород, причем смесь порообразователей содержит 5-60 мольных процентов воды и не менее 2 мольных процентов HFO или HCFO; (b) впрыскивание реакционноспособной пенопласт-образующей системы в полость и расширение пенопласт-образующей системы при пониженном атмосферном давлении; (c) поддержание пониженного атмосферного давления, по крайней мере, до тех пор, пока не образуется гель, и дальнейшее отверждение реакционноспособной пенопласт-образующей системы с получением закрытопористого, жесткого пенополиуретана, имеющего плотность приблизительно ниже 40 кг/м3 и теплопроводность ниже 19 мВт/м·K при средней температуре плиты 10°C, измеренные согласно ISO 12939/DIN 52612.
2. Способ получения полость-заполняющего, закрытопористого, жесткого пенополиуретана, включающий (a) получение реакционноспособной пенопласт-образующей системы, содержащей в качестве компонентов, по меньшей мере, один органический полиизоцианат; смесь полиолов со средней функциональностью не менее 3,0 гидроксильных групп на молекулу и средней гидроксильной эквивалентной массой от 75 до 250; смесь порообразователей, содержащую воду, углеводородный порообразователь и, по меньшей мере, один HFO или HCFO, причем смесь порообразователей содержит 5-60 мольных процентов воды, а мольное соотношение углеводорода и HFO или HCFO составляет от 5:95 до 95:5; (b) впрыскивание реакционноспособной, пенопласт-образующей системы при пониженном атмосферном давлении в полость и расширение пенопласт-образующей системы при пониженном атмосферном давлении; (c) поддержание пониженного атмосферного давления, по крайней мере, до тех пор, пока не образуется гель, и дальнейшее отверждение реакционноспособной, пенопласт-образующей системы с получением закрытопористого, жесткого пенополиуретана, имеющего плотность приблизительно ниже 40 кг/м3 и теплопроводность ниже 19 мВт/м·K при средней температуре плиты 10°C, согласно ISO 12939/DIN 52612.
3. Способ по п. 2, в котором смесь порообразователей содержит 20-60 мольных процентов воды.
4. Способ по п. 3, в котором смесь порообразователей содержит 20-33 мольных процента воды.
5. Способ по п. 4, в котором смесь порообразователей содержит 22-33 мольных процента воды.
6. Способ по любому из пп. 2-5, в котором мольное отношение углеводородного порообразователя к HFO и HFCO составляет от 15:85 до 50:50.
7. Способ по любому из пп. 2-5, в котором мольное отношение углеводородного порообразователя к HFO и/или HFCO составляет от 30:70 до 50:50.
8. Способ по любому из пп. 2-5, в котором мольное отношение углеводородного порообразователя к HFO и HFCO составляет от 15:85 до 30:70.
9. Способ по любому из пп. 2-8, в котором углеводород включает циклопентан.
10. Способ по любому из предшествующих пп., в котором HFO или HCFO представляет собой одно или несколько соединений из HFO 1234ze (1,3,3,3-тетрафторпропена), HCFO 1233zd (1-хлор-3,3,3-трифторпропена), HFO 1336 mzz (1,1,1,4,4,4-гексафторбут-2-ена).
11. Способ по любому из предшествующих пунктов, в котором HFO или HCFO представляет собой HFO 1336 mzz (1,1,1,4,4,4-гексафторбут-2-ен).
12. Способ по любому из предшествующих пунктов, в котором порообразователь содержит не более 2 мольных процентов другого порообразователя.
13. Способ по любому из предшествующих пунктов, в котором пониженное атмосферное давление составляет 35-95 абсолютных кПа.
14. Способ по любому из предшествующих пунктов, в котором пониженное атмосферное давление составляет 40-90 абсолютных кПа.
15. Способ по любому из предшествующих пунктов, в котором пенопласт имеет значение λ (лямбда) 17,5 мВт/м·K или меньше и индекс текучести <1,175.
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ITMI20131547 | 2013-09-19 | ||
ITMI2013A001547 | 2013-09-19 | ||
PCT/US2014/056375 WO2015042300A1 (en) | 2013-09-19 | 2014-09-18 | Vacuum assisted process to make closed cell rigid polyurethane foams using mixed blowing agents |
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RU2016114439A true RU2016114439A (ru) | 2017-10-24 |
RU2016114439A3 RU2016114439A3 (ru) | 2018-05-25 |
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RU2016114439A RU2016114439A (ru) | 2013-09-19 | 2014-09-18 | Осуществляемый с помощью вакуума способ изготовления закрытопористых жестких пенополиуретанов с использованием смешанных порообразователей |
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US (1) | US20160200889A1 (ru) |
EP (1) | EP3046958A1 (ru) |
JP (1) | JP2016531196A (ru) |
CN (1) | CN105683269A (ru) |
MX (1) | MX2016003162A (ru) |
RU (1) | RU2016114439A (ru) |
WO (1) | WO2015042300A1 (ru) |
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2014
- 2014-09-18 MX MX2016003162A patent/MX2016003162A/es unknown
- 2014-09-18 WO PCT/US2014/056375 patent/WO2015042300A1/en active Application Filing
- 2014-09-18 EP EP14778028.2A patent/EP3046958A1/en not_active Withdrawn
- 2014-09-18 JP JP2016543992A patent/JP2016531196A/ja not_active Withdrawn
- 2014-09-18 RU RU2016114439A patent/RU2016114439A/ru not_active Application Discontinuation
- 2014-09-18 CN CN201480049534.1A patent/CN105683269A/zh active Pending
- 2014-09-18 US US14/911,689 patent/US20160200889A1/en not_active Abandoned
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EP3046958A1 (en) | 2016-07-27 |
MX2016003162A (es) | 2016-07-05 |
US20160200889A1 (en) | 2016-07-14 |
WO2015042300A1 (en) | 2015-03-26 |
JP2016531196A (ja) | 2016-10-06 |
CN105683269A (zh) | 2016-06-15 |
RU2016114439A3 (ru) | 2018-05-25 |
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