SU142427A1 - The method of obtaining high polymer materials - Google Patents

The method of obtaining high polymer materials

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Publication number
SU142427A1
SU142427A1 SU723119A SU723119A SU142427A1 SU 142427 A1 SU142427 A1 SU 142427A1 SU 723119 A SU723119 A SU 723119A SU 723119 A SU723119 A SU 723119A SU 142427 A1 SU142427 A1 SU 142427A1
Authority
SU
USSR - Soviet Union
Prior art keywords
polymer materials
high polymer
obtaining high
acetobutyratecellulose
polymers
Prior art date
Application number
SU723119A
Other languages
Russian (ru)
Inventor
Л.А. Завялина
лина Л.А. Зав
Е.А. Милицкова
Original Assignee
лина Л.А. Зав
Е.А. Милицкова
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 лина Л.А. Зав, Е.А. Милицкова filed Critical лина Л.А. Зав
Priority to SU723119A priority Critical patent/SU142427A1/en
Application granted granted Critical
Publication of SU142427A1 publication Critical patent/SU142427A1/en

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  • Polymerisation Methods In General (AREA)
  • Addition Polymer Or Copolymer, Post-Treatments, Or Chemical Modifications (AREA)

Description

Известен способ получени  высокополимерных материалов из эфиров целлюлозы совмещением их с мономерами винилового типа в присутствии перекисных органических и неорганических соединений с последующей дезактивацией перекисных и других химических групп и свободных радикалов. Например, известен способ получени  полимеров из триацетата и смещанных эфиров целлюлозы и нитрила акриловой кислоты .A known method for producing high polymer materials from cellulose ethers by combining them with vinyl monomers in the presence of peroxide organic and inorganic compounds followed by deactivation of peroxide and other chemical groups and free radicals. For example, a method for producing polymers from triacetate and dislodged cellulose esters of acrylic acid nitrile is known.

Предлагаемый способ получени  теплостойкого литьевого полимера отличаетс  от известного тем, что совмещают полимеры, а именно, сополимер ацетобутиратцеллюлозы и метакрилата с ацетобутиратцеллюлозой с использованием в качестве термического антиоксиданта тринонилфенилфосфина .The proposed method for producing a heat-resistant cast polymer differs from the known one in that it combines polymers, namely, a copolymer of acetobutyratecellulose and methacrylate with acetobutyratecellulose using trinonylphenylphosphine as the thermal antioxidant.

Осуществление предлагаемого способа сводитс  к следующему.The implementation of the proposed method is as follows.

В полимеризатор загружают 85 вес. ч. мстилакрилата и в нем раствор ют 15 вес. ч. ацетобутиратцеллюлозы и затем ввод т 0,3 вес. ч, динитрилазоизомасл ной кислоты, воду и стабилизатор суспензии (раствор сополимера метакрилата с метилметакрилатом). Полимеризацию ведут при температуре 60-62°.In the polymerization load 85 weight. including mysticacrylate and dissolve 15 wt. including acetobutyratecellulose and then 0.3 wt. h, dinitriloisobutyric acid, water, and suspension stabilizer (solution of methacrylate copolymer with methyl methacrylate). The polymerization is carried out at a temperature of 60-62 °.

Полученный биссерный сополимер сущат и смешивают с ацетобутиратцеллюлозой в щиековом смесителе «Бусс при 150-175°.The resulting bissy copolymer is present and mixed with cell acetobutyrate in a yakchevykovym mixer “Buss at 150-175 °.

В качестве термического антиоксидата примен ют триионилфенилфосфин в количестве 0,5-1,0%.Trionylphenylphosphine in the amount of 0.5-1.0% is used as a thermal antioxidant.

Получено два типа полимеров: 1-й полимер содержит в рецептуре 12 вес. ч. полиметилакрилата, 2-й - 20 вес. ч. полиметилакрилата.Two types of polymers were obtained: the 1st polymer contains 12 wt. including polymethylacrylate, 2nd - 20 wt. including polymethylacrylate.

Второй полимер отличаетс  повышенной теплостойкостью.The second polymer is highly heat resistant.

Полученный гранулированный высокомолекул рный материал обладает теплостойкостью 125-135° по Вику, удельной ударной в зкостью 60-100 кг. см1см - и высокими диэлектрическими свойств;1ми,The resulting high molecular weight granular material has a heat resistance of 125-135 ° Wic, with a specific impact strength of 60-100 kg. cm1 - and high dielectric properties; 1,

SU723119A 1961-03-24 1961-03-24 The method of obtaining high polymer materials SU142427A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
SU723119A SU142427A1 (en) 1961-03-24 1961-03-24 The method of obtaining high polymer materials

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
SU723119A SU142427A1 (en) 1961-03-24 1961-03-24 The method of obtaining high polymer materials

Publications (1)

Publication Number Publication Date
SU142427A1 true SU142427A1 (en) 1961-11-30

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Family Applications (1)

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SU723119A SU142427A1 (en) 1961-03-24 1961-03-24 The method of obtaining high polymer materials

Country Status (1)

Country Link
SU (1) SU142427A1 (en)

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