SU427026A1 - ELECTRICAL CONDUCTING POLYMER COMPOSITION BASED ON POLYETHYLENE - Google Patents

ELECTRICAL CONDUCTING POLYMER COMPOSITION BASED ON POLYETHYLENE

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Publication number
SU427026A1
SU427026A1 SU1370591A SU1370591A SU427026A1 SU 427026 A1 SU427026 A1 SU 427026A1 SU 1370591 A SU1370591 A SU 1370591A SU 1370591 A SU1370591 A SU 1370591A SU 427026 A1 SU427026 A1 SU 427026A1
Authority
SU
USSR - Soviet Union
Prior art keywords
polyethylene
polymer composition
composition based
conducting polymer
electrical conducting
Prior art date
Application number
SU1370591A
Other languages
Russian (ru)
Inventor
А. С. нова Б. А. Коноплёв Ш. Л. Лельчук Ю. И. Василенок
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 filed Critical
Priority to SU1370591A priority Critical patent/SU427026A1/en
Application granted granted Critical
Publication of SU427026A1 publication Critical patent/SU427026A1/en

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  • Conductive Materials (AREA)
  • Compositions Of Macromolecular Compounds (AREA)
  • Wrappers (AREA)

Description

Изобретение относитс  к электронровод щим полимерным (в частности, полиолефиновь )1м) композици м, примен емым дл  изготовлени  пленки, предназпаченной дл  упаковки взрывчатых веществ, различных инициируюн их средств, электронного оборудовани , дл  изготовлени  лент и листов, используемых при застиле столов и конвейеров в электро;п1ой промышленности и т. д. Извест)1а электропровод ща  экструзионна  композици , состо ща  из полиэтилена, .15-40% полиизобутилепа, 20-45% ацетиленовой сажи и 0,2-1,0% стеарата кальци  пли стеариновой кислоты (процентное содержание от веса комнозиции). Такие наполнен )1ые композиции по своим свойствам ввиду большого содержани  сажи не могут успешно перерабатыватьс  в пленку, кроме того, они плохо перерабатываютс  в издели  методом раздува. Электропроводность таких композиций недостаточна  дл  некоторых случаев их прнменени . Дл  устранени  указанных недостатков предлагаетс  электропровод ща  полимерна  композици  на основе полиэтилена, полиизобутилена , ацетиленовой сажи и стеарата кальци , в состав которой введен альбихтол, а компоненты вз ты в следующих количествах (в вес. %): Полиэтилен 49.0-82,9 5,0-15,0 Полиизобутилен Ацетиленова  сажа 10,0-20,0 0,1- 1,0 Стеарат кальци  2,0-15,0 Альбихтол Пленка, нзготовлеппа  из этой, композиции, обладает удельным об11емцым сопротивлением (рг) ом- см, удельным поверхностным сопротивлением (р) и при температуре 20±2°С и Пмеет предел прочностн-при раст жении (j) 80-116 кг/аи- и отиосительн е удлинение при разрыве (е) 100-350%. Предлагаема  электропровод ща  полимерна  композици  может быть получена путем смешепи  компопентов, например, в смесител х типа «Бепбери при повышенной температуре . При малом содержании, сажи она сочетает в себе высокие характеристики объемной и поверхностной проводимости с прочностью и эластичностью, поэтому может найти широкое примеиепие дл  изготовлени  пле)ки , используемой при упаковке взрывчатых и инициирующих веществ, электронного оборудовани , твердого топлива и т. п. Пример 1. Полиэтилен П2020Т с 5 вес. % полиизобутилена, 10 вес. % ацетиленовой сажи, 2 вес. % альбихтола и 0,1 вес. % стеарата кальци  смешивают на вальцах при температуре 140/135°С в течение 20 л.ин. ПолучаThe invention relates to an electronically conductive polymer (in particular, a polyolefin) 1m) compositions used to make a film intended for packaging explosives, various initiating means, electronic equipment, for the manufacture of tapes and sheets used for laying tables and conveyors into electrical industry, etc. Known) 1a electrically conductive extrusion composition consisting of polyethylene, .15-40% polyisobutyle, 20-45% acetylene black and 0.2-1.0% stearate calcium stearate ( proce peppermint content by weight komnozitsii). Due to their high content, carbon blacks cannot be successfully processed into films, and they are poorly processed into articles using the blowing method. The conductivity of such compositions is insufficient for some cases of their application. To eliminate the above drawbacks, an electrically conductive polymer composition based on polyethylene, polyisobutylene, acetylene black, and calcium stearate, which was used for the introduction of albichtol, is proposed, and the components are taken in the following amounts (% by weight): Polyethylene 49.0-82.9 5.0 -15.0 Polyisobutylene Acetylene black 10.0-20.0 0.1-1.0 Calcium stearate 2.0-15.0 Albihtol The film prepared from this composition has a specific resistance (W) ohm-cm, specific surface resistance (p) and at a temperature of 20 ± 2 ° С and dries the strength limit t-when stretching (j) 80-116 kg / a- and an excellent elongation at break (e) 100-350%. The proposed electrically conductive polymer composition can be obtained by mixing components, for example, in Bepbury type mixers at elevated temperatures. With a low content of soot, it combines high characteristics of bulk and surface conductivity with strength and elasticity, so it can find a widespread use for the manufacture of a stick used in the packaging of explosives and initiating substances, electronic equipment, solid fuel, etc. Example 1. Polyethylene P2020T with 5 wt. % polyisobutylene, 10 wt. % acetylene black, 2 wt. % albichtol and 0.1 weight. % calcium stearate is mixed on a roll mill at a temperature of 140/135 ° C for 20 l.in. Receiving

SU1370591A 1969-10-13 1969-10-13 ELECTRICAL CONDUCTING POLYMER COMPOSITION BASED ON POLYETHYLENE SU427026A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
SU1370591A SU427026A1 (en) 1969-10-13 1969-10-13 ELECTRICAL CONDUCTING POLYMER COMPOSITION BASED ON POLYETHYLENE

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
SU1370591A SU427026A1 (en) 1969-10-13 1969-10-13 ELECTRICAL CONDUCTING POLYMER COMPOSITION BASED ON POLYETHYLENE

Related Child Applications (1)

Application Number Title Priority Date Filing Date
SU894771594A Addition SU1756842A2 (en) 1989-12-19 1989-12-19 Method of determining frequency error of scale converter

Publications (1)

Publication Number Publication Date
SU427026A1 true SU427026A1 (en) 1974-05-05

Family

ID=20447826

Family Applications (1)

Application Number Title Priority Date Filing Date
SU1370591A SU427026A1 (en) 1969-10-13 1969-10-13 ELECTRICAL CONDUCTING POLYMER COMPOSITION BASED ON POLYETHYLENE

Country Status (1)

Country Link
SU (1) SU427026A1 (en)

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