RU94035839A - Plant for microwave treatment of insulating materials - Google Patents

Plant for microwave treatment of insulating materials

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Publication number
RU94035839A
RU94035839A RU94035839/09A RU94035839A RU94035839A RU 94035839 A RU94035839 A RU 94035839A RU 94035839/09 A RU94035839/09 A RU 94035839/09A RU 94035839 A RU94035839 A RU 94035839A RU 94035839 A RU94035839 A RU 94035839A
Authority
RU
Russia
Prior art keywords
chamber
ballast
absorbers
coupling devices
communication devices
Prior art date
Application number
RU94035839/09A
Other languages
Russian (ru)
Other versions
RU2126606C1 (en
Inventor
Б.А. Демьянчук
Ua]
В.Е. Полищук
И.В. Короташ
Е.М. Чистяков
Original Assignee
Б.А. Демьянчук
Ua]
В.Е. Полищук
И.В. Короташ
Е.М. Чистяков
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 Б.А. Демьянчук, Ua], В.Е. Полищук, И.В. Короташ, Е.М. Чистяков filed Critical Б.А. Демьянчук
Publication of RU94035839A publication Critical patent/RU94035839A/en
Application granted granted Critical
Publication of RU2126606C1 publication Critical patent/RU2126606C1/en

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Abstract

FIELD: microwave treatment of various materials. SUBSTANCE: plant has microwave oscillator, coupling device, chamber accommodating loading block, removal block, fan, ballast absorber placed against coupling device output inserted in chamber whose input is connected to microwave oscillator output; novelty is that plant is provided with additional microwave oscillators with coupling devices and ballast absorbers; outputs of old and newly introduced coupling devices have apertures in plane perpendicular to longitudinal axis of chamber symmetrical relative to this axis and ballast absorbers are arranged opposite output apertures of coupling devices; in addition, size of output apertures of coupling devices is inversely proportional to size of opposite chamber walls; wide walls of waveguides of opposite coupling devices at point of connection of apertures are relatively perpendicular; aperture outputs of coupling devices are plugged with radio-transparent inserts; ballast absorbers are arranged over entire inner surface of chamber; plant may be equipped with vibrating-trough or band conveyer installed along longitudinal axis of chamber. EFFECT: provision for uniform heating of treated material on all sides, improved treatment capacity. 6 cl, 3 dwg

Claims (1)

Изобретение относится к области обработки различных материалов с помощью СВЧ-колебаний, обеспечивает всесторонний раавномерный нагрев обрабатываемого диэлектрического материала, а также повышение производительности обработки, что достигается снабжением установки, содержащей СВЧ-генератор, устройство связи, камеру с размещенными в ней блоком загрузки, блоком выгрузки, вентилятором, балластным поглотителем, расположенным напротив выхода устройства связи, введенного в камеру, вход которого соединен с выходом СВЧ-генератора, дополнительными СВЧ-генераторами с устройствами связи и балластными поглотителями, при этом выходы имеющихся и введенных в установку устройств связи снабжены раскрывами, расположенными в плоскости, перпендикулярной продольной оси камеры, симметрично относительно этой оси, а балластные поглотители расположены напротив раскрывов выходов устройств связи. Кроме того, раскрывы выходов устройств связи имеют размеры, обратно пропорциональные соответствующим размерам противолежащих им стенок камеры; широкие стенки волноводов противолежащих устройств связи в местах подсоединения раскрывов взаимно перпендикулярны; выходы раскрывов устройств связи заглушены радиопрозрачными вкладышами; балластные поглотители расположены по всей внутренней поверхности камеры. Установка может быть оснащена вибрационно-лотковым или ленточным транспортером, расположенным вдоль продольной оси камеры.The invention relates to the field of processing various materials using microwave oscillations, provides comprehensive uniform heating of the dielectric material being processed, as well as an increase in processing productivity, which is achieved by supplying a plant containing a microwave generator, a communication device, a camera with a loading unit, an unloading unit , with a fan, a ballast absorber, located opposite the output of the communication device inserted into the chamber, the input of which is connected to the output of the microwave generator, supplement microwave generators with communication devices and ballast absorbers, while the outputs of existing and commissioned communication devices are equipped with openings located in a plane perpendicular to the longitudinal axis of the camera, symmetrically with respect to this axis, and ballast absorbers are located opposite the openings of the outputs of the communication devices. In addition, the openings of the outputs of the communication devices have dimensions inversely proportional to the corresponding sizes of the opposite camera walls; the wide walls of the waveguides of opposite communication devices at the points of connection of the openings are mutually perpendicular; exits of openings of communication devices are muffled by radio-transparent inserts; ballast absorbers are located on the entire inner surface of the chamber. The installation can be equipped with a vibration-chute or belt conveyor located along the longitudinal axis of the chamber.
RU94035839A 1994-07-06 1994-09-26 Device for microwave processing of dielectric materials RU2126606C1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
UA94076084 1994-07-06
UA94076084 1994-07-06

Publications (2)

Publication Number Publication Date
RU94035839A true RU94035839A (en) 1996-10-20
RU2126606C1 RU2126606C1 (en) 1999-02-20

Family

ID=21688998

Family Applications (1)

Application Number Title Priority Date Filing Date
RU94035839A RU2126606C1 (en) 1994-07-06 1994-09-26 Device for microwave processing of dielectric materials

Country Status (1)

Country Link
RU (1) RU2126606C1 (en)

Also Published As

Publication number Publication date
RU2126606C1 (en) 1999-02-20

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