JPS6149094B

PURPOSE:To maintain a temperature of melted resin at a prescribed value with excellent responsiveness, by calculating the temperature of resin based on the measured value of a cylinder temperature compensated by using a parameter related to the temperature of melted resin in a cylinder, and by contr...

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Hauptverfasser: SHIBUYA TOMOE, TOGAWA AKIRA, ITO KATSUHIKO, SEKINE NOBUTAKA, IWATA MITSUO, SANO HIDEO, NAKAMOTO MITSUSACHI
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creator SHIBUYA TOMOE
TOGAWA AKIRA
ITO KATSUHIKO
SEKINE NOBUTAKA
IWATA MITSUO
SANO HIDEO
NAKAMOTO MITSUSACHI
description PURPOSE:To maintain a temperature of melted resin at a prescribed value with excellent responsiveness, by calculating the temperature of resin based on the measured value of a cylinder temperature compensated by using a parameter related to the temperature of melted resin in a cylinder, and by controlling the cylinder temperature by using a differential value between said temperature of resin and a desired temperature of resin. CONSTITUTION:Thermocouples C1-C4 are provided in the respective zones of the cylinder 2 of an extruder 1, and a cylinder temperature in each zone is thereby measured. Next, a signal from a radiation thermocouple and a signal from a room-temperature measuring resistor 11 are inputted in a microprocessor 14 via a scanner 13, while a signal in a relation to the number of rotation of a screw is inputted in a microprocessor 14 (numeral 12 is a linearizer and numerals 15 and 16 A/D converters), and thereby the temperature of melted resin is calculated. This is compared with a so-called resin temperature. Then, a differential value thus obtained is used for controlling a heater 20 or a blower 21 for cooling in each cylinder zone via a scanner 17 (numeral 18 denotes a D/A converter and 19 a temperature regulator).
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CONSTITUTION:Thermocouples C1-C4 are provided in the respective zones of the cylinder 2 of an extruder 1, and a cylinder temperature in each zone is thereby measured. Next, a signal from a radiation thermocouple and a signal from a room-temperature measuring resistor 11 are inputted in a microprocessor 14 via a scanner 13, while a signal in a relation to the number of rotation of a screw is inputted in a microprocessor 14 (numeral 12 is a linearizer and numerals 15 and 16 A/D converters), and thereby the temperature of melted resin is calculated. This is compared with a so-called resin temperature. 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CONSTITUTION:Thermocouples C1-C4 are provided in the respective zones of the cylinder 2 of an extruder 1, and a cylinder temperature in each zone is thereby measured. Next, a signal from a radiation thermocouple and a signal from a room-temperature measuring resistor 11 are inputted in a microprocessor 14 via a scanner 13, while a signal in a relation to the number of rotation of a screw is inputted in a microprocessor 14 (numeral 12 is a linearizer and numerals 15 and 16 A/D converters), and thereby the temperature of melted resin is calculated. This is compared with a so-called resin temperature. Then, a differential value thus obtained is used for controlling a heater 20 or a blower 21 for cooling in each cylinder zone via a scanner 17 (numeral 18 denotes a D/A converter and 19 a temperature regulator).</abstract><oa>free_for_read</oa></addata></record>
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subjects AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
BASIC ELECTRIC ELEMENTS
CABLES
CONDUCTORS
ELECTRICITY
INSULATORS
MAKING GRANULES OR PREFORMS
PERFORMING OPERATIONS
PREPARATION OR PRETREATMENT OF THE MATERIAL TO BESHAPED
RECOVERY OF PLASTICS OR OTHER CONSTITUENTS OF WASTE MATERIALCONTAINING PLASTICS
SELECTION OF MATERIALS FOR THEIR CONDUCTIVE, INSULATING ORDIELECTRIC PROPERTIES
SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDEDFOR
SHAPING OR JOINING OF PLASTICS
TRANSPORTING
WORKING OF PLASTICS
WORKING OF SUBSTANCES IN A PLASTIC STATE, IN GENERAL
title JPS6149094B
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