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Rubber Kneader&comma Rubber Mixing Kneader&comma Dispersion Kneader X&lparS&rparN-150×30
Transient Introduction for Our Rubber Kneader &lparplastics&rpar
Mixing Chamber
It consists of a “w” form body and two side boards created of higher top quality steel plates by signifies of extrusion forming and welding&comma which are jacked to take the flow of cooling drinking water or steam&interval It is plated with hard chrome on its interior partitions&period of time
Normal Be aware Pump
Timing injection pump to the sealing program on a normal injection of hydraulic oil&comma lubrication sealing impact&period
Thermal Resistance &lparor thermal few&rpar
There is a plug-in thermal resistance or thermal pair in middle section of the base of the chamber to be related to electrical method to examine and management the mixing temperature&period of time
Rotor
It is developed to the hollow blades of banbury variety&time period The hollows are linked with axial hole of rotor shaft employed as cooling or heating passage&interval The leading edges and the aspect faces of blades are area welded with difficult alloy and floor&comma then plated with hard chrome and polished&period
Cooling&solheating Technique
A widespread piping system is adopted for either cooling or heating substance in mixing operation&period By means of the technique cooling drinking water or steam is fed in 3 methods to the cavities of the rotors blades&comma – the jackets of the mixing chamber and the top ram&period
Tilting Mechanism
It consists of a rotor with brake&comma cycloidal equipment reducer&comma TP variety worm and worm gear&comma and so forth&interval It is able to actuate the mixing chamber tilting by 140° Close to the entrance rotors&period
Dust Cease Gadget
At the joint in between the best of mixing chamber and the cantilevered arm of the machine frame&comma the dust sealing assembled with curved slotted partings are used for obtaining an excellent and trustworthy sealing objective&period of time The stop face of the rotor is sealed by conclude get in touch with sealing with non oil-lubrication and it seals well and is put on-resistance and durable&time period
Major Driving System
The element is manufactured up with major motor&comma reducer&comma connecting gears&time period It realizes odd-pace rotation of rotors with running encounter a single other&interval
Pneumatic control system
Pneumatic management system is managed by PLC buy&time period A bi-directional air cylinder helps make the ram up or down&period In scenario of the above load happens when mixing chamber&comma the best ram can be lifted routinely or manually if necessary&comma so as to shield motor from overloading&time period
Electrical Handle Program
Imported PLC gadget and electric control factors which are all imported goods or imported technological innovation items are adopted in the electric manage technique as to elevate management trustworthiness&period
Dust Sealing System
Mixing chamber catchy interface rack cantilever the oil dust seals and timing impact oiling dust&comma distinctive structure&comma the use of copper components&comma very good sealing performance&comma no leakage of the glue&comma powder leakage&comma do not pollute the atmosphere&comma but also has effortless maintenance and lengthy service life&interval
Product | Unit | X&lparS&rparN-3×32 | X&lparS&rparN-5×32 | X&lparS&rparN-10×32 | X&lparS&rparN-20×32 | X&lparS&rparN-25×32 | X&lparS&rparN-35×30 | X&lparS&rparN-55×30 | X&lparS&rparN-75×30 | X&lparS&rparN-110×30 | X&lparS&rparN-150×30 | X&lparS&rparN-200×30 |
Total Volume of Mixing Chamber | &lparL&rpar | 8 | fifteen | 25 | 45 | fifty five | seventy five | 125 | 170 | 250 | 325 | 440 |
Working Volum of Mixing Chamber | &lparL&rpar | 3 | 5 | ten | 20 | 25 | 35 | fifty five | seventy five | one hundred ten | 150 | 200 |
Driving Motor Energy | &lparKW&rpar | five&period5 | 11 | 22 | 37 | 37 | 55 | seventy five | 110 | 185 | 220 | 280 |
Titling Motor Electricity | &lparKW&rpar | &period55 | one&period1 | 1&period1 | one&period5 | 1&period5 | two&period2 | two&period2 | four | five&period5 | 11 | 11 |
Rotational Velocity of The Rotor &lparfront&solrear&rpar | &lparr&solmin&rpar | 30&sol24&period5 | 32&sol23&period5 | 32&sol25 | 32&sol27 | 32&sol27 | 30&sol24&period5 | 30&sol24&period5 | thirty&sol24&period5 | 30&sol24&period5 | 30&sol24&period5 | 30&sol24&period5 |
Strain of Compressed Air | &lparm³&solmin&rpar | &geq0&period3 | &geq0&period5 | &geq0&period5 | &geq0&period7 | &geq0&period7 | &geq0&period9 | &geq1&period0 | &geq1&period0 | &geq1&period5 | &geq2&period0 | &geq4&period0 |
Stress of Cooling H2o&lparmixing rubber&rpar | &lparMPa&rpar | &period2~&period4 | &period2~&period4 | &period2~&period4 | &period2~&period4 | &period2~&period4 | &period3~&period4 | &period3~&period4 | &period3~&period4 | &period3~&period4 | &period3~&period4 | &period3~&period4 |
Strain of Heating Steam&lparplasticmixing&rpar | &lparMPa&rpar | &period5~&period8 | &period5~&period8 | &period5~&period8 | &period5~&period8 | &period5~&period8 | &period5~&period8 | &period5~&period8 | &period5~&period8 | &period5~&period8 | &period5~&period8 | &period5~&period8 |
Dimensions &lparL x W x H&rpar |
&lparmm&rpar | 2000×1000 x2220 |
1850×1200 x2580 |
2640×1650 x2350 |
2675×1650 x2560 |
2675×1650 x2560 |
3200×1900 x2950 |
3230×1927 x2958 |
3325×2615 x3150 |
4075×2712 x3580 |
4250×2750 x4106 |
4250×3400 x4215 |
Gross Weight | &lpart&rpar | ~2 | ~2&period1 | ~3&period3 | ~4 | ~4&period5 | ~6&period3 | ~7&period1 | ~9&period5 | ~fourteen&period9 | ~19&period5 | ~22&period5 |
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