Polyethylene composition and flame retardant film
A flame retardant film and polyethylene technology, applied in synthetic resin layered products, layered products, chemical instruments and methods, etc., can solve the problems of poor film formation, poor flame retardant performance of polyethylene film, and easy film rupture.
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Embodiment approach
[0029] According to a preferred embodiment of the present invention, the polyethylene composition is figure 1 Prepared in the shown multi-reactor parallel device, described multi-reactor parallel device comprises first reactor 1, second reactor 2, third reactor 3, solid / liquid (gas) separator 4, homogenizer The silo 5 and the melt granulation system 6, wherein the first reactor 1, the second reactor 2 and the third reactor 3 are connected in parallel, and the number of the solid / liquid (gas) separator 4 is three One, communicated with the first reactor 1, the second reactor 2 and the third reactor 3 respectively, the component A produced by the first reactor 1, the component B produced by the second reactor 2 and the component B produced by the third reactor The component C prepared by the reactor 3 is carried out phase separation in different solid / liquid (gas) separators 4 respectively, and then the component A, component B and component C after the phase separation will be ...
Embodiment 1
[0045] This example is used to illustrate the polyethylene composition and the flame retardant film provided by the present invention.
[0046] (1) Preparation of polyethylene composition:
[0047] The polyethylene composition provided in this example is composed of Component A, Component B, Component C and a flame retardant, wherein Component A, Component B and Component C are all ethylene / α-olefin copolymerized linear low Density polyethylene (LLDPE), and all adopt identical catalyst system (Ziegler-Natta catalyst, it is prepared by the Ziegler-Natta catalyst system that CN101838351A embodiment 1 obtains, the same below) and polymerization process preparation, difference The amount of hydrogen added and the type and molar content of α-olefin comonomers are different when preparing different components. Specific steps are as follows:
[0048] Add ethylene, α-olefin, hydrogen and nitrogen (ethylene, α-olefin, hydrogen and nitrogen are of polymerization grade, used after remo...
Embodiment 2
[0059] This example is used to illustrate the polyethylene composition and the flame retardant film provided by the present invention.
[0060] (1) Preparation of polyethylene composition:
[0061] The polyethylene composition provided in this example is composed of Component A, Component B, Component C and a flame retardant, wherein Component A, Component B and Component C are all ethylene / α-olefin copolymerized linear low Density polyethylene (LLDPE), and both are prepared by the same catalyst system (Ziegler-Natta catalyst) and polymerization process, the difference lies in the amount of hydrogen added when preparing different components and the type and mole of α-olefin comonomers Content varies. Specific steps are as follows:
[0062] Add ethylene, alpha olefin, hydrogen and nitrogen into the fluidized bed gas phase reactor, then add the Ziegler-Natta catalyst system, and then polymerize under the conditions of temperature 84-88°C and pressure 1.8-2.0MPa, Component A, ...
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Abstract
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