Polycarbonate-Based Resin Composition for Carrier Tape Having Excellent Electric Conductivity

A technology of polycarbonate resin and composition, which is applied in the direction of conductive materials dispersed in non-conductive inorganic materials, transportation and packaging, packaging, etc., which can solve the problems of polycarbonate resin conductivity difficulties and achieve excellent conductivity Effect

Inactive Publication Date: 2014-12-17
CHEIL IND INC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

It can also be difficult for polycarbonate resins to exhibit electrical conductivity when extruded in sheet form such as carrier tape

Method used

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  • Polycarbonate-Based Resin Composition for Carrier Tape Having Excellent Electric Conductivity
  • Polycarbonate-Based Resin Composition for Carrier Tape Having Excellent Electric Conductivity
  • Polycarbonate-Based Resin Composition for Carrier Tape Having Excellent Electric Conductivity

Examples

Experimental program
Comparison scheme
Effect test

Embodiment

[0139] The details of each component used in the examples and comparative examples of the present invention are as follows:

[0140] (A) polycarbonate resin

[0141] PANLITE L1225WX manufactured by TEIJIN CHEMICALS LTD was used.

[0142] (B1) Rubber-modified aromatic vinyl resin

[0143] (b1) ABS resin

[0144] CHTS manufactured by Cheil Industries Inc was used.

[0145] (b2) SEBS resin

[0146] KRATON G1651, SHELL

[0147] (B2) Semi-crystalline polymer resin

[0148] (b3) Polybutylene terephthalate (PBT)

[0149] Shinite K001 manufactured by SHINKONG is used.

[0150] (b4) Ethylene vinyl acetate (EVA)

[0151] Use manufactured by Dupont 150.

[0152] (C) carbon nanotubes

[0153] Multi-walled carbon nanotubes having an aspect ratio of 500 to 2,000 are used.

[0154](D) Additives

[0155] Wax: Licowax PED191, Clariant

[0156] Antioxidants: IRGANOX1076, CIBA

example 1-13 and comparative example 1-8

[0158] Each ingredient was dry-blended in the amount shown in Table 1 and Table 2, and then the mixture was extruded using a twin-screw extruder (L / D=35, Φ=45 mm) to prepare an extruded mixture as pellets. The prepared pellets were injected at 280° C. using a 10 oz injection machine to prepare test samples for measuring various physical properties.

[0159] In Table 1 and Table 2, the mixing ratio of (A), (B) and (C) is expressed in % by weight of each ingredient, based on 100% by weight of (A) and (B), and ( C) is expressed in parts by weight based on 100 parts by weight of (A)+(B).

[0160] [Table 1]

[0161]

[0162] [Table 2]

[0163]

[0164] The physical properties of the prepared test samples were measured by the following methods, and the results are shown in Tables 3 and 4 below.

[0165] Methods used to measure physical properties

[0166] (1) Surface resistance (Ω / □) Measured according to ASTM D257 using SRM-100 manufactured by Wolfgang Warmbier GmbH & C...

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Abstract

An electric conductive resin composition comprises about 0.5 to about 5 parts by weight of (C) carbon nanotubes, based on about 100 parts by weight of a base resin comprising about 50 to about 97% by weight of (A) a polycarbonate resin and about 3 to about 50% by weight of (B) a rubber-modified aromatic vinyl resin (B1), a semi-crystalline polymer resin (B2), or a mixture thereof. The electric conductive resin composition has a surface resistance of about 105Ω / □ or less and can have excellent conductivity. Further, the composition can have excellent productivity, tensile strength and / or tensile elongation, and / or generates little dust.

Description

technical field [0001] The present invention relates to a polycarbonate resin composition. More specifically, the present invention relates to a polycarbonate resin composition capable of excellent electrical conductivity. Background technique [0002] Generally, light emitting diodes (hereinafter "LEDs") are manufactured in a chip state as electronic components such as semiconductor packages, and then packaged with various types of packaging materials for safe transportation to users. [0003] The most widely used packaging material is carrier tape, which can be triple layered or single layered. In a pocket formed inside the carrier tape, the carrier tape carries electronic components of the LED chip to prevent external impact during transportation or handling of the electronic components. [0004] Common conductive resins used for carrier tapes may include polycarbonate resins containing polycarbonate resins and carbon black. However, a carrier tape using carbon black m...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08K3/04C08L23/08C08L67/02C08K7/00C08L53/02C08L55/02C08L69/00
CPCH01B1/24Y10T428/24479B65D73/02C08J5/005C08K2201/003C08K2201/004C08L25/12C08L51/04C08L55/02C08L69/00C08K3/041
Inventor 申赞均林钟喆郑恩慧
Owner CHEIL IND INC
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