Peek Polyetheretherketone
Zhejiang Zero Engineering Plastics Co., Ltd. is one of the leading manufacturers and suppliers of peek polyetheretherketone in China. If you're going to wholesale bulk advanced peek polyetheretherketone made in China, welcome to get free sample from our factory. All customized products are with high quality and competitive price.
Products Description
Extruded PEEK polyetheretherketone plastic rod is a high-performance engineering plastic with excellent high temperature resistance, corrosion resistance, hot melt resistance and mechanical properties.
Products Properties
PEEK polyetheretherketone plastic rods are widely used in petroleum and many other fields, and are especially widely used in the energy field. Because it can maintain integrity under extreme temperatures, pressures, and chemical environments, and is highly resistant to wear and fatigue.
PEEK Application case in oil and gas exploitation
In the energy field, PEEK polyetheretherketone plastic rods are mainly used in the following aspect:
Oil and gas exploitation: PEEK polyetheretherketone plastic rod has excellent high temperature resistance and corrosion resistance, making it an ideal choice in the field of oil and gas exploitation, which can be used in cementing, logging, well control and oil pipeline connection, etc., while its stability also ensures the integrity of oil and gas.
Specification of PEEK Rod produced in Zero Engineering Plastic
| PEEK (PolyEtherEtherKetone) Semimanufacture Trademark: ZECAN@ Unit:mm,g/cm³ | |||||
| Virgin-PEEK ROD | Grade | Diameter | Longth | Gravity | Color |
| Virgin Grade | 6,8,10,12,15 | 1000/3000 | 1.32 |
Natutal Black |
|
| Virgin Grade | 18,20,25,,28,30 | 1000/3000 | 1.32 | ||
| Virgin Grade | 35-85 | 1000/3000 | 1.32 | ||
| Virgin Grade | 90,100,110,120,130,140 | 1000/3000 | 1.32 | ||
| Virgin Grade | 150,160,170,180,200,210,220 | 1000 | 1.32 | ||
Performance Parameter Table of PEEK Rod
| Test Item | Test Method | Result | |
| Tensile test | ISO 527-1:2012&ISO 527-2:2012 | Tensile Strength | 97MPa |
| Elongation at Break | 12.60% | ||
| Flexural Test | ISO 178:2019 Method A | Flexural stress at conventional deflection | 119MPa |
| Maximum flexural stress | 156MPa | ||
| Flexural Modulus | 3364MPa | ||
| Charpy Notched Impact Strength | ISO 179-1:2010 | 3.7KJ/㎡ C(complete destruction) | |
| Rockwell Hardness | ISO 2039-2:1987 | 112 | |
| Specific Gravity | ISO 1183-1:2019 Method A | 1.302 | |
| Water Absorption | ISO 62:2008 Method 1 | 0.06% | |
| Vertical Burning | UL 94-2013 Rev.9-2018 Section 8 | V-0 | |
| Mean Coefficient of Linear Thermal Expansion | ISO 11359-1:2014&ISO 11359-2:1998 Method A | 100~120℃ | 59×10-6K-1 |
| 140~200℃ | 173×10-6K-1 | ||
| Deflection Temperature under Load | ISO 75-1:2020&ISO 75-2:2013 Method A | 181℃ | |
| Melting extrapolated onset temperature, Teim | ISO 11357-3:2018 | 323.7℃ | 325.6℃ |
| Melting peak temperature, Tpm | 339.9℃ | 341.3℃ | |
| Melting extrapolated end temperature, Tefm | 348.3℃ | 347.2℃ | |
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