Seki Yoldas, Tokgöz Mehmet Mete, Öner Ferhat, Sarikanat Mehmet, Altay Lutfiye
Faculty of Science, Dokuz Eylul University, Buca, Izmir 35160, Turkey.
İzmir Eğitim SağlıkSanayiYatırım A.Ş., Turgutlu, Manisa 45400, Turkey.
ACS Omega. 2023 May 23;8(22):19265-19272. doi: 10.1021/acsomega.2c07924. eCollection 2023 Jun 6.
In order to improve the thermal conductivity of 30 wt % synthetic graphite (SG)-filled polyketones (POKs), conductive fillers such as multiwall carbon nanotubes (CNTs) and hexagonal boron nitride (BN) were used in this study. Individual and synergistic effects of CNTs and BN on 30 wt % synthetic graphite-filled POK on thermal conductivity were investigated. 1, 2, and 3 wt % CNT loading enhanced the in-plane and through-plane thermal conductivities of POK-30SG by 42, 82, and 124% and 42, 94, and 273%, respectively. 1, 2, and 3 wt % BN loadings enhanced the in-plane thermal conductivity of POK-30SG by 25, 69, and 107% and through-plane thermal conductivity of POK-30SG by 92, 135, and 325%. It was observed that while CNT shows more efficient in-plane thermal conductivity than BN, BN shows more efficient through-plane thermal conductivity. The electrical conductivity value of POK-30SG-1.5BN-1.5CNT was obtained to be 1.0 × 10 S/cm, the value of which is higher than that of POK-30SG-1CNT and lower than that of POK-30SG-2CNT. While BN loading led to a higher heat deflection temperature (HDT) than CNT loading, the hybrid fillers of BNT and CNT led to the highest HDT value. Moreover, BN loading led to higher flexural strength and Izod-notched impact strength values than CNT loading.
为了提高30重量%合成石墨(SG)填充聚酮(POK)的热导率,本研究使用了多壁碳纳米管(CNT)和六方氮化硼(BN)等导电填料。研究了CNT和BN对30重量%合成石墨填充POK热导率的单独和协同作用。1重量%、2重量%和3重量%的CNT负载分别使POK-30SG的面内热导率和垂直面热导率提高了42%、82%和124%,以及42%、94%和273%。1重量%、2重量%和3重量%的BN负载分别使POK-30SG的面内热导率提高了25%、69%和107%,垂直面热导率提高了92%、135%和325%。观察到,虽然CNT在面内热导率方面比BN更有效,但BN在垂直面热导率方面更有效。POK-30SG-1.5BN-1.5CNT的电导率值为1.0×10 S/cm,该值高于POK-30SG-1CNT且低于POK-30SG-2CNT。虽然BN负载导致的热变形温度(HDT)高于CNT负载,但BNT和CNT的混合填料导致了最高的HDT值。此外,BN负载导致的弯曲强度和悬臂梁缺口冲击强度值高于CNT负载。