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Self-bonding of PEEK for active medical implants applications

机译:PEEK的自粘结性,用于活性医疗植入物应用

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摘要

In an effort to select the best possible medical grade of polyether ether ketone (PEEK) for active medical implants application, it was necessary to inspect surface thermodynamic properties of different grades and correlate with self-bonding (autohesion) strength. Autohesion is the process of choice for encapsulating active medical implants made of PEEK. Temperature modulated DSC was used to investigate crystallinity and thermal events of range of medical grade PEEK (semi-crystalline, amorphous, semi-crystalline with amorphous surface, minerals and black masterbatch filled). Lab shear test was used to measure autohesive forces between PEEK samples pressed at moderate temperature (200 degrees C) and pressure. Samples with higher mobile amorphous region (MAF) and lower degree of crystallinity (W-c) resulted in higher autohesivce bonding strength. However, semi crystalline PEEK with surfaces that showed high MAF and low W-c resulted in higher autohesive bonding strength when compared with crystalline samples. The presence of fillers (minerals and black masterbatch) in the crystalline structure doubled the autohesive bonding strength values of the semi-crystalline sample. The presence of large crystalline region and a larger portion of the rigid amorphous region acted negatively on autohesion strength. Semi-crystalline PEEK with a special manufacturing procedure to produce amorphous surface produced the best choice among the PEEK grades. This grade have the desired thermodynamical properties in the bulk while exhibiting best surface adhesion strength.
机译:为了选择最合适的医用级聚醚醚酮(PEEK),以用于有源医疗植入物,有必要检查不同级别的表面热力学性质,并将其与自粘合(自粘)强度相关联。自粘是封装PEEK制成的活性医疗植入物的一种选择方法。温度调制DSC用于研究医疗级PEEK(半结晶,非晶,具有非晶表面,矿物和黑色母料的半结晶)范围内的结晶度和热事件。使用实验室剪切试验测量在中等温度(200摄氏度)和压力下压制的PEEK样品之间的自粘力。具有较高的移动无定形区(MAF)和较低的结晶度(W-c)的样品会导致较高的自粘粘合强度。但是,与结晶样品相比,表面表现出高MAF和低W-c的半结晶PEEK导致更高的自粘强度。晶体结构中填料(矿物质和黑色母料)的存在使半晶体样品的自粘合强度值加倍。大的结晶区和较大的刚性非晶区的存在对自粘强度产生负面影响。半结晶PEEK具有特殊的制造程序以生产非晶表面,是PEEK牌号中的最佳选择。该牌号在整体上具有所需的热力学性质,同时表现出最佳的表面粘合强度。

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