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Enhanced anti-counterfeiting measures for additive manufacturing: coupling lanthanide nanomaterial chemical signatures with blockchain technology

机译:增强抗伪造措施的添加剂制造:用区块技术偶联镧纳米材料化学签名

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The significant rise of additive manufacturing (AM) in recent years is in part due to the open sourced nature of the printing processes and reduced cost and capital barriers relative to traditional manufacturing. However, this democratization of manufacturing spurs an increased demand for producers and end-users to verify the authenticity and quality of individual parts. To this end, we introduce an anti-counterfeiting method composed of first embedding engineered nanomaterials into features of a 3D-printed part followed by non-destructive interrogation of these features to quantify a chemical signature profile. The part specific chemical signature data is then linked to a securitized, distributed, and time-stamped blockchain ledger entry. To demonstrate the utility of this approach, lanthanide-aspartic acid nanoscale coordination polymers (Ln(3+)-Asp NCs)/poly(lactic) acid (PLA) composites were formulated and transformed into a filament feedstock for fused deposition modeling (FDM) 3D printing. In the present case, a quick-response (QR) code containing the doped Ln(3+)-Asp NCs was printed using a dual-extruder FDM printer into pure PLA parts. The QR code provides a searchable reference to an Ethereum-based blockchain entry. The QR code physical features also serve as defined areas to probe the signatures arising from the embedded Ln(3+)-Asp NCs. Visible fluorescence emission with UV-excitation was quantified in terms of color using a smartphone camera and incorporated into blockchain entries. Ultimately, linking unique chemical signature data to blockchain databases is anticipated to make the costs of counterfeiting AM materials significantly more prohibitive and transactions between those in the supply chain more trustworthy.
机译:近年来添加剂制造业(AM)的显着升高部分是由于印刷工艺的开放性质,以及相对于传统制造的成本和资本障碍降低。然而,这种制造业的民主化使生产者和最终用户的需求增加,以验证各个部件的真实性和质量。为此,我们将由首先将工程化纳米材料组成的防伪方法引入3D印刷部分的特征,然后进行了这些特征的非破坏性询问,以量化化学特征。然后将特定的化学签名数据连接到证券化,分布式和时间戳的区块分类帐入口。为了证明这种方法的效用,配制镧 - 天冬氨酸纳米级配位聚合物(LN(3 +) - ASP NCS)/聚(乳酸)酸(PLA)复合材料并转化为熔融沉积建模(FDM)的长丝原料3D打印。在本情况下,使用双挤出机FDM打印机将包含掺杂LN(3 +) - ASP NC的快速响应(QR)代码进入纯PLA部件。 QR码为基于形象为基础的区块条目提供可搜索的引用。 QR码物理特征也用作探测嵌入式LN(3 +) - ASP NCS引起的签名的定义区域。在使用智能手机相机的颜色方面,用紫外线激励进行可见荧光发射,并将其纳入块链条条目。最终,预计将独特的化学签名数据与区块数据库联系起来,以使伪造的AM材料的成本明显更加令人信赖的供应链之间的禁止和交易。

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