首页> 外文会议>ASME international mechanical engineering congress and exposition >EFFECT OF BUILD ORIENTATION ON MECHANICAL PROPERTIES OF RAPID PROTOTYPING (FUSED DEPOSITION MODELLING) MADE ACRYLONITRILE BUTADIENE STYRENE (ABS) PARTS
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EFFECT OF BUILD ORIENTATION ON MECHANICAL PROPERTIES OF RAPID PROTOTYPING (FUSED DEPOSITION MODELLING) MADE ACRYLONITRILE BUTADIENE STYRENE (ABS) PARTS

机译:建立方向对快速成型(熔融沉积模型)丙烯腈丁二烯(ABS)零件力学性能的影响

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Prototyping is the process of building pre-production models of a product to test various aspects of its design. Fused deposition modeling (FDM) is a process for developing rapid prototype (RP) objects by depositing fused layers of material according to numerically defined cross sectional geometry. The quality of FDM produced parts is . significantly affected by various parameters used in the process. This paper aims to study the effect of one such parameter i.e., build orientation, on mechanical properties (mainly tensile and compressive strength) of FDM processed parts. In rapid prototyping (FDM), the orientation of the parts during fabrication is critical as it can affect part strength such as tensile and compressive strength. Specimens are prepared for tensile/compression test as per ASTM standards. It was found that the build orientation of the specimen has more of an impact on strength. The layering build process of rapid prototyping creates a variance in strength depending on the build orientation. The D695 standard allows for stable compression testing and is used for compression testing. Several geometries are allowed for tension specimens under the D638 standard. We chose the type I specimen as it is the most commonly used and best fit our mechanical testing equipment. From the tensile test result, it is found that when build orientation is increasing from 0° to 90°, ultimate tensile strength decreases. It is maximum at 0° orientation i.e., 15.2 MPa and minimum at 90° orientation i.e., 11.6 MPa. The tensile stress at 0° (i.e. axial direction) is 23.68 % higher than transverse direction (i.e., 90°). From the compressive test results, it is found that, when sample orientation is increasing from 0° to 90°, the ultimate compressive strength decreases. It is maximum at 0° orientation i.e., 26.66 MPa and minimum at 90° orientation i.e., 22.22 MPa. The compressive stress at 0° (i.e. axial direction) is 16.65 % higher than transverse direction(i.e. 90°).
机译:原型制作是构建产品的生产前模型以测试其设计的各个方面的过程。熔融沉积建模(FDM)是通过根据数值定义的截面几何形状沉积材料的熔融层来开发快速原型(RP)对象的过程。 FDM生产零件的质量为。受到该过程中使用的各种参数的明显影响。本文旨在研究一种这样的参数(即构造方向)对FDM加工零件的机械性能(主要是抗张强度和抗压强度)的影响。在快速成型(FDM)中,零件在制造过程中的方向至关重要,因为它会影响零件强度,例如拉伸强度和压缩强度。根据ASTM标准准备用于拉伸/压缩测试的样品。发现样品的构造方向对强度有更大的影响。快速成型的分层构建过程会根据构建方向在强度上产生差异。 D695标准允许进行稳定的压缩测试,并用于压缩测试。根据D638标准,拉伸试样可以有几种几何形状。我们选择I型标本,因为它是最常用且最适合我们的机械测试设备的标本。从拉伸试验结果发现,当构建取向从0°增加到90°时,极限拉伸强度降低。在0°方向即15.2 MPa时最大,在90°方向即11.6 MPa时最小。 0°(即轴向)的拉伸应力比横向(即90°)高23.68%。从压缩试验结果发现,当样品取向从0°增加到90°时,极限抗压强度降低。在0°方向即26.66 MPa时最大,在90°方向即22.22 MPa时最小。 0°(即轴向)的压缩应力比横向(即90°)高16.66%。

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