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Data Models For Product Modification using Reverse Engineering Reverse engineering can be described as the process in which an object, device or system is broken into its constituents to see how each of these parts work together to form one functional unit. Reverse engineering is an essential process since it allows people to gain a view of technology in work and know how it can be utilized and optimized. Improvements can be done through the innovation of applied technology, making innovations much better. Initially, reverse engineering relied on analog and GPS scanning technology to collect the spatial data of objects and operating systems. But this is not the case today as many companies have taken to the use of laser scanners for the reverse engineering process. The 3D laser scanners offer several advantages over the traditional scanning methods especially when it comes to the time and cost of scanning. Laser scanners are employed in the process of reverse engineering for a variety of applications but each case, the scanning results are used to make models that allow the firms to fabricate objects with a lot of ease. Some of the models include the parametric models, hybrid surface models and the shrink wrap surface models.
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Parametric Model The parametric models turn realistic data from scanned data and include or ignore manufacturing defects. This is to say that the parametric model parameters are presented in finite-dimensional parameter that distinguishes them from nonparametric models, semi-nonparametric models, and semi-parametric models. Parametric models are used whenever 2D drawings are required when a product’s surface must be smooth, when the parts will be built on a scanned part, or when the scanning data will be conceptually modified.
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Hybrid Surface Model Similar to the parametric models, hybrid surface models can convert realistic data from scanned data, and can ignore or include the manufacturing defects. Hybrid surface model is used when the modification of the object requires refining or must be a class-A surfaced. Just as their name suggests, the hybrid surface models are used to modify object’s surface and are therefore suitable when superficial modifications are part of an object. Hybrid surface models are also usable when 2D drawings are needed, when building on or around a scanned object or when the object’s surface finish must be smooth. Shrinkwrap Surface Models Shrinkwrap surface models are used to capture in their as-built state, including production defects, making them ideal for designing parts to accommodate as-built models. Shrinkwrap models are of three types–the surface subset models used to create a collection of exterior surfaces and datum figures; subset surface models, which are used to approximate the visual representation of the original object, and the solid faceted models used to give an approximate representation of the original object.

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