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Technical Paper

CAE Approach for Thermal-Acoustical Protective Shields - Part 2

2004-10-25
2004-01-2970
Today, Computer Aided Engineering (CAE) has become an essential part in the development of Thermal-Acoustical Protective Shields (TAPS). As presented three years ago, such a theoretical approach has been able to reduce the development cycle of TAPS while simultaneously reducing costs. Using the approach as previously presented gave us an opportunity to learn more and upgrade the approach with more modules. These modules are focused not only on obtaining better accuracy but also adding information about processes and function of the TAPS. Besides those parameters we are now able to look up-front into the visual appearance of the product using simulation techniques. This paper will describe this updated CAE approach, with a main focus on the new added techniques and modules. This paper will also describe how the results of the approach are used in the development of new TAPS and how we verify the theoretical results by the means of experimental techniques.
Technical Paper

Proteus® - MLS Cylinder Head Gasket Analysis Tool

2003-03-03
2003-01-0481
Today, detailed up-front theoretical analysis is essential to shorten development time and decrease costs. Multi-Layer Steel (MLS) cylinder head gaskets we use are coated with a very thin rubber-like coating plus featuring other complicated geometric features, which makes the analysis a difficult task. With the Proteus® software package we define a project, which consists of the manufacturing process of the main elements (like embossments or wave stopper) up to the functional parameters (like loading behaviour and durability). This paper presents how we start with the single layer element simulation and transfer the information into the multi-layer analysis. Both of those cases are 2D-axis-symmetrical. Further the developed information will be used for 3D simulations in other software packages Besides the project approach in Proteus® we will briefly explain the theoretical basis. For that we start with the Method of the Local Functionals (MLF), a modification of the traditional FEM.
Technical Paper

CAE Approach for Multi-Layer-Steel Cylinder Head Gaskets - Part 2

2003-03-03
2003-01-0483
Today, Computer Aided Engineering (CAE) is standard in the up-front gasket development. As presented three years ago, it helps to reduce the development cycle and at the same time the development costs. With the success in using this approach, we received new requirements from the customer requesting for more and better details so that the project can be completed within the same time frame. The theoretical advancement and the drastic changes in the computer hardware technology along with lower costs aided in fine tuning our previously developed approach and adding new features. So we upgraded our specialized Proteus® software for the element study and extended it into the multi-layer 2D case. Further, more we detailed and improved the simplified 3D-model module as well as the whole bank 3D-model. A very important addition is the flow/thermal analysis to create the thermal map with our models.
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