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Showing 1 to 4 of 4 for “"Materials Genome Initiative"”.

  1. Better multivalent battery materials through diffusion high-throughput computations

    Accelerating the discovery of advanced materials is essential for human beings. However, the traditional trial-and-error way of developing materials is often very empirical and time- consuming. In 2011, the launch of Materials Genome Initiative marked a large-scale collaboration between computer …

    mit Repository record for Better multivalent battery materials through diffusion high-throughput computations (opens in a new tab)

  2. Sensor-Enabled Accelerated Engineering of Soft Materials

    … challenges are rooted in the need for new materials, such as those related to energy, health, and the environment. However, the traditional way of discovering new materials is basically trial and error. This time-consuming and expensive method can't meet the quickly growing requirements for …

    vt Repository record for Sensor-Enabled Accelerated Engineering of Soft Materials (opens in a new tab)

  3. Smart Re-Manufacturing of Recycled Plastics and Polymers using Sensor-based and High-throughput Experimentation Formats

    … re-processing and manufacturing of recycled materials, such as recycled plastics and polymer, such as using smart manufacturing principles. Likewise, there remains a need to identify environmentally benign (i.e., green) material formulations and processes for sustainable re-manufacturing …

    vt Repository record for Smart Re-Manufacturing of Recycled Plastics and Polymers using Sensor-based and High-throughput Experimentation Formats (opens in a new tab)

  4. The Influence of Alloying Additions on Diffusion and Strengthening of Magnesium

    Magnesium alloys are being developed as advanced materials for structural applications where reduced weight is a primary motivator. Alloying can enhance the properties of magnesium without significantly affecting its density. Essential to alloy development, inclusive of processing parameters, is …

    ucf