Machines And Apparatus With Individual Functions - 3D Printer Based On Fdm Technology. The Main Goal Of The Project Optimal Design For Rechargeable And Recyclable, Alkaline Zn-Mno2 Batteries As Flexible Energy Storage (Orrcabatt) Is The Development A Rechargeable Alkaline Zn-Mno2 Battery (Zmb) For Stationary Storage Applications. Key Objectives Include Material Selection Based On Sustainability And Costs, A Deeper Understanding Of The Physical-Chemical Properties Of The Battery, Ensuring The Scalability Of The Production Process, Implementation Of The Developed Batteries In Real Application Scenarios Such As Stationary Energy Storage In Combination With Photovoltaics And A Strong Focus On Recycling And Circular Economy, To Ensure The Sustainability Of The Battery Production Process. A Central One Strategy For The Success Of The Project Revolves Around The Use Of Additive Manufacturing Systems Based On 3D Printing Technologies, In Particular Fused Deposition Modeling (Fdm). The Use Of Fdm Is Crucial For: 1. Rapid Prototyping New Cell Components, Helping To Identify Potential Challenges Helps During Battery Development. 2. The Production Of Frames And Other Polymer-Based Components Used As Sacrificial Templates For Assemblies Of Advanced Selective Separator Materials Be Used. 3. Testing Optimal Polymer Materials To Ensure They Are Appropriate In Terms Of Mechanical And Chemical Resistance. 4. Being Large Print Volume Suitable For Rapid Scaling Of Battery Components, In Particular With Regard To The Main Demonstrator Of The Project, Is Essential. The Integration Fdm 3D Printing Technology Will Be Critical To Moving Quickly Through Prototyping And Testing Phases To Advance, Making It Feasible Within The Three Year Period Achieve A Technology Readiness Level (Trl) Of 6 Or 7 Within The Project Time Frame. This Will Also Ensure That The Project Remains On Track To Achieve Its Ambitious Goals To Be Fulfilled Within The Specified Period.
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