GE Jet Engine Bracket Very Lightweight 3d models
469193 3d models found related to GE Jet Engine Bracket Very Lightweight.grabcad
... selected design and material were Inconel 718. The manufacture feasibility of final redesigns were evaluated and SLM was selected as the first priority process if anyhow SLM fails to produce part, FDM will be used to manufacture redesigned bracket.
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Engineers from GE have accepted the jet engine bracket design challenge and submitted their Version 2 of a innovative solution. ...The team showcased a strong redesign with key features including reinforced fastening points, improved accessibility for...
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GE Engine Mount Reinforcement Innovation Challenge Prototype Three The mounting system holds firm at a hefty 418 grams, providing exceptional structural integrity while boasting an expansive internal volume of approximately 94 thousand cubic...
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Using state-of-the-art topology optimization and organic surface modeling, an astounding 80.3% weight reduction can be achieved without sacrificing part strength. The mass decreased from 2051.67g to just 403g across multiple cases. In Case 1, the...
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To ensure clarity, I'm simply rephrasing the statement. ...My objective here is to convey that I expect hope to prevail during my initial challenge.
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Person reduced in body weight by approximately four-fifths.
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To reduce volume by 84.5%, the design is simple to produce. ...Additionally, its shape could yield favorable outcomes in fatigue and crack propagation performance, which is significant in aerospace applications.
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Looking for welding services? We can work with sheet metal that is up to 10mm thick and require a bend radius of just 5mm. The resulting piece will weigh approximately 0.705 kg, but if you need mass reduction, we can reduce it by as much as 66%.
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Experience a significant decrease in weight as you enjoy up to 78% mass reduction using our top-notch products and services!
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The original weight of the item was 2052 grams, but after milling, it was reduced to 681 grams; thus, a significant mass reduction of 67% was achieved in the final product.
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This is my initial attempt at this task. ...It shows a decrease of 78.08% compared to the original piece.
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A significant reduction of up to 75% in mass can be achieved through this method.
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My current task is the second project within this challenge. The mass has been successfully reduced by 67.2%. Now, it weighs only 0.671 kg. ...Before the conclusion of this challenge, I plan to upload the final load condition along with additional...
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The initial mass of the object was 2052 grams, which was reduced to a final weight of 499 grams. This impressive reduction equates to a staggering 76% mass decrease. ...The resulting item is now classified as a milled part.
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In the given project, the initial mass of the object was 2052 grams; however, after milling it, the final weight reduced to an impressive 536 grams. This remarkable transformation represents a significant mass reduction of approximately 74%. ...The...
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Firstly, the initial stage involves a simulation. Under this scenario, Load Condition 1 is implemented. This load exerts a force of 35600 N vertically. The mass involved in this situation is calculated as 0.785131591 kg. ...Consequently, the...
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Achieve up to 75% mass reduction with our innovative techniques and materials.
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In my second attempt, the mass reduced to 1.0016 kg from its previous value of 2.05165 kg. Meanwhile, the volume decreased to 226156.72 mm³ compared to the earlier measurement of 463254.39 mm³. ...Additionally, the surface area is now 50528.62 mm²,...
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The original design was reconstructed employing innovative topology optimization techniques. This resulted in a staggering 73% decrease in weight. ...The final product now weighs merely 1.194 pounds or 541.4 grams, significantly lighter than its...
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The enhanced prototype leverages a robust honeycomb framework to augment performance and durability. By seamlessly integrating a network of hexagonal cells, structural integrity is substantially elevated, while simultaneously reducing weight by up to...
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The initial phase involves simulations featuring load condition number one, where the applied forces are 35,600 N vertically.
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New Load Capacity Unchanged at 2.041 kg - Total Reduction of Weight to Date is 1.63077 kilograms.
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A remarkable decrease of 75% in mass can be achieved through this process, leading to significant improvements in efficiency and performance.
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In the initial weigh-in, the mass clocked in at 2052 grams; after processing, it shed a substantial 1307 grams, equating to a significant 64% decrease. ...The resulting object now tips the scales at merely 745 grams and is categorized as a milled part.
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I'd like to express my appreciation for your current model, which showcases a notable volume/mass reduction of 71.03%. All simulations performed on SolidWorks utilized a high-quality mesh and passed with flying colors. Key stress measurements include...
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A significant 75% reduction in mass can be achieved through this method.
grabcad
In the first attempt, the mass reduced from 2.05165 kg to 0.929 kg; the volume decreased to 209811.25 mm³, while the surface area slightly changed to 54034.44 mm².