Laser drilling is key step for HDI PCB. Producing HDI PCB requires high-end processing equipment and sophisticated manufacturing processes.And this is why most PCB factories cannot produce HDI.
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In our exclusive polymer Machining capabilities, we are specialize in #5th_axis #VMC machining to produce #complex_parts with #high_precision and #accuracy. Our Machining expertise includes working with #conductive_PTFE like special polymers #Pump #Chamber #FTG . #manufacturing #precisionengineering #machining #engineering #innovation
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Machined Casting and Its Importance to Manufacturing Machined casting is one process of many used by Aerostar Manufacturing to create complex and precise components for many industries. According to Medium in their article “What is the process of machined casting, and how does it contribute to the manufacturing industry,” due to the increased durability and accuracy of components created this way, machined casting is a highly-sought service. “[M]achined casting is a vital manufacturing process that combines the advantages of casting and machining to produce precise, complex, and durable metal components,” Medium said. Read more here: https://bit.ly/46ePgo8
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Baker Hughes has won in the Production category for The Cool Parts Showcase brought by Additive Manufacturing Media! Leveraging additive manufacturing, commonly known as 3-D printing, we have optimized our manufacturing process, resulting in remarkable reduction in lead times. Additive manufacturing is an industrial technique that consists of sequential deposition of materials to construct 3-D objects with precision and minimal material waste. By adopting this method to craft our valve trims, we have streamlined our operations, minimized waste, and enhanced supply chain efficiency, thus advancing our commitment to sustainability. Through additive manufacturing, we have empowered ourselves to produce variable resistance trim stacks predominantly in-house, with production cycles shortened to just a few weeks! Explore further details about this game-changing technology in this feature article, and don't forget to check out the accompanying video for an in-depth look at this exciting innovation here 👉 https://lnkd.in/d7c7ryFW #EnergizingChange #EnergyForward #Innovation #TechnologyInnovation #WeAreBakerHughes #AdditiveManufacturing
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Exciting news! Our groundbreaking variable resistance valve trim has won in the Production category at The Cool Parts Showcase brought by Additive Manufacturing Media. Leveraging advanced additive manufacturing techniques, commonly referred to as 3-D printing, we've achieved a significant reduction in lead times while enhancing precision and efficiency in production processes. Additive manufacturing, a sophisticated industrial process involving the layer-by-layer deposition of materials, has enabled us to optimize manufacturing workflows, minimize material wastage, and expedite production cycles. This transformative approach not only streamlines our operations but also underscores our commitment to sustainability by reducing environmental impact across our supply chain. Explore further details about this game-changing technology in this feature article, and don't forget to check out the accompanying video for an in-depth look at this exciting innovation 👉 https://lnkd.in/d7c7ryFW #EnergizingChange #EnergyFoward #Innovation #TechnologyInnovation #WeAreBakerHughes #AdditiveManufacturing
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Exciting news! Our groundbreaking variable resistance valve trim has won in the Production category at The Cool Parts Showcase brought by Additive Manufacturing Media. Leveraging advanced additive manufacturing techniques, commonly referred to as 3-D printing, we've achieved a significant reduction in lead times while enhancing precision and efficiency in production processes. Additive manufacturing, a sophisticated industrial process involving the layer-by-layer deposition of materials, has enabled us to optimize manufacturing workflows, minimize material wastage, and expedite production cycles. This transformative approach not only streamlines our operations but also underscores our commitment to sustainability by reducing environmental impact across our supply chain. Explore further details about this game-changing technology in this feature article, and don't forget to check out the accompanying video for an in-depth look at this exciting innovation 👉 https://lnkd.in/g257KANK #EnergizingChange #EnergyFoward #Innovation #TechnologyInnovation #WeAreBakerHughes #AdditiveManufacturing
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Exciting news! Our groundbreaking variable resistance valve trim has won in the Production category at The Cool Parts Showcase brought by Additive Manufacturing Media. Leveraging advanced additive manufacturing techniques, commonly referred to as 3-D printing, we've achieved a significant reduction in lead times while enhancing precision and efficiency in production processes. Additive manufacturing, a sophisticated industrial process involving the layer-by-layer deposition of materials, has enabled us to optimize manufacturing workflows, minimize material wastage, and expedite production cycles. This transformative approach not only streamlines our operations but also underscores our commitment to sustainability by reducing environmental impact across our supply chain. Explore further details about this game-changing technology in this feature article, and don't forget to check out the accompanying video for an in-depth look at this exciting innovation 👉 https://lnkd.in/dHpEjReV #EnergizingChange #EnergyFoward #Innovation #TechnologyInnovation #WeAreBakerHughes #AdditiveManufacturing
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Vacuum Aluminum Die Casting Achieve High Injection Rate Short Description: What Is Die Casting? Die casting refers to a process of manufacturing that makes use of high pressure to input a liquid metal into a steel die that is reusable. The process of rapidly cooling the metal tends to solidify it to form a final
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Exciting news! Our groundbreaking variable resistance valve trim has won in the Production category at The Cool Parts Showcase brought by Additive Manufacturing Media. Leveraging advanced additive manufacturing techniques, commonly referred to as 3-D printing, we've achieved a significant reduction in lead times while enhancing precision and efficiency in production processes. Additive manufacturing, a sophisticated industrial process involving the layer-by-layer deposition of materials, has enabled us to optimize manufacturing workflows, minimize material wastage, and expedite production cycles. This transformative approach not only streamlines our operations but also underscores our commitment to sustainability by reducing environmental impact across our supply chain. Explore further details about this game-changing technology in this feature article, and don't forget to check out the accompanying video for an in-depth look at this exciting innovation 👉 https://lnkd.in/gdFgHSvN #EnergizingChange #EnergyFoward #Innovation #TechnologyInnovation #WeAreBakerHughes #AdditiveManufacturing
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Let's learn about Friction Stir Based Additive Manufacturing (FSAM), an innovative approach in solid-state manufacturing. FSAM originates from friction stir welding, a process that involves intense shear deformation at elevated temperatures, resulting in high-quality material deposition without melting. This technology is revolutionizing the field of additive manufacturing by offering higher deposition rates and superior mechanical properties compared to other methods. The capacity to create large-scale components with a "wrought" microstructure, which greatly improves their structural integrity, is one of the main advantages of FSAM. The procedure can be used in place of conventional castings and forgings for a range of materials, including aluminum alloys and thermally stable alloys like Al-Ce. Furthermore, FSAM provides manufacturing flexibility, enabling the development of intricate geometries and fostering a more dispersed, robust supply chain. But there are obstacles to take into account. For example, during the process, oxide coatings and impurities such as carbon and hydrogen may inadvertently be introduced, which could weaken the material. Optimizing outcomes requires managing these "unintended" factors, such as heat-affected zones in high-strength alloys. New developments like SolidStir and friction screw extrusion, as well as recent breakthroughs like additive friction stir deposition (AFSD), demonstrate the field's continuous development and growth potential. #additivemanufacturing #frictionstirdeposition #AFSD #deposition #simulation
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Continuous casting segment with large pressure reduction at the end of solidification of continuous casting billet and its large pressure reduction method https://lnkd.in/g2JS-JDb
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