#HIWIN DATORKER® Strain Wave Gear-Thin series✨ The new generation thin series achieves 50% reduction in axial height, enabling a compact and ultra-space-saving design. Whether you are in fields such as #semiconductor equipment, #service robotics, or #aerospace, where height restrictions are crucial, the thin series can perfectly meet your needs🤝. HIWIN thin series will make your product stand out in the market and become a leader in the industry!😎 Contact us👉👉 https://lnkd.in/d3ApQ5DW #HIWIN #DATORKER® #ThinSeries #SemiconductorEquipment #ServiceRobots #aerospace #MachineTools
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Could innovative new #photomechanical actuators eventually replace #batteries and usher in an era of ultralight robots, industrial machinery, and automobiles powered entirely by exposure to light? Researchers at #UCBoulder are betting on it. #energyinnovation #cleanenergy #energytransition
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"Most of the hull on Solus is free flooding, so water will just come in through holes in the skin and balance the pressure across it. It’s only those electronics enclosures that are inside the skin that hold back water pressure." Dive into the depths of cutting-edge technology as Cellula Robotics is featured in the latest edition of ASSEMBLY Magazine . The article offers a profound examination of the groundbreaking design and assembly procedures of our Solus systems, featuring insights from Cellula's Director of Engineering, Andrew Ronan, as he discusses the intricate subsystems and components integral to our AUVs. View Article Here: https://lnkd.in/ggJTyy8y #UnderwaterTechnology #Innovation #RevolutionizingSubseaOperations #subseaengineering #maritimesecurity #bctech #opportunity #maritimecareers #sustainability #endurance #cleanfuel #engineering #defenceindustry #proudlycanadian #technology #leadinginnovation #careers #technology #marineindustry #auv #datacollection #engineering #lovewhereyouwork #robotics #autonomy #arcticsurveillance #surveillance #subseasecurity #engineeringstudents #wearehiring #proudlycanadian
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🚨Breaking News🚨 Uavos has delivered a high-performance Oven-500 composite curing oven to a manufacturer in the aircraft industry. Uavos says that its technology helped the business generate lightweight composites with extreme strength that meet the most demanding applications. The OVEN-500 Composites Curing Oven is used to cure, anneal, dry, and harden synthetic and composite materials. UAVOS' oven allows to cure various materials of complex contours, shapes, and sizes all while providing fast heat-up rates and cycle times, superior temperature uniformity, and an optimal cure. UAVOS' out of autoclave (OOA) composite curing oven is electrically heated. It's designed with a combination airflow arrangement which ensures even & uniform heat distribution throughout the work chamber and provides quicker heating rates and recovery times. The OVEN-500 Composites Curing Oven has full 'ramp and soak' temperature control which can control heating rates (degrees per minute), and hold for a specific length of time at set temperatures. The curing process for composite materials includes bagging and putting them under a vacuum while being cured. To optimize airflow, heat transfer, and overall oven performance there is software control, as well as data collection. The intuitive interface provides unrivalled usability and process feedback. The oven can be equipped with a software remote control system from a standard computer, as well as data collection. Follow Composights to catch all the latest buzz in composites!📰 Source: Uavos #curing #composites #performance #technology #composights
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Here is a brief version of the last teleoperation paper from our laboratory 🚀🤖 🌑
Proud to share our latest paper "Human-Robot Interface for Teleoperated Robotized Planetary Sample Collection and Assembly", published in the proceedings of #ieee Metrology for AeroSpace (#metroaerospace 2023), presented at the conference in Milan. 🦾 In this article we discuss a human-robot interface (HRI) we developed to tackle teleoperated robotized operations. Our HRI is a set of hardware and software components based on #ROS that allow the user to easily and safely control a robot from remote. The operator can check how the task progresses thanks to real-time visualization and haptic control tools, remotely forwarding commands while perceiving force feedbacks. 🌖 We tested our architecture in a high-accuracy construction experiment, in which the #frankaemika Panda arm, mounted on a #clearpathrobotics husky mobile base, collects a sample from the terrain and manipulates it performing a peg-in-hole task, resembling typical In-Situ Resource Utilization (#ISRU) planetary missions. 🎬 Check out the full experiment on YouTube: https://lnkd.in/dS5eJKVm 📄 Read the paper on IEEExplore: https://lnkd.in/d-uD3XKF 🌐 Visit us at: https://lnkd.in/dCnBCbA5 #robotics #robots #humanrobotinteraction #automation #unisa #AutomaticControlGroup
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Sending in the Robots to clean those hard to reach places 👏🏼🦾 Robotic hydro-jetting is the fastest, most effective, and cleanest surface treatment technique. it uses the most technologically advanced solution for hydro-jetting metal surfaces and removing paint and corrosion, the initially developed and built by NASA. the robotic provides its customers with the best and most reliable robotic hydro-jetting service on the global market. Let us understand Hydrojetting... Hydro-jetting is the most effective and environmentally friendly surface cleaning technique, depends entirely on the energy of the water that reaches the surface to obtain its cleaning effect. Common hazards and risks include the water jet piercing the skin, being hit by flying debris and exposure to noise. Other hazards associated with high pressure water jetting include working in confined spaces, fall hazards, respiratory and eye hazards, electric shock and potential exposure to hazardous chemicals. Follow...3i Industrial Solutions #hydrojetting #pressurecleaning #3iindustrialsolutions #manojdpipaliya
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🚀 In today's fast-paced industrial environment, minimizing shutdown time is crucial for maximizing efficiency and productivity. 💡That's where Volar Alta comes in to revolutionize your maintenance processes with cutting edge #Drone Technology and #AI-powered #Analytics. Explore how Volar Alta's innovative solutions can significantly reduce shutdown time and streamline your maintenance operations. 🛠 Volar Alta's unique Industrial Inspection solutions empower you to: 🔄 Predict and prevent equipment failures before they occur. 📊 Optimize maintenance schedules for minimal disruption. 📈 Increase equipment uptime and overall operational efficiency. Let's minimize downtime and maximize productivity together! 🚀 #OperationalExcellence #Maintenance #NDT #Shutdown
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Here is an update on some of our laser heating capabilities. True digital heating and placement of composite materials at a high rate have advantages for thermosets, dry fiber, and thermoplastic aero structures. https://lnkd.in/gHeGnecN
🚀 The patented VSSL (Variable Spot Size Laser) by Electroimpact's #AFP Group. AFP4.0 exceeds all previous technology because it operates on these four tenets: 1) Quality of lamination. The VSS delivers perfect heat for each individual tow resulting in superior and consistent tow tack even when adding at 4000"/min. Tow end placement is extremely accurate and consistent due to perfect tension and tow tack. 2) Reliability of process. Superior tack means no missed tows, especially short tows. The servo-creel is a high-performance tension system that assures no slack and therefore no tow twists are possible. Because only the active tows are being heated and because the heat arrives at the moment the new tow meets the nip, there is no chance for a compaction roller wrap. 3) Performance. The VSS laser and servo-creel enable 4000"/min adds and 3000"/min cuts. These are easily the highest in industry. 4) Utilization. Utilization follows from great quality and superior reliability. If the quality is perfect, there is no rework. If the reliability of process is perfect, there are no recoveries from process error required. Both rework and process error recovery have been major contributors to poor utilization throughout the industry. #composites #innovation #technology #productivity #aerospaceengineering #robotics #space
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📣 Connecting The Dots... 📣 CycloTech GmbH provides the VTOL market with a thrust vector control system as a superior main or auxiliary propulsion technology. CycloRotors are compact and allow precise maneuverability and a stable transition from hover to flight even in harsh transitions due to the instant and direct control of magnitude and direction of thrust. The rotor technology enables OEMs to develop the next generation of aircraft, especially for UAV and UAM applications. In addition, Cyclotech develops a Vertical Axis Wind Turbine with the Cyclogyro principle as the underlying technology to contribute to a smarter and greener future. 😁 The major challenge of using the Cyclogyro rotor technology is its radically new approach as an aircraft propulsion unit and the high rotational speed. This requires an extremely lightweight construction in combination with a smart design which demands new concepts, advanced composite materials, and innovative manufacturing methods. The key is to understand, describe and control the underlying physics and its effects of a CycloRotor by heart. 💪 CycloTech has also built up a highly automated toolchain with CFD-simulation, multi-body-dynamics calculation models, FE-simulations, and further optimization tools to continuously improve the performance of the CycloRotors. Only with that knowledge and clear insight into the technology it is possible to establish the Cyclogyro rotor technology on the market as a clear ground-breaking innovation for VTOL and urban air mobility! 😎 Check out the first flight of the CycloTech technology demonstrator! Their prototype It is overloaded with carbon fiber! 😍 #thenativelab #thenativethinking
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Data Engineer | Data Analyst | Microsoft certified| Azure Databricks I Azure ADF |SQL developer | python programmer |
Physical transformation leading to the change in metal dimensions .
A morphing CFRP aerofoil with highly controllable aerodynamic performance! 👀 Researchers from the University of Manchester Rui Wu, Costas Soutis, Shan Zhong and Antonio Filippone have developed a morphing carbon fiber composite aerofoil concept with an active trailing edge! 🤩 This aerofoil features of camber morphing with multiple degrees of freedom. The shape morphing is enabled by an innovative structure driven by an electrical actuation system that uses linear ultrasonic motors (LUSM) with compliant runners, enabling a full control of multiple degrees of freedom. The compliant runners also serve as structural components that carry the aerodynamic load and maintain a smooth skin curvature. The morphing structure with compliant truss is shown to exhibit a satisfactory flexibility and loading capacity in both numerical simulations and static loading tests. 😎 This design is capable of providing a pitching moment control independent of lift and higher L/D ratios within a wider range of angle of attack. Such multiple morphing configurations could expand the flight envelope of future unmanned aerial 2 vehicles. A small prototype was built to illustrate the concept but as no off-the-shelf LUSMs can be integrated into this bench top model, two servos are employed as actuators providing two controlled degrees of freedom. 🏆 #composites #composite #compósitos #compositematerials #materialsengineering #fibers #lightweight #reinforcedplastics
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inside of Planetary GearBox What is a Planetary Gearbox? A planetary gearbox consists of three main components: a central sun gear, an outer ring gear, and planet gears that rotate around the sun gear while being connected to the central shaft. This arrangement creates multiple gear stages and allows for versatile speed and torque control. 👉Uses of Planetary Gearbox: Planetary gearboxes have a wide range of applications, including: •Automotive Transmissions: They are used in automatic transmissions to provide different gear ratios for efficient power transfer. •Robotics: Planetary gears are common in robot joints and arms to control precise movements. •Wind Turbines: They help convert variable wind speeds into consistent generator speeds. •Industrial Machines: Used in conveyors, mixers, and other machinery to control speed and torque. •Aerospace: Found in aircraft landing gear systems and actuators. 👉Advantages of Planetary Gearbox: •High Efficiency: Planetary gearboxes typically have high efficiency due to their design, which minimizes power loss during transmission. •Compact Size: They offer a high gear reduction ratio in a relatively compact form, making them suitable for tight spaces. •Multiple Ratios: By changing the arrangement of gears or using different-sized gears, you can achieve various gear ratios. •Load Distribution: The load is distributed evenly among multiple planet gears, reducing wear and increasing durability. •Precise Control: They provide precise control over speed and torque, making them suitable for applications where accuracy is crucial. #industrial #robotics #mechatronics #planetarygear #mechanical #automation #robotics #compact #highefficiency #transmission
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