In our most recent article, we discuss upper attachment points and the load(s) imposed on them in a lift. We cover the essentials for these important topics in crane safety, including: ➤ Planning correctly for lifting loads ➤ What load does the upper attachment hardware experience when lifting a load? ➤ Important information about maximum included angle ➤ Calculating total suspended load ➤ And more… Check it out on our website: https://lnkd.in/gZ9_zdW4 #crane #safety #management #spearandlancaster
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The World of Crane Safety
Picture this: You're at a construction site, surrounded by towering cranes reaching for the sky like mechanical giants. These impressive machines are crucial for lifting heavy materials, but they also present significant safety challenges. That's where crane safety comes into play, and today, we're going to delve into the geeky yet critical world of crane safety! Read the Quality Examiner article on Crane Safety: https://lnkd.in/eNesqw5C #cranesafety
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Crane and lifting safety is crucial to prevent accidents and ensure efficient operations. In this PDF, you'll learn best practices for crane operation, proper rigging techniques, load calculations, and emergency procedures. Enhance your knowledge to protect your team and equipment. #CraneSafety #LiftingSafety #WorkplaceSafety #ConstructionSafety
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A tandem lift is a method of lifting a heavy or oversized load using two or more cranes working together. It allows you to lift loads that exceed the capacity of a single crane. There are two main types of tandem lifts: #Equalized tandem lift: This method uses an equalizer beam with a central load link and pin. The crane hooks from each crane lift one end of the beam. The load is then hung from the center of the beam, distributing half the weight between each crane. #Unequalized tandem lift: This is a common way for two cranes to lift boats and ships in and out of the water. In an unequalized lift, each crane lifts a different portion of the load. The weight distribution is determined by the weight of the load and the distance between the crane's lifting points. Tandem lifts can be very complex and risky operations. Here are some of the risks associated with tandem lifts: #Side loading: This occurs when the cranes are not lifting the load in a perfectly vertical plane. Side loading can put excessive stress on the cranes and can cause them to tip over. #Unequal weight distribution: If the load is not evenly distributed between the cranes, one crane could become overloaded and tip over. #Shifting center of gravity: The center of gravity of the load can shift during the lift, which can cause one crane to become overloaded. #Communication breakdowns: It is critical that the crane operators communicate effectively with each other during a tandem lift. Communication breakdowns can lead to accidents. To mitigate these risks, it is important to carefully plan and coordinate tandem lifts. A qualified lift director should be in charge of the operation, and all personnel involved should be properly trained. All the rights and credits are reserved for the respective owner, Industrial Training International
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Picture this: You're at a construction site, surrounded by towering cranes reaching for the sky like mechanical giants. These impressive machines are crucial for lifting heavy materials, but they also present significant safety challenges. That's where crane safety comes into play, and today, we're going to delve into the geeky yet critical world of crane safety! Read the Quality Examiner article on Crane Safety: https://lnkd.in/eNesqw5C #cranesafety
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#Factors #Contributing to #Lifting #Operation #Incidents. Equipment Failures: Overloading, defective or poorly maintained equipment. Improper Rigging: Incorrect sling angles, uneven load distribution, weak attachment points. Environmental Factors: High winds, and poor weather reducing stability and friction. Human Error: Inadequate training, failure to follow procedures. Load Issues: Unsecured or unstable loads, miscalculated weight. External Forces: Vibrations, impacts causing load movement. Improper Planning: Inadequate lift plans, and failure to inspect equipment. Technical Issues: Misuse of taglines, center of gravity misalignment. Prevention: Proper planning, equipment checks, adherence to safety protocols, and skilled personnel are key to safe lifting operations.
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Safety is non-negotiable. This crane collapse is a powerful reminder of the importance of accurate weight assessments and ensuring equipment capacity is not exceeded. Always adhere to safety protocols and verify load limits before any lifting operations. Protect lives, prevent incidents, and prioritize safety every step of the way. #SafetyFirst #WorkplaceSafety #ConstructionSafety #Cranes #LiftingOperations #SafetyMatters #RiskManagement #HeavyEquipmentSafety
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Cranes are powerful machines capable of lifting heavy loads, but they pose significant risks if not handled properly. This narrative outlines potential dangers, such as crane collapses, falling loads, and operator inexperience. It emphasizes the importance of skilled operators, clear communication, and safety measures like barriers and personal protective equipment. By adhering to these guidelines, teams can ensure safe crane operations and prevent accidents. #cranes #safetyfirst #construction #heavylifting #workplacesafety
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Dismantling Tower Crane Process This presentation outlines the systematic process of dismantling a tower crane, ensuring safety, efficiency, and adherence to industry best practices.
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Crane Safety Near Power Lines. When setting up a crane near power lines, it is crucial to maintain a safe distance of at least 3 meters to avoid collision between the crane's boom and the lines, which can result in electric shock. In the event of a collision, follow these safety procedures: Contact the relevant authority immediately to have the power supply cut off. If you cannot disconnect the crane from the power supply, remain in place and do not move until the power is cut off. This is because electricity can spread up to 10 meters around the crane. If there is a danger and you cannot stay in place, move away from the electrical area for a distance of 10 meters without lifting your feet off the ground. Move slowly and drag your feet along the ground without lifting them at all. By following these safety guidelines, you can help prevent accidents and injuries when working with cranes near power lines. Remember: Safety is always the top priority. If you are unsure about any aspect of crane operation, consult with a qualified professional. #Free_Palestine 💚
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Crane Safety Near Power Lines. When setting up a crane near power lines, it is crucial to maintain a safe distance of at least 3 meters to avoid collision between the crane's boom and the lines, which can result in electric shock. In the event of a collision, follow these safety procedures: Contact the relevant authority immediately to have the power supply cut off. If you cannot disconnect the crane from the power supply, remain in place and do not move until the power is cut off. This is because electricity can spread up to 10 meters around the crane. If there is a danger and you cannot stay in place, move away from the electrical area for a distance of 10 meters without lifting your feet off the ground. Move slowly and drag your feet along the ground without lifting them at all. By following these safety guidelines, you can help prevent accidents and injuries when working with cranes near power lines. Remember: Safety is always the top priority. If you are unsure about any aspect of crane operation, consult with a qualified professional. #Free_Palestine 💚
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