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Time is of essence in #pipeline construction - ABIBUG® 300 makes every second count... Write to us to know more: https://hubs.ly/Q01ZQdvW0 #pipewelding #orbitalwelding #welding #weldingexcellence #weldingmachine #weldingtechnology #weldingsolution #pipewelder #welder #weldingindustry #infrastructure #development
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Plant News: COMPACT HD HYUNDAI EXCAVATOR JOINS B JEFFREY FLEET B JEFFREY CONSTRUCTION LIMITED, a leading civil engineering contractor based in York, has taken its first HD Hyundai HX48Az midi excavator from local dealer Taylor and Braithwaite. The company also operates two HX85A compact machines, two 14-tonne HX140A L excavators, an HX210A L and an HX220A L. Press release by HD Hyundai Construction Equipment Europe Read more: https://lnkd.in/duR4rjye Would you like to see more plant news? #hyundaiconstructionequipment #hyundaihx48 #plantnews #planthirenews
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#Piling work on Railway ROB (WCR-KOTA Engineering bridge line) Project. The procedure for bored cast-in-situ piles involves the following steps: 1. Setting up: Drill the piles in a sequence to minimize time and movement. 2. Marking reference points for further checking. 3. Temporary casing: Install a temporary casing and drill out the soil. 4. Drilling: Use a bored piling machine with special drilling tools to remove soil and rock (The drilling tooling used depends on the type of soil to be excavated. For example, augers are used for clayey soils above the water table, drilling buckets for loose soil or soft clays below the water table, and rock augers or core barrels for penetrating rock profiles.) *Sometimes Borehole stabilization required while drilling as per strata condition. 5. Cleaning: Clean the socket (Mud density should be limited to 1.12) 6. Reinforcement cages: Place the reinforcement cages. 7. Concreting: Fill the hole with reinforced concrete (generally tremie method). 8. Removal: Remove the temporary casing. 9. Hardening: After hardening, break out the top section of the concrete pile to reach sound concrete (Pile head chipping should be done by 1 week). Reference: IS-2911 Part-1 Section-2. #Railway #Bridges #OverBridges #Infrastructure #Development #IndianRailways #WCR-KOTA #railway #civil #engineering #department #construction #CivilEngineers #BridgeEngineer LIONENGINEERIN CONSULANTS ZETWERK Zetwerk Manufacturing
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Decoding Construction Machinery—How Does a Diesel Pile Hammer Work? Today, we're taking a closer look at the mechanics behind the Diesel Pile Hammer, a key tool in foundation work. This machine uses the power of diesel fuel to drive piles into the ground, making it an essential part of large construction projects such as bridges, ports, and high-rise buildings. What Is a Diesel Pile Hammer? A Diesel Pile Hammer operates similarly to a large two-stroke diesel engine. It uses the combustion of diesel fuel to create powerful impacts that drive the pile deep into the soil. The hammer is made up of several components, including the piston (which delivers the impact), the cylinder, and the pile frame. There are two main types of diesel pile hammers: 1. Guide Rod Diesel Hammer – Uses guide rods to move the hammer along a controlled path, ensuring precise pile driving. 2. Tubular Diesel Hammer – Relies on the cylinder itself for guidance, eliminating the need for guide rods. Working Process The operation of the diesel hammer is driven by the combustion of diesel fuel in the cylinder. The hammer is first lifted by a cable and then released to fall freely, compressing air and igniting the fuel. This results in a powerful explosion that drives the piston upward, ready for the next strike. This process continues until the pile reaches the desired depth or the operator stops the machine. Structure and Features - Main Components: Pile hammer, pile frame, guide rods, and auxiliary equipment. - Flexible Operation: The pile frame can rotate and move, and can even be tilted for driving inclined piles or extended for underwater work. This technology is essential for ensuring strong and stable foundations, especially in large-scale projects that require deep foundations. #ConstructionMachinery #Engineering #DieselHammer #PileDriving #FoundationWork #InfrastructureDevelopment #HeavyEquipment #ConstructionIndustry
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The future of wheeled excavators! . . . #reeds #reedsconstruction #reedsengineering #construction #engineering #excavator #wackerneuson #wheeledexcavator
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Innovating Safety: Demolition Robots Redefine High-Risk Silo Projects One of the toughest challenges of the coal silo project was removing a deteriorating hopper situated 120 feet high, obscured by a concrete lid with no access points and unclear attachment methods. The team adopted a methodical approach, removing small sections of concrete daily to expose the hopper and its supports. After removing the lid, the hopper’s bottom was carefully cut to avoid debris buildup. A demolition robot played a critical role, taking controlled “bites” out of the structure while keeping personnel safely distanced. This approach ensured safe, precise removal without risking crane-based cutting. The team’s adaptability and precision in overcoming unseen intricacies ensured a successful operation. video rights : eastcoastdemolition #demolition #construction #engineering #civilengineering #civilconstruction #engenharia #engenhariacivil #engenheiro #engenheirocivil #ingeniero #ingenierocivil
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A perfect day for track crushing. . . . #reeds #reedsconstruction #reedsengineering #construction #engineering #mericrusher #meriroad #rc90 #tractor #trackcrushing #trackstabilisation #groundstabilisation #soilstabilisation #groundworks #earthworks #planthire #planthireuk
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Innovating Safety: Demolition Robots Redefine High-Risk Silo Projects One of the toughest challenges of the coal silo project was removing a deteriorating hopper situated 120 feet high, obscured by a concrete lid with no access points and unclear attachment methods. The team adopted a methodical approach, removing small sections of concrete daily to expose the hopper and its supports. After removing the lid, the hopper’s bottom was carefully cut to avoid debris buildup. A demolition robot played a critical role, taking controlled “bites” out of the structure while keeping personnel safely distanced. This approach ensured safe, precise removal without risking crane-based cutting. The team’s adaptability and precision in overcoming unseen intricacies ensured a successful operation. video rights : eastcoastdemolition #demolition #construction #engineering #civilengineering #civilconstruction #engenharia #engenhariacivil #engenheiro #engenheirocivil #ingeniero #ingenierocivil
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Efficient teamwork: excavators working together to move earth in a deep excavation site In a deep excavation site, one excavator digs up earth and loads it into another excavator's bucket nearby. The second excavator then moves the soil to a dump area. The operators work together, ensuring smooth and continuous earthmoving. This coordinated effort makes the excavation process quick and efficient. video credits : Respective owners DM for removal /credits #excavation #engineering #civilengineering #construction #civilconstruction #engenharia #engenhariacivil #engenheiro #engenheirocivil #piling #ingeniero #ingenierocivil #engineering
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Efficient teamwork: excavators working together to move earth in a deep excavation site In a deep excavation site, one excavator digs up earth and loads it into another excavator's bucket nearby. The second excavator then moves the soil to a dump area. The operators work together, ensuring smooth and continuous earthmoving. This coordinated effort makes the excavation process quick and efficient. video credits : Respective owners DM for removal /credits #excavation #engineering #civilengineering #construction #civilconstruction #engenharia #engenhariacivil #engenheiro #engenheirocivil #piling #ingeniero #ingenierocivil #engineering
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