BOY EXCAVATOR ข้อมูลการติดต่อ, แผนที่และเส้นทาง,แบบฟอร์มการติดต่อ,เวลาเปิดและปิด, การบริการ,การให้คะแนนความพอใจในการบริการ,รูปภาพทั้งหมด,วิดีโอทั้งหมดและข่าวสารจาก BOY EXCAVATOR, ครีเอเตอร์วิดีโอ, 1 ม. 10 ต. เขาบายศรี อ. มือใหม่ จ. จันทบุรี, Chanthaburi.

An intense, tight perspective capturing a extreme rollover hazard in a high-walled rock trench! 🚜⚠️This square shot reve...
10/09/2026

An intense, tight perspective capturing a extreme rollover hazard in a high-walled rock trench! 🚜⚠️

This square shot reveals a yellow Hyundai excavator turned almost completely on its side, wedged at a steep angle between two sheer rock walls. A massive, heavy boulder sits directly under the main boom, while a site observer stands on the rocky path below. Up top, orange safety fencing traces a perimeter road leading past distant haul trucks parked along the upper ridge.

Working within tight rock cuts leaves virtually zero margin for error when handling high-tonnage boulders. Losing track traction or misjudging a load's center of gravity can instantly pitch an excavator against the trench wall, creating a dangerous pinch point that locks the hydraulic boom under massive pressure. Safely righting a machine in such a narrow passage requires rigging overhead anchors or using specialized heavy recovery winches to prevent a full rollover into the worker area below.

⚠️ This post is shared for educational, civil engineering, and quarry site safety awareness.

👇 How would you secure the boom pressure before attempting to pull this machine back upright? Drop your recovery plan below!

A stark, wide-angle look at a high-stakes trench extraction operation in progress! 🚜⚠️This square shot captures a teal K...
10/09/2026

A stark, wide-angle look at a high-stakes trench extraction operation in progress! 🚜⚠️

This square shot captures a teal KOBELCO SK-480 excavator wedged at a severe, nose-down angle inside a deep earth trench following a bench shear. Up on the upper terrace, a massive yellow CAT excavator fitted with a log-grapple attachment lowers its boom into position to stabilize or hoist the trapped unit, framed by safety warning signs, site personnel, and a lush forest canopy under a bright blue sky.

Operating heavy, high-tonnage excavators near deep vertical cuts without proper benching or shoring exposes the site to extreme bank shear risks. Saturated or uncompacted dirt walls lose shear strength rapidly, causing multi-ton machines to break through the ledge and slide into deep voids. Safe recovery requires deploying high-capacity support excavators on solid ground, securing rigid lifting chains or heavy recovery straps, and clearing debris away from the undercarriage before attempting to pull the machine back onto level ground.

⚠️ This post is shared for educational, civil engineering, and trench safety awareness.

👇 How do you rate using a grapple-equipped machine versus rigging chains for stabilizing a trapped excavator? Drop your thoughts below!

A shocking, high-angle aerial perspective capturing a vertical pit crash at a large-scale earthmoving project! 🚜⚠️This s...
10/09/2026

A shocking, high-angle aerial perspective capturing a vertical pit crash at a large-scale earthmoving project! 🚜⚠️

This square shot shows a heavy yellow track excavator tipped completely upside-down and nose-first into a deep, steep excavation pit, its entire undercarriage facing the sky while resting balanced on its tracks against the pit wall. On the surface above, engineers and safety inspectors monitor the situation near work trucks, while motor graders, dump trucks, and rolling hills span the open background under a clear sky.

Operating heavy machinery near steep, un-shored excavation edges poses severe risks of bench failure and operator rollover. Saturated or loose granular soil can collapse under the track weight, sliding the machine head-first into deep voids and trapping the cabin against the pit floor. Safe extraction requires securing multi-point crane hoists, installing secondary anchor lines from heavy dozers, and careful excavation around the cabin to safely clear the machine without causing further trench wall collapse.

⚠️ This post is shared for educational, civil engineering, and site excavation safety awareness.

👇 What’s your mandatory protocol for benching pit walls before moving heavy excavators near the edge? Drop your safety tips below!

A shocking, eye-level highway perspective capturing a catastrophic bridge clearance collision during heavy equipment tra...
09/09/2026

A shocking, eye-level highway perspective capturing a catastrophic bridge clearance collision during heavy equipment transport! 🚜⚠️

This square shot shows a bright orange Doosan excavator tilted vertically on its track end along a busy highway, its boom wedged tight into the severely cracked concrete deck of an overhead bridge span. Debris, shattered concrete chunks, and a hydraulic breaker attachment scatter across the asphalt, while emergency crews and lowboy transport trailers close off the highway lanes in the background under an overcast sky.

Failing to verify overhead clearance limits prior to heavy transport creates extreme hazards along municipal highways and overpasses. When an elevated boom strikes a concrete bridge deck at transport speeds, the impact force can instantly shear structural rebar, lift multi-ton machinery off lowboy trailers, and cause severe structural integrity damage to the overpass. Safe clearance protocol requires conducting route surveys, lowering excavator booms fully onto lowboy beds, and maintaining es**rt vehicles with overhead height poles.

⚠️ This post is shared for educational, civil engineering, and heavy transport safety awareness.

👇 What’s your mandatory height check routine before moving heavy track excavators under concrete overpasses? Drop your steps below!

A dramatic, high-angle perspective revealing an extreme equipment rollover inside a massive open-pit mining operation! 🚜...
09/09/2026

A dramatic, high-angle perspective revealing an extreme equipment rollover inside a massive open-pit mining operation! 🚜⚠️

This square shot captures a heavy yellow mining shovel completely turned onto its side across a rocky bench, its massive steel tracks pointed high into the air while an enormous, dirt-caked rock bucket rests tilted in the foreground. Nearby, a site supervisor inspects the rollover, framed against a sprawling quarry landscape of terraced rock walls, haul roads, mining dump trucks, and secondary excavators under a clear sky.

Maneuvering heavy excavators along unreinforced quarry benches carries continuous risk of catastrophic lateral instability. When operating on unlevel rock debris or near shifting bench edges, swinging a fully loaded ultra-class bucket downhill can instantly shift the center of gravity past the track footprint. Recovering a machine of this scale requires stabilizing the immediate slope, bleeding off trapped hydraulic pressure, and bringing in heavy tandem recovery cranes to safely right the unit without causing further frame damage.

⚠️ This post is shared for educational, civil engineering, and mining site safety awareness.

👇 What’s your first step when assessing structural damage after a heavy machine tip-over like this? Share your protocol below!

A chaotic, urban-adjacent accident scene capturing an extreme multi-vehicle pile-up! 🚜⚠️This square shot shows a large y...
09/09/2026

A chaotic, urban-adjacent accident scene capturing an extreme multi-vehicle pile-up! 🚜⚠️

This square shot shows a large yellow Caterpillar motor grader tilted steeply down a dirt hillside, having slid off the bank directly onto a white commercial cab-over truck and a crushed gray sedan on the road below. A crowd of onlookers gathers along the hillside fence above, while emergency responders and site personnel inspect the wreckage near a concrete retaining wall and roadside utility poles.

Operating heavy machinery on steep, unpaved inclines near public roads demands absolute brake inspection and strict slope-limit protocols. A loss of traction, mechanical brake failure, or operator error on an embankment can transform a multi-ton grader into an unguided runaway, resulting in severe impacts with vehicles below and massive structural damage. Emergency recovery in public corridors requires immediate traffic control, heavy-duty wrecker cranes, and securing the slope before hoisting jammed machinery apart.

⚠️ This post is shared for educational, civil engineering, and road work safety awareness.

👇 How would your recovery crew approach rigging this multi-vehicle tangle safely off the embankment? Share your plan below!

A wide, expansive view capturing a critical multi-machine recovery operation in soft clay! 🚜⚠️This square shot shows a y...
09/09/2026

A wide, expansive view capturing a critical multi-machine recovery operation in soft clay! 🚜⚠️

This square shot shows a yellow CAT 320E excavator listing heavily sideways, its tracks deeply embedded in churned, waterlogged earth alongside a muddy drainage channel. Positioned behind it, a Komatsu excavator reaches over with its boom to assist in pulling or stabilizing the stuck machine, surrounded by tire tracks, a service truck, and open earthworks under a gray, overcast sky.

Operating track-mounted machinery along uncompacted retention pond banks carries high risks of severe ground sinkage. Wet clay soils quickly lose structural integrity under vibration and weight, leading to suction traps that lock the undercarriage in place. Successful extraction requires securing a secondary machine on stable ground, reducing suction around the tracks, and carefully pacing cable or bucket pulls to avoid tipping or structural strain.

⚠️ This post is shared for educational, civil engineering, and site recovery safety awareness.

👇 How many machines would your crew bring in before tackling a stuck unit in saturated clay like this? Share your strategy below!

A sweeping, high-angle aerial perspective showing a large-scale excavation recovery in a expansive earthworks site! 🚜⚠️T...
09/09/2026

A sweeping, high-angle aerial perspective showing a large-scale excavation recovery in a expansive earthworks site! 🚜⚠️

This square shot reveals a yellow CAT excavator bogged down in churned clay and mud along an active drainage basin, backed up by a second excavator positioning for an extraction maneuver. In the background, vast gravel stockpiles, dewatering pumps, site trailers, wheel loaders, and safety supervisors span the sprawling job site under dramatic overcast clouds.

Managing earthworks near retention ponds and open drainage channels requires vigilant ground checks and proper matting. Heavy ground saturation weakens clay soils under high-tonnage equipment, leading to sudden track immersion and suction lockup. Extracting a machine in these conditions demands clearing water via dewatering pumps, stabilizing the surrounding access track, and establishing rigid rigging lines to prevent side-slippage into deeper water.

⚠️ This post is shared for educational, civil engineering, and site safety awareness.

👇 How do you manage site drainage to prevent ground softening around heavy excavation zones? Share your setup below!

A dramatic, wider perspective showing a high-risk excavation hazard in a deep quarry pit! 🚜⚠️This square shot captures a...
08/09/2026

A dramatic, wider perspective showing a high-risk excavation hazard in a deep quarry pit! 🚜⚠️

This square shot captures a yellow Hyundai crawler excavator severely tilted onto its side against a sheer rock wall. A massive, heavy boulder is wedged tightly directly beneath its main boom assembly, pinning the machine in place while a worker stands on the rock-strewn pit floor below. High cliff walls, rising dust clouds, and distant haul trucks emphasize the extreme depth and isolation of the quarry site.

Operating heavy machinery near steep, unstable rock faces presents severe environmental and tipping hazards. Attempting to pry out massive, unyielding stone formations can overload hydraulic systems, cause track slippage on loose rock, or trigger sudden shifting that traps the equipment against the quarry wall. Safe extraction requires securing the rock face, stabilizing the machine with heavy winches or cranes, and clearing the obstruction before attempting to right the excavator.

⚠️ This post is shared for educational, civil engineering, and quarry site safety awareness.

👇 What’s the first step you take to secure the site before beginning a heavy machine recovery like this? Share your protocol below!



What specific type of heavy equipment or site scenario should we tackle next?

08/09/2026

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1 ม. 10 ต. เขาบายศรี อ. มือใหม่ จ. จันทบุรี
Chanthaburi
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