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Product SKU: HRD-3004

Mechanical Hydraulic Radial Damper (or brake) for Sloping Sliding Gates | Maximum slope 13,9° (30 Nm)

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  • Mechanical Hydraulic Radial Damper (or brake) for Sloping Sliding Gates | Maximum slope 13,9° (30 Nm)
  • Mechanical Hydraulic Radial Damper (or brake) for Sloping Sliding Gates | Maximum slope 13,9° (30 Nm)
  • Mechanical Hydraulic Radial Damper (or brake) for Sloping Sliding Gates | Maximum slope 13,9° (30 Nm)
  • Mechanical Hydraulic Radial Damper (or brake) for Sloping Sliding Gates | Maximum slope 13,9° (30 Nm)

Mechanical Hydraulic Radial Damper (or brake) for Sloping Sliding Gates | Maximum slope 13,9° (30 Nm)

Product SKU: HRD-3004

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  • Maximum slope 13,9° (30 Nm) | Hydraulic Radial Damper (or brake) for Sloping Sliding Gates

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Product Information

CONTROLGIR-30 Mechanical Hydraulic Radial Damper (or brake) for Sloping Sliding Gates
| Maximum slope 13,9° (30 Nm) |

The braking system for sloping sliding gates – maximum slope 13,9° (30 Nm)

Hydraulic radial damper, adjustable sensitivity for sliding gates. “Parachute” brakes for sloping sliding gates | Hydraulic Gate Damper (or brake) for Sloping Gates

A mechanical, hydraulic radial damper is designed to resist sliding gates. It allows controlled movement downhill while freewheeling uphill, enhancing safety and functionality. The CONTROLGIR-30 Radial Damper is made of stainless steel and can support significant weights, making it suitable for heavy-duty applications in slope motion control.

 

TECHNICAL DATA
M (required resistant moment): 30 Nm
Rack pitch: M4
Gate weight: 400 Kg (3920 N)
Slope: 13,9° MAX

Formula:
M [Nm] = P x sinß x 0,032
P = gate weight in Newtons (9.8N=1Kg)
sinß = sine of the tilt angle (ß= tilt in degrees)
P = 9.8 x 400kg = 3920 Newton
M = 3920 Newton x sin 13.9 x 0.032 = 30 Nm

 

 

Calculation | Hydraulic Radial Damper 

M [Nm] = P x sin ß x 0.032 
P = weight of the door in Newton (9.8N=1Kg) 
ß = inclination in degrees 

Calculation Example:
CONTROLGIR-30 can be used on doors that weigh 700 kg and have an inclination of 5º and a rack M4.
P = 9.8 x 700kg = 6860 Newton
M = 6860 Newton x sin5 x 0.032 = 19.13 Nm
19.13 Nm is less than 30 Nm (maximum allowed), and is thus the brake would be suitable for this installation. 

The radial damper, a crucial safety feature, resists the sliding gate's descent down the hill while allowing it to freewheel when ascending. Installing a Hydraulic Radial Damper on steep inclines is advisable to assist the sliding gate motor and enhance safety. 

 

Hydraulic Radial Damper Dimensions and Technical Characteristics

 

COG MODULE M4
Nº of TEETH Z16
TYPE OF LIQUID SILICONE 3000
SERVICE TEMPERATURE -15ºC +70ºC
MAXIMUM WEIGHT 30 NM
BRAKE DIRECTION LEFT OR RIGHT
LOAD ADJUSTMENT YES

 

 

CONTROLGIR Mechanical Hydraulic Radial Damper (or brake) for Sloping Sliding Gates

Hydraulic radial damper, adjustable sensitivity for sliding gates. “Parachute” brakes for sloping sliding gates | Hydraulic Gate Damper (or brake) for Sloping Gates

"CONTROLGIR" is a hydraulic gate damper (or brake) used for continuous damping (speed control or limiting) of sliding gates on an incline (slope or hill). It is a mechanical device that can be used even without electric power.

The CONTROLGIR line is indispensable for standardization in the presence of sliding gates on a slope. The internal hydraulic circuit (adjustable) functions like a “parachute,” regulating the downward speed throughout the gate’s travel on the slope surface. The operating speed should be adjusted just above that of the gate motor so that it does not interfere with the automation.

Hydraulic radial damper with adjustable sensitivity for sloppy sliding gates. The pinion gear engages the drive rack, substantially resisting the gate rolling downhill. The resistance force adjusts to match the gate weight to a slope angle. This one-way hydraulic radial damper is compact and heavy-duty stainless steel.

 

What are the benefits of hydraulic dampers?

Hydraulic dampers offer several benefits, including:

Vibration Control: They effectively reduce vibrations and shocks, providing a smoother operation in machinery and vehicles.

Adjustable Damping: Many hydraulic dampers allow for adjustable damping characteristics, enabling customization based on specific application needs.

Load Handling: They can handle heavy loads and provide consistent performance under varying conditions, making them suitable for heavy-duty applications.

Durability: Hydraulic dampers are typically robust and designed to withstand harsh environments, leading to a longer lifespan.

Energy Absorption: They absorb energy during impact, protecting components and structures from damage.

Noise Reduction: Dampening vibrations also help reduce noise levels in machinery and vehicles.

Improved Stability: Hydraulic dampers enhance the stability of systems, particularly in automotive and aerospace applications, improving safety and performance.

Smooth Operation: They provide a controlled and smooth movement, which is crucial in applications like automotive suspensions and industrial machinery.

Hydraulic dampers enhance performance, safety, and comfort in various applications.