Zinc Coating Metal Thrie Beam Crash Barrier Sheet

Product Details
Customization: Available
After-sales Service: Long Time
Warranty: Two Years After Sale
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  • Zinc Coating Metal Thrie Beam Crash Barrier Sheet
  • Zinc Coating Metal Thrie Beam Crash Barrier Sheet
  • Zinc Coating Metal Thrie Beam Crash Barrier Sheet
  • Zinc Coating Metal Thrie Beam Crash Barrier Sheet
  • Zinc Coating Metal Thrie Beam Crash Barrier Sheet
  • Zinc Coating Metal Thrie Beam Crash Barrier Sheet
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Basic Info.

Model NO.
DC-GR-191456
Certification
ASTM, ISO9001, CE, BV, SGS
Surface Treatment
Galvanized or Powder Coated
Position
Road Side
Material
Q235B, Q345, Ha350, Ha300
Thickness
2.55mm, 2.75mm, 3mm, 4mm, 6mm etc.
Certificate
ISO9001, ISO14000, SGS, Ce, BV
Applied Standard
Aashto-M180, AS/NZS 3845:1999, BS En-1317
Transport Package
Standard Export Bundle or as Per Your Request
Specification
4310/4320*520/506*83/85*2.7/4mm or as your design
Trademark
Wuhan Dachu
Origin
China
HS Code
7308900000
Production Capacity
4000 Tons Per Month

Packaging & Delivery

Package Size
432.00cm * 50.60cm * 8.50cm
Package Gross Weight
45.000kg

Product Description

Metal Crash Barrier is a particularly effective road safety system serving to protect vehicles and its occupants in the case of a mishap by absorbing the impact of energy emitted from the collecting vehicle which thus results into minimization of risk.

The Metal Thrie Beam Crash Barrier (also called tri-wave crash barrier, road barrier, guardrail barrier, metal beam barrier, etc.) is a type of guardrail that is essentially two pieces of W-Beam Guardrail formed into one single shape. It is used in specific circumstances where additional coverage may be necessary. The installation of thrie beam guardrail along the highway can help to protect the errant cars from crashing off the road.

Thrie Beam Guardrail Features
Manufactured to state road authority specifications
Compliant to AS/NZS 3845: Road Safety Barrier Systems
The additional corrugation in the rail element stiffens the system
The higher mounting position of the rail increases its ability to contain larger vehicles with a high centre of gravity
Can be used in verge or median locations
Hot-dip galvanised in accordance with AS/NZS 4680
Zinc Coating Metal Thrie Beam Crash Barrier Sheet
Zinc Coating Metal Thrie Beam Crash Barrier Sheet



Specification
Zinc Coating Metal Thrie Beam Crash Barrier Sheet
Normal Size(mm) 3200/3300/4000/4130/4300/4320 × 306/310/312/380×80/82/83/85 × 2.55/2.75/3/4 & other sizes
Profile w-beam & thrie-beam
Base Material Q235B, Q345, Q345B, S355JR, HA350 and HA300 or equivalent
Thickness 2.55mm, 2.75mm, 3mm, 4mm or according to consumers' request
Surface Treatment Hot dip galvanized or powder coated
Thickness of Galvanizing 550g/m2 (80µ) or 610g/m2 (85µ) or 1100 g/m2 (160µ) or 1200 g/m2 (170µ) or as per your request
Certificate  ISO9001, ISO14000, SGS, CE, BV
Feature Great corrosion resistant, high intensity, long and durable, with good impact resistance, low cost, long life, higher security, environmental protection, etc.
Other Other special specification as per client's requirement or drawings.

Zinc Coating Metal Thrie Beam Crash Barrier Sheet
 

We manufacture highway guardrails according to those Standards as below:

A. JT/T 281-1995(Corrugated Sheet Steel Beams For Expressway Guardrail - China)

B. AASHTO-M180 (Corrugated Sheet Steel Beams For Highway Guardrail - USA)

C. AS/NZS 3845:1999(Road Safety Barrier Systems - Australia/New Zealand)

D. BS EN-1317(Road Restraint Systems - Europe)

E. RAL RG620 (Germany)

F. Or tailor-make according to client's requirements


Our Production Process: 
Zinc Coating Metal Thrie Beam Crash Barrier Sheet

 

Guardrail Installation Criteria:
Please observe the following guidelines to install barrier. Our company will send the techincians and reprentative for our product guardrails instllation for all the Techincal Support and Guiance.

Preliminary operations
Where installation is to be carried out in traffic, all necessary road signs must be set up in order to direct traffic and protect workers from vehicles, in accordance with safety regulations. The parts making up the road barrier can be unloaded from the transport vehicles by means of a crane fitted to the vehicle, or forklift truck, in accordance with current safety regulations. Workers must be supplied with all required equipment, including safety shoes, gloves and goggles and -where necessary - helmets, safety harnesses and all else specifically needed for the site and required by current safety regulations.

Installation sequence
The assembly diagram provides instructions for correct barrier installation. Fully and completely follow these instructions.
Main steps:
1.  Trace out a full line of reference on the ground, which will serve to align poles and beams.
2.  Place the beams along the traced line taking into account the direction of traffic.
3.  Posts (designated posts according to the drawings) are to be lifted vertically and planted in the
4.  ground1,080 mm (or designated) deep the holes in the top and spaced 2,000mm or 4,000mm apart. A pile-driver is generally used. During this phase, please check: alignment and level of posts, distance between posts, that they are vertical, and distance from the embankment, all in accordance with the measurements and tolerances specified in the applicable drawing of reference.
5.  Assemble the spacers to the uprights using the M16x50 mm bolts;
6.  Assemble the beams that have been laid on the ground, attaching them to the spacers with M16x45 bolts and the beam themselves by means of bolts M16x35 supplied.
7.  Use the calibrated pneumatic screwdrivers to fasten all nuts and bolts into place, checking levels and alignments.
8.  Installation must always take place under the surveillance of a specialist technician, and in full compliance with the final drawing and current safety regulations.

Inspection of installation conformity
The technician responsible for the installation shall, at the very least, control conformity of the following, prior to beginning assembly, during work and upon conclusion, by using all measurement instruments necessary and in his possession:
1.  Full compliance of the installation with the final drawings of reference.
2.  Pole spacing and height of upper beam and current edge in accordance with that specified on the final drawings of the barrier, dilation joints and ends.
3.  Length and alignment of the installation on the basis of the final drawings and the road layout and altimetry.
4.  Final coupling bolt torque according to that set in the assembly diagram.
5.  Compliance with all applicable safety regulations.

 

 

 

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