The use of strut channel roll forming equipment in construction projects has been popularized. In the event of sudden natural disasters, it can effectively reduce the impact of disasters caused by the corresponding fortification seismic intensity, and achieve the effect of reducing personnel injuries and property losses.

Next, some analysis of the seismic structure of the seismic support is carried out.
Strut channel roll forming machine application:
The indoor supports and hangers of the installation project are optimized and installed according to local conditions, so that the installation of equipment, air ducts, seismic supports, cable bridges and various pipelines achieves the effects of material saving, compact and beautiful layout, and solid and reliable quality. At the same time, it is the layout of integrated pipelines. Provides favorable conditions.

-The structural members of the seismic support should strive to avoid brittle failure.
-For masonry structures, reinforced concrete ring beams and structural columns, core columns, reinforced masonry or combined columns of reinforced concrete and masonry should be used.
-For reinforced concrete components, reasonable selection of cross-sections and reasonable reinforcement should be adopted to avoid shear failure prior to bending failure, avoid compression failure of concrete prior to the yield of steel bars, and avoid failure of steel anchorage prior to component failure.
-In the seismic design of reinforced concrete frame structures, the design principles of strong columns and weak beams, strong nodes should be followed as far as possible to prevent brittle failure.
Advantages of using strut channel roll forming machine
In the electromechanical system of modern buildings, the number of various electromechanical circuits is huge, the specifications and models are very complicated, and the use functions are also different. In the daily work of the electromechanical system, whether the electromechanical pipeline has sufficient strength to fix the pipeline on the structure when the gravity is running at full load is the key to the normal operation of the entire electromechanical system.

In the event of an earthquake, whether the pipelines of the electromechanical system can be guaranteed not to be damaged under the seismic action of fortification intensity, and whether some lifeline systems can ensure normal operation are also important factors to protect people’s lives and property.
Through the calculation of the seismic force of the electromechanical pipelines and equipment, the seismic reinforcement of the connections between the pipelines and equipment and the building structure and the seismic check calculations are carried out to establish a reliable connection between the electromechanical pipelines and equipment.

It can transmit all the seismic effects of electromechanical pipelines and equipment to the structure, and the seismic support enables it to quickly resume operation after being affected by the earthquake of the fortification intensity, thereby reducing and avoiding secondary disasters as much as possible and restoring the function of the building as soon as possible the goal of.
The main design steps of seismic support are arranging points for pipelines and equipment—mechanical calculation and selection one by one—checking calculation point by point until all points meet the seismic fortification requirements.
