Precautions in the installation of FRP water tank
What are the common problems in the installation of FRP water tank?
Fiberglass water tank is a kind of high-quality water tank, which has been gradually widely used. You must pay attention to some things when installing, only in this way can you fully show its performance.
So what are the key problems common in the installation of FRP water tanks?
Today to explain in detail: FRP water tank enterprises in the construction plan design concept must establish safety production technical countermeasures, otherwise it can not carry out engineering construction. The construction site should have a sewage ditch, and the fire engine should be considered when stacking raw materials. Molten solder wire, tin block and special tools should be dry to avoid splashing. Reasonable safety protection shall be provided for all openings, corridors and entrances of the construction site.
It is strictly prohibited to turn off the power supply with load wiring on the route, and the actual operation of induction power supply is strictly prohibited. When welding is applied, there should be an operation certificate, remove flammable and explosive items around, equip with fire fighting equipment, and set up full-time personnel to watch the fire. When entering the construction site, you must wear a safety helmet, and it is strictly prohibited to wear flip-flops or bare feet.
In the construction of high construction without safety protection equipment, you must fasten your seat belt, and prohibit drunkenness and practical operation. Improve the management of electrical cutting, acetylene, flammable, oxygen gases and their flammable and explosive materials, and immediately eliminate fire accidents around. A common key problem in the installation of FRP water tanks is that one must effectively operate according to the instructions so as to fully demonstrate its performance.
How much is the quality of FRP water tank affected by the interface?
FRP water tank (component: high water tank, storage tank, low tank) interface to the quality of the harm?
We should all know that the quality of many products are related to its raw materials, FRP water tank (component: high water tank, storage water tank, no tank is used to increase raw materials, production (expression: by many parts together into a whole) epoxy resin, and thus has extremely high performance. This external environment also has a considerable harm to the quality of FRP water tank, how much do we actually grasp it, here is a detailed introduction:
What people usually call the interface mainly refers to the boundary between all two-phase chemical substances, the glass in the glass fiber is a cylindrical laminated glass, the surface is as smooth as laminated glass, and the surface is often tough to absorb a thin layer of shrinkage water, which naturally endangers the bonding performance of the glass fiber and epoxy resin.
Especially in the entire production process of metal brushed fabrics, in order to achieve beta rays, wetting, electrostatic elimination (is a positive charge at rest), usually coated with a layer of infiltrating agents, most of which are paraffin compounds. They are left on the surface of the glass fiber, and then the formation process (indicating: multiple parts combined into a whole) of the epoxy resin is isolated from the glass fiber, and the two adhesives are blocked.
In this way, we can realize that the interface is quite harmful to the corrosion resistance of FRP. If there is a problem at the interface, it must be properly treated, such as covering the surface modifier to the surface of the glass fiber, and then tightly combining the glass fiber with the epoxy resin. This method is a very reasonable way to improve the quality of FRP water tanks, and the world will make every effort to carry out scientific research and selection.
In actual operation, glass fiber and spinning are treated with surface modifiers, which not only improve the wear resistance, moisture resistance and insulation of glass fiber, but also improve the compressive strength of glass fiber reinforced plastic water tank, especially the compressive strength under wet and cold conditions.
