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Zhejiang Lubote Plastic Technology Co. , Ltd.
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How can the painted plastic handrail bracket maintain good performance and protect human safety in complex environments? ​

2025-05-19

Corrosion resistance in complex environments​
There are various corrosive substances in different environments, which pose a challenge to the material of the baking paint plastic handrail bracket. In a humid bathroom, it is in a high humidity environment for a long time. The water vapor in the air and the chemical components contained in cleaning products, such as acidic toilet cleaners and alkaline floor cleaners, can easily corrode the handrail brackets of ordinary materials, causing the surface to rust and the material to become brittle, thereby affecting its structural strength and service life. However, the painted plastic handrail (bracket) can cope with this environment calmly, and its core plastic material itself has good chemical corrosion resistance. Taking the common polyvinyl chloride as an example, it can effectively resist the erosion of a variety of chemical substances. Even if it comes into contact with acid and alkali cleaners in the bathroom, it will not easily react chemically, maintaining the stability of the material. ​
The paint coating on the surface adds a solid line of defense to its corrosion resistance. Acrylic resins and epoxy resins in the paint materials have excellent chemical stability, and the paint film formed can isolate the plastic substrate from external corrosive substances. When cleaning staff use detergent to wipe the handrail, the chemical components in the detergent cannot penetrate into the plastic, but only contact the paint coating on the surface. The coating will not be easily damaged due to its own corrosion resistance, thus ensuring that the handrail bracket will not be corroded and damaged during long-term use in a humid bathroom environment. ​
In chemical laboratories, the presence of various chemical reagents makes the environment more complex and dangerous. Once highly corrosive chemical reagents such as concentrated sulfuric acid and concentrated nitric acid come into contact with handrail brackets made of ordinary materials, they may cause serious corrosion in an instant, and even cause safety accidents. Painted plastic handrails (brackets) can effectively resist the erosion of these chemical reagents due to the characteristics of their materials. The chemical stability of the plastic substrate itself prevents it from reacting violently with highly corrosive reagents, and the paint coating further enhances its protective ability. Even if the reagent is accidentally splashed onto the handrail during the experiment, the coating can prevent the reagent from corroding the plastic to a certain extent, prevent the handrail bracket from being damaged due to corrosion, and ensure the safety of the experimenters when they are in the laboratory. ​
Wear resistance under high-intensity use ​
Public places have frequent personnel flow, and the handrail bracket is used very frequently, which puts strict requirements on its wear resistance. In crowded places such as shopping malls and stations, a large number of people frequently touch the handrails every day, and friction and collision often occur. Under long-term high-intensity use, handrails made of ordinary materials are prone to scratches and wear on the surface, which not only affects the appearance, but also may reduce its structural strength and pose a safety hazard. ​
The painted plastic handrail can withstand such high-intensity use with its excellent wear resistance. The paint coating on its surface uses materials such as epoxy resin, which has extremely high hardness and wear resistance, and can effectively resist friction and scratches in daily use. When people grab and drag luggage and other items back and forth on the handrail, the coating can minimize the damage to the handrail caused by these external forces. Even after long-term use, the surface of the handrail can still remain smooth and flat, without obvious scratches and wear, which not only ensures the beauty of the handrail, but also maintains its structural strength, providing people with continuous and reliable safety protection. ​
In industrial production environments, workers often need to use handrail brackets to maintain their body balance when operating equipment, and may carry tools to collide and rub against the handrail. Painted plastic handrails (brackets) are also capable of this working environment. The plastic substrate has a certain strength and rigidity, and can withstand a certain amount of external force, while the paint coating on the surface further enhances the wear resistance. When workers carry tools and collide with the handrail, the coating can effectively absorb part of the impact force, reduce damage to the plastic substrate, prevent the handrail from being damaged due to frequent collisions and friction, and ensure the safety of workers and the normal operation of equipment during industrial production. ​
Elastic buffer protection during external force impact​
In daily life and public environments, accidental collisions are difficult to completely avoid, and the performance of the handrail bracket when it is impacted by external forces is directly related to human safety. When ordinary handrail brackets are hit, due to the lack of elasticity, they often transfer the impact force directly to the human body, which is easy to cause injury. The painted plastic handrail has a certain elasticity and can play a buffering role at critical moments. ​
When people accidentally hit the handrail while walking, the flexibility of the plastic substrate of the painted plastic handrail will cause it to deform to a certain extent. This deformation can absorb part of the impact energy and reduce the impact on the human body. At the same time, the paint coating on the surface has a certain elasticity, which can work together with the plastic substrate to further buffer the impact force when it is hit. Unlike the hard feeling of metal handrails when hit, the painted plastic handrails (brackets) will not bring a strong impact to the human body when hit by external forces, but will effectively reduce the damage to the human body through their own elastic deformation, providing people with safer protection. ​
In public transportation facilities, such as buses and subways, sudden braking, acceleration, and bumps during vehicle driving may cause passengers to collide with handrails. The elastic buffering performance of the painted plastic handrails (brackets) plays an important role here. When a passenger hits the handrail due to the shaking of the vehicle, the elasticity of the handrail can effectively reduce the damage caused by the impact to the passenger's body, avoid bruises and abrasions caused by the collision, and ensure the safety and comfort of passengers during the ride.