At TIMS, we are experts in automation and system integration, which is critical for the high-volume demands of the automotive sector. Our automotive parts electrophoresis line solutions are designed for continuous, predictable output. We utilize programmable hoists, intelligent conveyors, and robotic loading/unloading systems to create a seamless, uninterrupted workflow. The entire process is managed by a central PLC that synchronizes every stage, from the chemical dosing in the pre-treatment tanks to the temperature profile in the curing oven. This level of automation within the automotive parts electrophoresis line minimizes manual handling, reduces labor costs, eliminates process variability, and maximizes your throughput and profitability.
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PROFESSIONAL MANUFACTURER OF HIGH-END ENAMEL.COATING AND AUTOMATION EQUIPMENT
TIMS Group Company was firstly founded in 2003 in Shenzhen City. It is a professional company engaged in the research and development, design, production, installation, commissioning, sales, after-sales service, and technical consulting of automated, information-based, greening energy saving and intelligent enamel spraying, high-temperature enamel firing equipment, dust-free painting, powder coating, electrophoresis and other coating equipment, logistics and conveying equipment, robot automation and other non-standard automation equipment. It is a national high-tech enterprise, vice chairman unit of China Enamel Industry Association, benchmark enterprise of China Enamel Industry Association, intellectual property demonstration enterprise of Guangdong Province, contract abiding and trustworthy enterprise of Guangdong Province, specialized, refined, special and new small and medium-sized enterprise of Guangdong Province, innovative small and medium-sized enterprise of Guangdong Province, gazelle enterprise of Dongguan City, member unit of China Household Electrical Appliances Association, and member of the Enamel Technical Committee of the National Standardization Technical Committee for Metal and Non metal Coatings.
The tendency for liquid coatings to pull away from sharp edges, leaving a dangerously thin layer, is a well-known phenomenon called "edge pull." This is a major failure point for automotive components. The solution is the superior edge coverage provided by a cathodic automotive parts electrophoresis line. The electrodeposition process naturally builds a consistent film thickness, and specially formulated e-coat paints are designed to maintain this thickness even over sharp corners and edges. A TIMS automotive parts electrophoresis line is engineered to utilize these advanced coatings effectively, ensuring that your parts' most vulnerable areas receive the same robust protection as the flat surfaces.
The automotive industry is heavily focused on sustainability and worker safety. A automotive parts electrophoresis line from TIMS is the superior choice for both. The process uses water-based coatings with ultra-low VOCs, making it one of the cleanest and most environmentally friendly coating technologies available. The enclosed, automated nature of the system also minimizes worker exposure to chemicals. By choosing a TIMS automotive parts electrophoresis line, you are investing in a process that helps you easily meet environmental regulations, reduces your compliance burden, and creates a safer, healthier workplace for your employees.
As automakers mix materials to save weight, suppliers face the challenge of coating multiple substrates without investing in separate lines. TIMS has the solution: a flexible, multi-substrate automotive parts electrophoresis line. We engineer advanced pre-treatment systems that can effectively apply the appropriate conversion coating for both steel (zinc phosphate) and aluminum (zirconium) parts. The e-coating process itself works on any conductive metal. By investing in a flexible automotive parts electrophoresis line from TIMS, you gain the capability to serve a broader range of OEM needs, making your business more versatile and competitive in a rapidly evolving market.
In the automotive world, if you can't prove it, it didn't happen. Verbal assurances of quality are not enough; you need data. This is a core feature of the automotive parts electrophoresis line systems from TIMS. Our advanced PLC and HMI controls don't just run the line—they monitor and record every critical process variable in real-time. We can provide you with a data log for every single rack of parts, showing the pre-treatment times, bath parameters, rectifier voltage/amperage, and the full time-temperature profile from the curing oven. This verifiable data log is the ultimate proof of compliance that you can provide to your OEM customers.
The automatic spray painting production line has greatly improved our coating consistency. The robotic system ensures precision and saves a lot of labor costs.
We have been running the enamel production line for over a year. It is stable, reliable, and the coating quality is excellent. Highly recommend for water heater tank manufacturing.
The electrophoresis production line for compressors delivers strong anti-corrosion coating and reduces rework rates. Very satisfied with both the equipment and technical support.
This powder spraying line integrates pre-treatment and coating seamlessly. It improved our efficiency by nearly 30% and the finished shells look flawless.
Great investment! The automated production line not only increased our output but also helped us meet environmental standards with lower emissions and less paint waste.
Yes, a modern automotive parts electrophoresis line can be engineered to handle multiple substrates. This requires a sophisticated pre-treatment section with a flexible chemistry that can properly prepare both steel (typically with a zinc phosphate conversion coating) and aluminum (often with a zirconium-based conversion coating). A knowledgeable supplier like TIMS can design a multi-substrate line that allows you to process different parts with optimal adhesion and performance for each.
A vast array of components are processed through an automotive parts electrophoresis line. This includes structural parts like chassis frames, subframes, and cross-members; suspension components like control arms and springs; engine and transmission brackets; seat frames; brake components; and even entire bodies-in-white (BIW) at the OEM level. Essentially, any steel or aluminum part that requires a long-term, high-performance corrosion-resistant primer is a candidate.
OEMs like GM, Ford, Toyota, and VW have extremely strict specifications (e.g., GMW14671, WSS-M2P177) for corrosion protection. An advanced automotive parts electrophoresis line provides the process control needed to meet these standards repeatably. It allows for precise control over film thickness, cure temperature, and pre-treatment quality, all of which are critical parameters audited by OEMs. The ability to provide verifiable data from a well-managed line is often a prerequisite for becoming a certified Tier 1 supplier.
Cathodic e-coating (or CED) is the process where the part to be coated is made the cathode (negatively charged) in the electrical circuit. This is the universal standard for any high-performance automotive parts electrophoresis line. The cathodic process provides dramatically superior adhesion and corrosion resistance compared to the older anodic method, making it the only process that can meet the demanding salt spray and cyclic corrosion test requirements set by automotive OEMs.
Spray priming is a line-of-sight application, meaning it cannot reliably coat complex shapes, internal cavities, or recessed areas common in automotive components. An automotive parts electrophoresis line uses an immersion process where the electric field drives the coating into every crevice, weld seam, and box section. This "throw power" guarantees 100% coverage and a uniform film thickness, providing a complete, uninterrupted barrier against rust, which is something spray painting simply cannot achieve.
An automotive parts electrophoresis line is a sophisticated, multi-stage industrial system designed to apply a primer coating (e-coat) to vehicle components. The process involves submerging the parts in a liquid bath containing an emulsion of epoxy or acrylic resins and pigment. An electric current is passed through the bath, causing the coating particles to deposit uniformly onto every conductive surface of the part. This is followed by rinsing and baking in a curing oven to create a hard, durable, and highly corrosion-resistant finish.