We design and manufacture screen materials tailored to your specific application needs, including material grade (manganese steel, stainless steel, polyurethane), aperture shape, wire diameter/thickness, and panel size. Our team provides support for drawing preparation, sample verification, and rapid prototyping to ensure that the screen's adaptability, throughput, and abrasion life meet expectations before full-scale production.
Each production batch is validated through dimensional inspection, hardness and tensile testing (where applicable), and appearance/surface treatment controls to ensure consistent performance under stringent screening conditions. We provide traceable documentation, such as material certificates, inspection reports, and packaging/batch identification, to support your quality assurance requirements and on-site audits.
We support large wholesale orders and use export-standard packaging to prevent deformation and corrosion during transportation. Our logistics team coordinates delivery cycles, container loading schedules, and shipping documents (commercial invoices, packing lists, certificates of origin, and other required documents) to ensure you receive your screen printing materials to your international destination on time.
Our team provides practical guidance for safe installation and efficient replacement, including recommended tensioning methods for braided mesh, panel fastening checks, and step-by-step procedures to reduce rework. We can provide support through manuals, video demonstrations, or remote assistance during planned downtime.
We help you upgrade or replace the screens of your existing vibrating screens by matching universal guide rail systems and fastening methods (e.g., modular, bolted, pin-sleeve). This service focuses on installation compatibility and ease of conversion to minimize downtime during retrofit projects.
We will assess your current screening conditions, including feed characteristics, target screening size, screen layout, and wear patterns, to identify bottlenecks and propose measurable improvement recommendations to increase output, efficiency, and service life. The final outcome may include an optimization summary with recommended screen aperture configurations, target aperture areas, and maintenance intervals.