Henan Jinte Technology Co., Ltd.
Officially registered and established in 2018, Henan Jinte Technology Co., Ltd. has developed into a leading mid-to-large-scale international enterprise. We specialize in the high-fidelity design, advanced manufacturing, and global deployment of complete screening systems, industrial vibratory equipment, and conveying products designed for harsh industrial applications and high-throughput sand and gravel production lines.
Our operational footprint encompasses advanced machinery manufacturing, raw materials processing engineering, and import/export operations. Our engineering approach prioritizes low carbon emissions, high durability, and maximum mechanical efficiency. Today, Jinte machinery products are running in key production environments across Iran, India, Central Africa, Southeast Asia, and beyond. We maintain active compliance with global manufacturing standards, continually driving technical excellence in the mechanical vibration industry.
Pioneering CAD/FEA design environments integrated with automated precision machinery to deliver structurally flawless equipment.
Located in the Economic Development Zone of Xinxiang, Henan Province, China, our manufacturing plant spans a gross area of 26,000 square meters. The modern factory facility covers 25,000 square meters, supported by a 100,000 square meter green industrial zone.
Our engineering design center utilizes CAD workstations featuring international CXAX 3D modeling and advanced Finite Element Analysis (FEA) software. FEA allows us to perform structural modal simulations, stress distribution profiling, and dynamic response forecasting of screen structures prior to physical fabrication. This ensures that the dynamic forces generated by composite screen operations (often exceeding 5G) do not induce localized fatigue stress or structural failure.
Hardware Infrastructure: 80+ sets of precision fabrication machinery including vertical CNC machining complexes, automatic CNC flame/plasma cutting systems, CNC hydraulic bending, high-volume shot blasting, and single-unit lifting capabilities exceeding 20 metric tons.
Understanding the transition from high-tension wire cloth to advanced fiber-reinforced polyurethane composite systems.
For decades, mining operations relied on woven high-tensile steel wire. While initially cost-efficient, metal screens suffer from poor wear characteristics, susceptibility to blinding, high noise output (often exceeding 95 dBA), and high weight, which demands larger motors and high energy consumption. The advent of Composite Vibrating Screens has transformed material processing.
Composite screens incorporate carbon-fiber-reinforced plastics (CFRP) or structural polyurethane elastomers molded over high-tensile steel structural inserts. This integration delivers several key operational advantages:
| Performance Metric | Woven Steel Wire | Polyurethane Panels | Fiber-Reinforced Composites |
|---|---|---|---|
| Aperture Life (Hours) | 150 - 300 hours | 1,500 - 3,000 hours | 3,000 - 6,000 hours |
| Screening Efficiency | 75% - 85% | 80% - 90% | 92% - 98% |
| Energy Consumption | Baseline (High) | 15% Reduction | 25% - 30% Reduction |
| Blinding Tendency | High | Medium-Low | Very Low (Self-cleaning) |
| Noise Level (dBA) | 95 - 105 dBA | 80 - 85 dBA | 75 - 80 dBA |
We design and manufacture over 700 varieties of screening, conveying, and crushing systems for complete industrial process lines.
Our range includes specialized dry/wet sintered screens, double-axis and three-axis self-synchronizing elliptical screens, high-efficiency heavy-duty circular vibrators, and probability rod screens. These systems achieve sharp particle separation from 100mm down to 45 microns.
Heavy-duty, high-incline conveyor assemblies, supporting belt conveyors, unitized flat chain conveyors, and vertical NE/PL-type chain conveyor bucket elevators. Engineered to handle large volume throughputs of abrasive ores, hot sinter materials, and fine aggregate dusts.
Vibrating grizzly feeders, reciprocating coal feeders, electromagnetic and disc feeders, thin-oil vibrator assemblies, and PLF series double-roll crushers. Designed to regulate material flow rate while resisting extreme wear under hopper load stresses.
China Factory 4.0: Quality, Efficiency & Scalability
For B2B buyers in major mining and infrastructure jurisdictions (e.g., Australia, Canada, India, Central Africa, the Middle East), selecting a screen manufacturer is a long-term operational choice. Equipment downtime can cost processing plants tens of thousands of dollars per hour. Our operations are structured to address and minimize these risks.
By implementing Factory 4.0 standards, we integrate production data across our CNC machining centers, automated welding robotic cells, and material handling systems. This ensures that every component is built to design specifications, enabling direct interchangeability of spare parts.
Our supply chain model ensures continuous access to high-grade structural steel and premium polyurethane formulations. Combined with Xinxiang's manufacturing infrastructure, we protect buyers from supply delays and pricing spikes, maintaining stable lead times and delivery schedules.
Tailored screening systems engineered to optimize throughput across diverse geographic and environmental conditions.
Region: India, Central Africa, Australia
High-density iron ore and abrasive quartz require robust mechanical designs. Our composite screening decks are engineered to withstand continuous impact loads. The high elastic limit of our composite panels prevents localized stress cracks under high material bed depths, sustaining uptime in high-tonnage mining circuits.
Region: Southeast Asia, Middle East
Wet processing presents challenges with moisture-driven binding and chemical wear. Jinte's self-cleaning composite screens maintain dynamic flexibility, preventing fines from sticking to the screen apertures. Our wear-resistant polyurethane composites resist chemical degradation, extending screen lifetime in wet processes.
Region: North America, Northern China
Fine coal screening and desliming operations require precise particle separation under high water volumes. Our high-frequency composite vibrating screens operate at up to 6G, keeping apertures clear and delivering clean coal fines with minimal moisture retention.
Our operation is built on specialized technical expertise. Our staff of over 240 employees includes more than 45 engineers and technical designers focused on product development, dynamic simulation, and testing.
Regardless of your installation's location, our team is equipped to support your project from initial design through site integration. We provide custom engineering support, manufacturing equipment to fit existing structural foundations and matching existing footprint dimensions to minimize plant modification costs.








With installations active across global mining regions, Jinte maintains distribution agreements and field service networks to support material processing operations globally.
Addressing technical questions for procurement managers, structural engineers, and plant operators.
Our composite panels are reinforced with carbon fiber or high-tensile metal wire structures encapsulated within high-grade polyurethane elastomers. This design provides structural support to resist sagging and wear, offering up to 50% longer wear life than standard polyurethane panels under high-impact conditions, and 6 to 10 times the wear life of traditional woven steel screens.
Motion type is determined by the processing goal: linear motion screens are typically used for dewatering and fine sizing; circular motion systems are used for heavy-duty pre-screening of large materials; and elliptical motion (often double or triple-axis) is chosen for wet, sticky materials, as the variable-angle action helps prevent blinding and maintain separation efficiency.
We use FEA to simulate operational stresses and dynamic forces across the screen structure. By analyzing stress distribution and structural natural frequencies, we identify and reinforce potential fatigue points prior to production. This engineering step prevents resonance issues and structural cracking under continuous, high-G operating loads.
Yes, we routinely customize screening systems to match existing plant footprints, feed boxes, and under-pan dimensions. Our engineering team designs custom structural supports and layouts to minimize site modification requirements, allowing direct replacement of older machinery.
All machinery undergoes quality assurance checks before shipment, including material verification, weld testing, paint thickness inspections, and continuous running tests under load to verify exciter temperatures, vibration patterns, and noise levels. Export packaging is designed for secure ocean freight to ensure safe arrival.