기술 변화 및 산업 시스템, 우리는 다음과 같이 헌신합니다.
소중한 고객에게 최고의 경제적인 솔루션을 제공합니다.
Key Features and Comprehensive Advantages of the Two-Wave/Three-Wave High-Speed Guardrail Integration Machine
다양한 유형의 냉간 압연 성형기. 우리는 2006 년부터 롤 성형 기계의 설계 및 제조에 종사하는 오랜 역사를 가진 공장입니다. 우리가 생산할 수있는 기계에는 지붕 타일 제조 기계, cz 도리 제조 기계, 경강 용골 제조 기계, 금속 엠보싱 기계, 도어 시스템 성형 기계, 천장 시스템 성형 기계, 고주파 파이프 용접기, 슬리 팅 라인, 절단 길이 라인, 선반 시스템 성형 기계, 바닥 데크 성형 기계, 컬러 석재 타일 생산 라인, 핫 라미네이팅 필름 기계 등이 있습니다.
The Two-Wave/Three-Wave Guardrail Integrated Machine is a single-production-line system capable of manufacturing both two-wave W-shaped guardrails and three-wave reinforced guardrails through integrated cold bending processes. It combines coil-uncoiling, leveling, servo punching, continuous cold bending, and precision cutting into a unified unit, eliminating the need for separate purchases of two standalone machines and establishing it as the mainstream high-end equipment in guardrail manufacturing plants.
Key Features of the Core Equipment
One machine with dual profiles for rapid production switching
The production line is capable of manufacturing two-wave standard guardrails and three-wave reinforced crash-resistant guardrails, meeting the two primary application requirements for highway arterial roads, bridges, ramps, and high-risk mountain sections.
There are two main structural types:
1)Simple roll replacement configuration: Replace the final forming roll and cutting die; the process takes 30–60 minutes.
2)Modular, disassembly-free design: Gear ratio adjustment utilizes a switching waveform without requiring complete roller removal, significantly improving configuration change efficiency.
The plate is suitable for thicknesses ranging from 2.0 to 4.0 mm, compatible with Q235 and Q345 galvanized steel strips, and meets the production standards specified in National Standard JT/T281.
Fully automated, end-to-end online process with uninterrupted operations.
A complete closed-loop production line eliminating intermediate handling: hydraulic unwinding → multi-roll leveling → servo punching (connection holes + reinforcement holes) → multiple progressive cold bending processes → shearing → final product discharge. All operations are synchronized, with punching, forming, and shearing performed online in a single step, ensuring no deformation occurs during secondary handling of semi-finished products.
High-precision molding with a high product compliance rate
- Encoder/laser gauge ensures total plate length error control within ±1–2 mm, with symmetrical and uniform wave curvature.
- The rollers are made of GCr15 bearing steel and undergo full quenching, offering excellent wear resistance and compression strength; they maintain their wave shape without deformation or edge collapse during long-term operation.
- The servo punching ensures precise hole spacing with no burrs on bolt holes or reinforcement holes, fully meeting on-site installation requirements without requiring secondary grinding.
PLC intelligent control system with simple operation
- A touch-screen human-machine interface with built-in two-wave and three-wave production formulas, allowing one-click parameter retrieval.
- Full-line variable frequency speed control with adjustable production speeds ranging from 6 to 15 m/min.
- Equipped with multiple safety protections including overload, material shortage, and emergency stop, with automatic alarm and shutdown upon malfunction.
- The entire production line requires only 2–3 operators, resulting in extremely low labor costs.
Heavy-duty rigid structure, durable and easy to maintain
The entire unit features a welded frame constructed from thickened square tubes, with high-speed forming of thick plates ensuring stable operation without body vibration.
Centralized lubrication for transmission gears and bearings; modular workstation design; separate assembly/disassembly of rolls and molds.
Standardized design for vulnerable components, simplified daily maintenance, and reduced downtime required for repairs.

Comparison of the core advantages of two independent standalone systems
The investment cost has been significantly reduced.
There is no need to separately procure two sets of two-wave or three-wave machines, resulting in a 30%–45% reduction in total equipment procurement costs. The accompanying hydraulic stations, electrical control systems, and feeding mechanisms require only one set each, eliminating redundant hardware investments and shortening the payback period for small and medium-sized manufacturing plants.
The factory building occupies less than half of the original area.
Two separate units require two independent production lines, whereas a single integrated unit can accommodate both products on one line, significantly reducing workshop space requirements and making it ideal for factories with limited space.
Lower energy consumption and lower operation and maintenance costs
With only one main motor and hydraulic system, electricity costs are reduced by approximately 40% compared to using two separate units for the same production output.
Rollers, shear blades, and punching dies share a common base frame, resulting in half the cost for spare parts procurement and inventory management.
With just one set of equipment requiring regular maintenance, the consumption of lubricants and wear parts is reduced by half.
Order adaptation is flexible, with enhanced order processing capability
High-speed projects typically require large quantities of two-wave guardrails with only limited quantities of three-wave variants. The integrated production system enables flexible scheduling: it mass-produces two-wave panels during daytime operations and switches intermittently to manufacturing bridge-grade three-wave reinforced plates, eliminating the need for dedicated idle production lines. This system handles both large-scale and small orders, significantly enhancing the factory’s competitiveness in order acquisition.
Simplified manual management and flexible production capacity allocation
Only one set of operators is required to oversee the entire production line, eliminating the need for two separate teams. During peak seasons, production can be conducted in two shifts; when urgent engineering demands require three shifts, rapid model switching is possible, thereby avoiding human resource waste caused by one production line being idle while another operates at full capacity.
More convenient delivery and after-sales service
The entire equipment set is uniformly installed and commissioned, with the manufacturer completing the turnkey project in one go. Subsequent after-sales services only address issues specific to a single unit, eliminating the need for separate maintenance of two units or troubleshooting of two control systems.
Practical advantages in production and engineering applications
Consistent product quality: All sets of formed rolls adhere to the same benchmark specifications, with unified standards for two-wave and three-wave guardrail profiles, resulting in a high pass rate during project acceptance inspections.
Versatile design for diverse applications: suitable for all types of wave guardrails required in conventional highways, mountainous steep slopes, bridge crash zones, and municipal expressways.
Continuous and stable production capacity: No segmented transfer process, reducing steel plate impacts and galvanizing layer scratches while minimizing scrap loss.
High scalability: Automatic palletizing, waste collection, and online coating modules can be added as needed, making it suitable for large-scale automated workshops.
Target Customer Group
Small and medium-sized guardrail processing plant (with limited budget and space, capable of handling orders for both types of guardrails);
Road and bridge engineering processing facility (the project requires both two-wave and three-wave guardrails, with flexible production scheduling as needed);
Export-oriented manufacturers of foreign trade guardrails (meeting both domestic and international road standard requirements for double-wave and triple-wave guardrails; a single unit accommodates multiple export specifications).
Common Issues and Solutions for High-Speed Highway Guardrail Equipment
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2.기술자 설계: 도면 프로파일 및 3D 기계 도면 만들기
3.구성 및 프로덕션 결정
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6.기술 가이드
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