Economy Torsion Bar Bending Machine 2-3 Axis

Traditional ARC Welding

Economy Torsion Bar Bending Machine 2-3 Axis

Traditional ARC Welding

CAMT la Plegadora Más Económica y Sencilla

La Solución de Plegado Más Barata con Precios Competitivos y Calidad Preferencial

La Plegadora de Barra de Torsión se destaca como una solución altamente rentable y fácil de usar, diseñada para satisfacer las demandas de diversas aplicaciones de plegado manteniendo bajos los costos operativos. Su construcción de bastidor de alta resistencia garantiza una durabilidad y estabilidad superiores, incluso bajo cargas de trabajo continuas y de alto volumen, lo que la convierte en una opción confiable para talleres de todos los tamaños. Diseñada pensando en la simplicidad, la máquina cuenta con un sistema de control intuitivo que permite a los operadores, independientemente de su nivel de experiencia, lograr pliegues precisos con facilidad y un tiempo de configuración mínimo. En comparación con sus pares de la industria, esta máquina ofrece un valor excepcional, brindando resultados consistentes y de alta calidad a una fracción del costo de sistemas más complejos. Su robusto mecanismo de barra de torsión garantiza un rendimiento confiable en una amplia gama de materiales y espesores, lo que la hace lo suficientemente versátil para la mayoría de las tareas de plegado estándar, desde la fabricación de chapa hasta componentes estructurales. Con bajos requisitos de mantenimiento y un diseño compacto, esta plegadora es una opción ideal y económica para empresas que buscan eficiencia y confiabilidad.

CAMT la Plegadora Más Económica y Sencilla

40X40

Economy Torsion Bar Bending Machine 2-3 Axis

50X50

50X50

Preparada para la Industria 4.0

Nuevo Diseño

Altas prestaciones

Servo Híbrido Verde

Respetuoso con el Medio Ambiente

Funcionamiento Silencioso

High toughness,High wear resistance

FEA & Stress Analysis of Press Brake

FEA accurately predicts stress distribution patterns, deformation characteristics, and load-bearing capacities under various operating conditions. This advanced analytical approach enables engineers to identify and reinforce potential weak points in the frame, ram, and bed assembly while optimizing material usage through topology optimization techniques. The analysis specifically targets critical performance factors including ram deflection compensation accuracy, structural vibration damping, and fatigue resistance under cyclic loading conditions. Through iterative simulation processes, FEA facilitates the development of press brakes with enhanced rigidity-to-weight ratios, improved energy efficiency, and prolonged service life.

CAMT FEA plays a pivotal role by optimizing structures through stress distribution analysis to identify and reinforce high-stress areas, enhancing strength while minimizing material waste; verifying performance by predicting deformation under extreme loads (e.g., 600 tons) to ensure precision and stability for Y1/Y2 synchronization; assessing safety by evaluating stress concentration to mitigate fatigue or fracture risks for long-term reliability; and conducting dynamic analysis to simulate transient loads and vibrations in complex scenarios like tandem bending or high-speed operations, optimizing servo motor response and overall machine stability.

Popular NC Control System Press Brake Machine

EASYCAT TP10S CONTROL SYSTEM

Featuring a 10-inch true-color touchscreen for intuitive operation. It offers powerful programming capabilities with menu-driven interfaces, supporting angle editing, intelligent rear positioning, and automatic calculation of complex bending sequences. The system can store up to 220 programs, each with 24 bending steps, ensuring flexibility and efficiency. With high-precision control of the slider (Y-axis) and back gauge (X-axis), it guarantees stability and accuracy during processing. Additionally, TP10S supports single-machine operation and dual-machine linkage, enhancing machine utilization. Its strong compatibility, comprehensive fault diagnostics, and user-friendly maintenance features make it an ideal choice for high-precision, high-efficiency bending applications, significantly improving productivity and product quality.

ESTUN Full Series NC Controller Widely Choice

Traditional Digital Screen E21 System

Main Motor & Oil Pump

Siemens Powerful Main Motor & USA HYTEK Oil Pump

Hydraulic System of Hydraulic Press Brake

TAIWAN UOSHEN-Stability & Good Performance Pressure Valve

Reliable and stable hydraulic performance for consistent bending operations, cost-effectiveness for a balance of quality and affordability, and precise pressure control for enhanced processing accuracy. Their durable design ensures long-term reliability with low maintenance needs, while strong regional support in Asia provides easy access to spare parts and services. These benefits make Youshen oil pumps a practical and efficient choice, improving the performance and economic value of torsion bar bending machines for standard sheet metal processing.
 

Torsion Shaft Structure

Ensuring consistent motion at both ends of the slider during the bending process. The balance shaft transmits power to both sides of the slider through mechanical connections (such as a torsion bar or linkage), maintaining its horizontal movement and preventing tilting or deviation due to uneven forces, thus ensuring the bending accuracy

High-Speed Performance

Taiwan Double Linear Guide & Ball Screw

Precision and stability of the BackGauge movement. Dual linear guide rails provide high-rigidity linear guidance for the slider, ensuring smooth and deviation-free motion during vertical movement. Ball screws convert the motor’s rotational motion into precise linear motion, driving the slider for accurate positioning and movement. Together, they ensure high-precision motion and repeatable positioning accuracy during the bending process.

Special tools mode

Precise Hydraulic Press Brake Oil Cylinder & Sensor

Precision and control of the bending process. High-precision hydraulic cylinders provide stable and accurate hydraulic driving force to move the slider, ensuring uniform pressure distribution for high-quality workpiece forming. Inductive switches detect the slider’s position and motion status in real time, triggering the control system for precise stroke control and synchronization adjustments to achieve high-accuracy bending operations.

Special tools mode

Electric Motorized Crowning of Press Brake Machine

Involves a system of wedges, springs, or adjustable mechanical components installed in the worktable or lower die area. When the bending force is applied, the slider and worktable experience elastic deformation, causing slight bending or sagging, especially at the center. The compensation system counteracts this by pre-adjusting or dynamically adjusting the worktable’s shape (e.g., creating a slight upward curve). This is achieved through a series of movable wedges or supports that are manually or automatically adjusted based on the material thickness, length, and bending force. By compensating for the deflection, the system ensures that the gap between the upper and lower dies remains consistent, resulting in uniform bending angles along the workpiece.

Electric System for Hydraulic Press Brake

France Schneider Electrics & Servo Drive

Schneider Electric components in machines offers significant advantages, enhancing overall performance and reliability. Schneider’s stable and high-quality electrical components, such as PLCs and contactors, ensure low failure rates and consistent operation. Their advanced control systems enable precise signal processing and motion control, improving bending accuracy. Energy-efficient designs reduce power consumption, while strong compatibility supports automation upgrades. Additionally, Schneider’s global after-sales network ensures quick maintenance, and compliance with international safety standards enhances operational safety

Customized Press Brake Tooling

Customized to meet the specific workpiece requirements of individual clients, ensuring precise and efficient bending. Made from high-quality 42CrMo material, the molds undergo forging and heat treatment to achieve a hardness of 47–49 HRC, guaranteeing durability and wear resistance. Additionally, segmented concentric molds enhance versatility, allowing for flexible adaptation to various bending tasks, improving accuracy, and meeting diverse production needs effectively.

Special tools mode

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