3629 results found
    1. Extrusion – Forging

      Extrusion – Forging

      Extrusion forging is an ideal technology to save material and be able to obtain hollow forms not feasible by other forging processes. JG Automotive is a supplier and manufacturer of direct extrusion or reverse extrusion or also indirect, as adapted to the part. Extrusion is a process used to create objects with defined and fixed cross-section. The material is pushed or withdrawn through a die of a desired cross-section. The two main advantages of this process over manufactured processes are the ability to create very complex cross sections with materials that are brittle, because the material only encounters compression and shear forces. In addition the end pieces are formed with excellent surface finish. It can be direct or indirect extrusion. Direct extrusion, also known as front extrusion, is the most common extrusion process. This works by placing the bar in a strongly reinforced container. The bar is pushed through the die by the spindle. There is a reusable dummy block between the spindle and the bar to keep them separate. The major disadvantage of this process is the force required in the extrusion of the bar by the frictional force due to the need for the bar to travel through the container completely. That is why the greatest force required is at the beginning of the process and decreases as the bar is depleted. In indirect extrusion, also known as delayed extrusion, the bar and the container move together while the die is stationary. The die is held in place by a support which should be as long as the container. The maximum length of the extrusion is given by the strength of the column of the carrier. As the bar moves with the container, the friction is eliminated. Advantages: A 25 to 30% reduction in frictional force, allows the extrusion of long bars, there is a less tendency for the extrusion to crack or break because there is no heat formed by the friction, the coating of the container will last longer due to Less use.

    2. F105 CNC Milling Machine - SINUMERIK 808D ADVANCE F 105 808D ADVANCE

      F105 CNC Milling Machine - SINUMERIK 808D ADVANCE F 105 808D ADVANCE

      The compact solution for small-scale parts production, ideal for workshops, small and medium-sized businesses, or training centres. · Extremely robust machine. · Main spindle driven by servo motors. · Servo drives on all axes. · Cast iron bed for enhanced rigidity. · Tool magazine with a 12-tool loader. · Standard maximum spindle speed of 8,000 rpm. · All linear guides with stainless steel protection. · Automatic central lubrication system. · LED lighting inside the cabin. · Integrated cooling system with a 160-litre tank. · Automatic or manual tool change (pneumatic drive). · Large, solid work table with a high-precision finish. · Easy-to-access and clearly laid-out electrical control panel. · Quick access to the work table via sliding doors. · Includes SINUMERIK 808D or SINUMERIK 808D ADVANCE software package for PC (enables part simulation). · 2-year Siemens warranty.

    3. F190CR

      F190CR

      Las impresoras F123CR emplean los materiales composite ABS-CF10 y FDM® Nylon-CF10, ambos reforzados con fibra de carbono picada, en un 10 % en peso, para conseguir resistencia y rigidez. Con el material de soporte soluble F123CR se pueden realizar diseños complejos que no son posibles con el mecanizado convencional ni con otras impresoras 3D que no dispongan de esta prestación. Las cuatro resoluciones de capa ofrecen flexibilidad en cuanto a la calidad de las piezas y la velocidad de impresión. La densidad variable de la pieza le ofrece la libertad de fabricar piezas totalmente densas y sólidas o de ajustar el relleno con el fin de ahorrar peso y uso de material.

    4. Fabrics

      Fabrics

      Glass, carbon and aramid fibre fabrics are key materials in the manufacture of advanced composites, each with unique characteristics that make them ideal for different industrial applications. Glass fibre is known for its excellent cost-benefit ratio, offering good mechanical strength and durability at an affordable price. This material is widely used in sectors such as construction, automotive and marine, where its corrosion resistance and insulation capabilities are valued. In addition, glass fibre fabrics are easily integrated with various resins, which facilitates their use in processes such as injection moulding and lamination. On the other hand, carbon and aramid fabrics stand out for their advanced properties in terms of strength and light weight. Carbon fibre is prized in the aerospace, high-performance automotive and elite sports industries due to its exceptional strength-to-weight ratio, which enables the manufacture of lightweight and extremely strong structures. Meanwhile, aramid, known commercially as Kevlar®, offers superior impact and cut resistance, making it ideal for applications requiring ballistic protection, personal protective equipment and high-strength parts.

    5. FAGOR AUTOMATION

      FAGOR AUTOMATION

      San Andrés, 19 20500 Arrasate-Mondragón contact@fagorautomation.es www.fagorautomation.com T: 943 039 800 For 45 years immersed in the world of industrial production, we have experienced great technological changes and have become a global compB14:B27any thanks to innovation. Long-term partnerships with our customers have encouraged us to overcome great challenges and become a benchmark in the industry together with our customers. It excels by its capability to develop software and the versatility of its productive process to offer solutions tailored to the needs of their customers. Historically, we at FAGOR AUTOMATION have focused our efforts on the machine-tool sector where we are one of the world leaders. Besides, its wide technical and sales network spread out in more than 50 countries through its own branch offices and distributors.