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The relevant parameters of the equipment are as follows for reference:
Content | Parameter |
Name |
Truss Type 5 axis CNC Machine
|
Model | RB-H5-3323-Z10 |
X/Y/Z Axis Travel | 3300*2300*1000 |
C/B Axis Travel | ±540°/±130° |
Spindle power | 3~20KW (Customizable) |
Control system |
Taiwan*SYNTEC
|
Brand |
RBT
|
Voltage | 3-380V |
Machine rated power | 18.95KW~33.45KW |
Weight | 19500KG |
Dimension | L7100*W6615*H4896mm |
Machine Origin |
Guangdong / Fujian
|
(1) Dual-table system: The machine tool adopts an innovative dual-table design to achieve an uninterrupted work flow. One table is focused on the machining operation while the other is preparing for the next machining task, which significantly improves work efficiency. This design also ensures the safety and convenience of the loading and unloading process, and realizes the automated interaction between the machining and loading and unloading areas.
(2)Structural composition: It includes dual-drive X-axis, Y-axis, Z-axis, C-axis, B-axis, spindle, rotatable worktable (not involved in five-axis linkage processing, automatically moves out of the processing area after processing is completed) and dust-proof and soundproof top cover.
(3)High-precision five-axis control: The equipment is able to perform complex motion trajectories along five axes to ensure the accuracy and consistency of machining. The new generation of five-axis CNC system combines power, speed and precision, and integrates multiple functions such as dust collection and RTCP, so that even difficult-to-machine materials can be processed efficiently and accurately in a short time.
pabilities.
(4) Automated tool management system: Equipped with a tool library that can store up to 8 types of tools and an automatic tool change system, it reduces machine downtime and tool change time, and ensures smooth switching between different tools during processing.
(5) Structural stability: The machine tool adopts a heavy-duty structural design to ensure durability and stability, and can meet the strict requirements of heavy industry even under long-term continuous processing.
(6) High safety and cleanliness: The machine tool is equipped with a protective cover and an advanced dust collection system, which not only keeps the working environment clean and safe, but also prevents debris from entering the machine and affecting the processing accuracy.
(7)Powerful spindle performance: Equipped with a high-torque spindle, it can be customized according to specific needs to achieve the best cutting effect on various materials. It adopts the Italian Hiteco brand double-swing head spindle, which supports 360° rotation and provides fast and precise machining ca
(8) 8-station tool library: It is designed with 8 tool positions and can automatically change up to 8 different specifications of tools to meet diverse processing needs.
(9) Customized dust removal solution: Provide a comprehensive dust removal solution based on the specific layout of the customer's factory. The machine tool has a reserved dust collection interface to facilitate the installation of dust collection equipment.
- Automotive Manufacturing Applications -
a. Accurate Machining: The production of intricate and precise automotive components, including engine parts, body panels, suspension elements, and interior fittings, as well as decorative items both inside and outside the vehicle, such as battery covers made from composite materials.
b. Prototype Creation: The swift fabrication of automotive part prototypes for testing and design validation.
c. Mold Fabrication: The construction of molds for the large-scale production of car components.
d. Lightweight Materials: The utilization of materials like carbon fiber to reduce the weight and enhance the strength of automotive parts.
e. Tailored Production: The capability to easily modify production settings to manufacture bespoke or personalized automotive components.
- Aerospace Industry Applications -
a. Fine Part Machining: The crafting of intricate mechanical parts for aircraft and helicopters, such as engine components.
b. Advanced Material Machining: The processing of high-strength materials frequently utilized in the aviation sector, including titanium alloys and composites.
c. Mold and Prototype Development: The production of molds and prototypes necessary for the creation of aviation-grade components.
d. Compliance with Standards: Ensuring adherence to the stringent safety and quality standards required by the aerospace industry.
e. Tooling and Jig Fabrication: The manufacturing of tools and fixtures employed in aircraft assembly procedures.
f. Rapid Prototyping: Accelerating the prototyping and testing phases for innovative aircraft designs.
- Mold Making Applications -
Catering to the mold-making requirements across various sectors, including rail transportation, sports equipment, medical aesthetics, household appliances, crafts, and sanitary ware
- Composite Materials: Encompassing a range of materials such as carbon fiber (processed through PCM, RTM, SMC, LFT, and other methods), glass fiber, carbon/carbon composites, glass fiber reinforced plastics, aramid fiber honeycomb structures, aluminum honeycomb, honeycomb sandwich panels, polystyrene foam, EPS, wood, medium-density fiberboard (MDF), gypsum, and various resins.
- Thermoplastic Plastics: This category includes a variety of thermoforming plastics such as ABS, PVC, polycarbonate (PC), polypropylene (PP), polystyrene (PS), polyethylene (PE), polyethylene terephthalate (PET), high-density polyethylene (HDPE), polyethylene glycol terephthalate (PETG), acrylic, and other thermoplastic materials.
- Malleable Metals: Comprising metals like aluminum, copper, zinc, and their respective mold materials
1.Plastic film packaging and put in plywood wooden cases or according to customer's requirements.
2.Shipping : Container transport.
The production plant covers an area of around 26,660 square meters and employs over 100 staff members.
Corner of the workshop: