ST-40 CNC Double-Head Band Sawing Machine
Improved, suitable for sawing of mold material. Working platform hydraulic feed....
Improved, suitable for sawing of mold material. Working platform hydraulic feed....
Special saw for cutting aluminum material of automotive engine. Lifting system a...
With man-machine interface and PLC programmable controller, the operation is foc...
Patent No.: 200720115051.4 200710071420.9 200720115052.9
This machine tool is a special machine tool with mechanical and electrical integ...
This machine tool is a special machine tool with mechanical and electrical integ...
Suitable for large ingot cutting. There are human-machine interface, PLC program...
Suitable for cutting large aluminum alloy plates. Saw blade tensioning: hydrauli...
Non-standard customized sawing machinery is a type of cutting equipment designed to meet special needs and is widely used in various industrial fields, including metal processing, construction, etc. These mechanical products are highly customized and can be designed and manufactured to meet the specific requirements of customers' unique production and processing needs.
1. High degree of customization:
One of the notable features of non-standard custom sawing machinery is its highly customized design. Manufacturers can customize machinery to customers' specific needs and specifications, including cutting size, cutting angle, cutting speed and other parameters. This flexibility allows this type of machinery to be adapted to a variety of different production scenarios.
2. Versatility:
This type of machinery is generally versatile and can be used to cut different types of materials. Whether it is metal, plastic or other composite materials, non-standard customized sawing machinery can be adjusted according to the characteristics of the material to achieve efficient and precise cutting operations.
3. High-precision cutting:
Because this type of machinery is custom designed, its cutting accuracy is usually very high. Manufacturers will adopt advanced tool technology and control systems according to customer requirements to ensure high-precision cutting under various working conditions and meet application fields that require higher cutting quality.
4. Automation and intelligence:
With the development of manufacturing industry, non-standard customized sawing machine machinery gradually introduces automation and intelligent technology. These include automatic feeding, automatic adjustment of cutting parameters, remote monitoring and other functions, which improve production efficiency and reduce the complexity of manual operations.
5. Various cutting methods:
This type of machinery usually supports a variety of cutting methods, including straight cutting, bevel cutting, curve cutting, etc. This flexibility makes it suitable for a variety of production needs, from simple sheet cutting to complex workpiece engraving.
Application areas:
1. Metal processing:
In the field of metal processing, this type of machinery can be used to cut various metal materials, such as steel, aluminum, etc. Since metal processing requires high cutting precision and efficiency, the highly customized advantages of non-standard customized sawing machinery are fully reflected in this field.
2. Construction industry:
The construction industry often requires cutting a variety of building materials, including stone, concrete, and more. The versatility and high-precision cutting characteristics of custom saws make them ideal for the construction industry.
3. Customized furniture manufacturing:
Custom furniture manufacturing often requires cutting materials of various special shapes and sizes, which is the strength of custom sawing machines. It can meet the personalized and customized requirements of furniture manufacturers.
Manufacturing process:
1. Engineering design:
The process of manufacturing non-standard custom sawing machinery begins with the engineering design phase. The manufacturer works closely with the customer to understand their specific needs and work environment and develop a preliminary design of the machinery.
2. Material selection:
After determining the design, the manufacturer selects high-quality materials to ensure the stability and durability of the machinery. This may involve material selection for machine frames, drivetrains, cutting tools and other components.
3. Manufacturing and Assembly:
The manufacturer will start the manufacturing and assembly of the machinery based on the design drawings. This includes processes such as machining various components, installing electrical and control systems, and commissioning machinery. At this stage, strict quality control and testing are essential.
4. Testing and debugging:
After the machinery is manufactured and assembled, it is tested and debugged to ensure its proper operation. This includes comprehensive inspection and verification of cutting accuracy, cutting speed, safety, and more.
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