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We specialize in the R&D and production of high-end intelligent machine tools, drilling and tapping machines, and vertical machining centers. All product components are sourced from well-known domestic and international brands.

Preface: Using precision equipment to meet diverse high-end processing needs

Hunan Dike leverages the core technological advantages of TL series drilling machines (TL640/TL740/TL800) and VL series vertical machining centers (VL855/VL1165) to create an integrated solution of "equipment+process+service" for five high-end machining scenarios: complex surfaces, high-temperature alloys, aerospace products, molds, and automotive parts. Whether it is the processing of complex curved shells in the 3C electronics field or the manufacturing of high-temperature alloy components in the aerospace field, they can meet customer production needs with high precision, high efficiency, and high stability, helping global customers break through processing bottlenecks and enhance core competitiveness.

Aerospace

Aerospace product manufacturing encompasses components such as structural parts (e.g., aircraft fuselage frames, satellite supports) and precision parts (e.g., engine valve cores, navigation instrument housings). The core requirements include: extremely high machining accuracy (with errors no greater than 0.003 mm), robust equipment operational stability (capable of continuous operation for 72 hours without failure), excellent part traceability, and compliance with international standards such as AS9100 (the aerospace quality management system).
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Car

Automotive parts processing encompasses components such as structural parts (e.g., engine cylinder blocks, chassis brackets), transmission components (e.g., gearbox gears), and interior components (e.g., dashboard brackets). The core requirements are: high batch-processing efficiency (single-shift capacity ≥ 500 units), tight dimensional consistency (tolerance ≤ 0.01 mm), low equipment failure rate (overall equipment effectiveness OEE ≥ 90%), and the ability to accommodate flexible production needs for "multiple varieties in small batches."
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Mold

Mold manufacturing covers areas such as plastic molds (e.g., housings for home appliances), stamping dies (e.g., automotive sheet-metal molds), and die-casting molds (e.g., middle frames for mobile phones). The core requirements are: high precision of mold cavities (tolerance ≤ 0.005 mm), excellent surface finish (Ra ≤ 0.4 μm), and high processing efficiency (shortening the mold delivery cycle). Additionally, it is crucial to avoid “mold trial failures” caused by machining errors.
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Complex Surface Machining

Complex surface machining is widely used in fields such as 3C electronics (e.g., curved surfaces of mobile phone frames and smartwatch cases), medical devices (e.g., curved surfaces of artificial joints), and automotive interiors (e.g., curved structures of instrument panels). The core requirements include: high precision in surface contour (error ≤ 0.005 mm), excellent surface finish (Ra ≤ 0.8 μm), smooth transitions between multiple curved surfaces, and avoidance of “overcutting” and “undercutting” during the machining process.
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High-temperature alloy machining

High-temperature alloys (such as Inconel 718 and GH4169) possess the following characteristics: "high temperature resistance (with long-term operating temperatures ranging from 600 to 1200℃), high strength, and high hardness (HRC ≥ 35)." They are widely used in fields such as aerospace (e.g., engine turbine blades) and energy equipment (e.g., gas turbine combustion chambers). The core processing requirements include: strong cutting forces (requiring the ability to withstand cutting resistances of ≥500 N), low tool wear rates, minimal part deformation after machining, and avoidance of "tool adhesion" caused by high temperatures.
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Summary: Empowering global high-end manufacturing with scenario based solutions

Hunan Dike TL series drilling and tapping machines and VL series vertical machining centers, with their core advantages of "high precision, high efficiency, and high stability", provide customized, implementable, and high-value solutions for global customers in five major processing scenarios: complex surfaces, high-temperature alloys, aerospace products, molds, and automotive parts. In the future, we will continue to deeply cultivate the field of intelligent equipment, iterate technology and products based on customer needs, help more industry customers break through processing bottlenecks, achieve production goals of "cost reduction, quality improvement, and efficiency enhancement", and become a core equipment partner in the global high-end manufacturing field.