CNC Gantry Type Machining Center

GM5-RL

Highly Stable Bed Structure

High Speed Spindle

Manual Scraping

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GM5-RL
  • Overview
  • Visuals & Video
  • Specifications &Options
  • Applications
    • Commodity name: GM5-RL

    <p> Highly Stable Bed Structure</p> <p> High Speed Spindle</p> <p> Manual Scraping</p>

    Visuals & Video

    Five-axis Gantry Machining Center with Swivel Head

    Excellent Five-Axis Machining Capability

     

    The five-axis gantry machining center can be used to process multiple faces with one-timeclamping, reducing the changeover time and repeated positioning of the workpiece,and improving the production efficiency

     The whole series of products adopt HT300 casting bed with high rigidity and stability. The bed can effectively absorb vibration generated during high-speed cutting or heavy-duty machining.Reinforcing ribs and casting wall thickness are increased inside the bed to ensure the best structure.High-speed spindle is equipped and small-diameter tools can be used for cutting to reduce electric discharge machining (EDM) area. The high-speed spindle, driven by a servo motor with precise speed control, offers a variable speed range of 6,000-24,000 rpm, and its radial runout is controlled within 0.003mm—this level of precision allows small-diameter tools (down to 0.5mm in diameter) to operate stably without chatter. 

    Specifications & Options

    Trip Company GM5-RL-1715 GM5-RL-2217 GM5-RL-3022 GM5-RL-4022 GM5-RL-4230
    X-axis                  mm 1700  2200  3000  4000  4200 
    Y-axis                  mm 1500  1800  2200  2200  3000 
    Z-axis                  mm 650  800  1000 1000 1000/1200
    A-axis angle range - ±110 ±110 ±110 ±110 ±110
    C-axis angle range - ±360 ±360 ±360 ±360 ±360
    Dstano betwcan  douhlo  oolumrs mm 1500  1700  2000  2000  2800 
    Workbench size
    Xdrectlan of warktanch  mm 1700  2200  3000  4000  4200 
    Ydlrootlon of workbonch mm 1300  1400  1800  1800  2400 
    Warkbanch load          kg 2000  4000  8000  10000  15000 
    Prineipal axis
    Spindle power               rpm

    10000/18000/20000/24000

    Spindle speod               Kw 20/24,30/40 20/24.30/40.54/65 20/24,30/40.54/65 20/24.30/40.54/65
    Tool hande type             / HSK-A63/HSK-A100
    Feed
    X-axis tast teed rate  mm/mm 20000  20000  20000  20000  15000 
    Y-axs fest feed rate  mm/mm 20000  20000  20000  20000  15000 
    Z-axis tastfeed rate  mm/mm 15000  15000  15000  15000  15000 
    Max speed ofA-axi8      rpm 60  60  60  60  60 
    Max.speed of C-axs      rpm 60  60  60  60  60 
    Preclslon JIS 6338
    Posltloning oocuracy mm ±0.015(whole coLuse)
    Repeated positloning mm ±0.005/300
    Other
    Tool magazne capacity       T 24  24  24  24  24 
    Power requirements         KVA 40  40  60-85 60-85 60-85
    Air pressure requremerts kg/cm² 5-8 5-8 5-8 58  58 
    Machine weightlepproximately) T 15  20  30  40  46 
    Machine tool appearance dimensions
    Machire to lergh (apprximatehy  mm 5500  6600  8600  11000  12000 
    Machine width (approximatey) mm 3400  4000  4700  5200  5500 
    Machine heighfapprocimateh) mm 5000  5300  5300  5300  5500 

    Applications 

    1. Aerospace Industry: Machining of Large Structural Components and Core Engine Parts

    The aerospace industry has extremely high requirements for material strength (e.g., titanium alloys, superalloys), machining precision (micron-level), and structural complexity of parts. The 5-axis gantry machining center is a core piece of equipment in this field:
    Typical Machined Parts: Aircraft fuselage frames (large thin-walled parts made of aluminum alloy/titanium alloy), wing main spars, engine casings (complex curved surfaces + multi-cavity structures), and aerospace rocket body connecting rings.

    Core Advantages: Through 5-axis linkage (3 linear axes + 2 rotary axes), "flip-side machining" of large parts can be completed in one go, avoiding precision errors caused by multiple clamping operations. At the same time, it can handle the high cutting loads of difficult-to-machine materials such as superalloys, ensuring the machined surface quality.

    2. Marine and Offshore Engineering Industry: Machining of Large Power Systems and Structural Components

    Shipbuilding involves a large number of oversized and heavyweight metal components, with strict requirements for sealing performance and structural strength. The 5-axis gantry machining center can solve the problem of "integral machining of large parts":
    Typical Machined Parts: Marine diesel engine cylinder blocks (requiring ultra-large bore diameters + coaxiality of multiple cylinder bores), propeller hubs (integrated machining of complex curved surfaces and flange faces), and offshore platform support frames (high-precision drilling and milling of thick-walled steel structures).

    Core Advantages: The gantry structure features a large span (covering a range of 3-10 meters or even larger) and high load-bearing capacity (capable of carrying workpieces weighing dozens of tons). It enables "one-stop machining" of large parts, reducing assembly errors caused by segmental splicing.

    3. New Energy Equipment Industry: Machining of Large Core Components for Wind Power/Photovoltaics

    The core components of new energy equipment (especially wind power equipment) are large in size and require high precision, which directly affects the operating efficiency and service life of the equipment. The 5-axis gantry machining center is a key production equipment:
    Typical Machined Parts: Wind power main shafts (slender shaft parts with a large length-to-diameter ratio, requiring guaranteed cylindricity and end face perpendicularity), wind power hubs (spatial angle precision machining of multiple blade mounting holes), and large connecting seats for photovoltaic tracking brackets (integrated machining of multi-hole systems and curved surfaces).
    Core Advantages: It can compensate for micro-deformations of workpieces caused by weight through 5-axis linkage, while ensuring the machining precision of large hole systems and curved surfaces. This meets the reliability requirement of "20+ years of trouble-free operation" for wind power equipment.

    4. Mold and Tooling Industry: Precision Machining of Large and Complex Molds/Tooling

    Large molds (e.g., automotive panel molds, home appliance shell molds) and tooling fixtures have complex structures and high surface quality requirements. The 5-axis gantry machining center can improve mold manufacturing efficiency and precision:
    Typical Machined Parts: Automotive body panel molds (integrated machining of large curved surfaces, drawbeads, and vent holes), large injection molds (machining of multi-cavities and complex parting surfaces), and aerospace tooling fixtures (high-precision milling of customized positioning structures).

    Core Advantages: Compared with traditional 3-axis machine tools, 5-axis linkage can reduce the number of mold clamping operations (even completing the entire process with one clamping), avoiding "positioning errors from multiple clamping". Meanwhile, longer tools can be used to machine deep cavities of molds, ensuring the surface roughness of cavity walls (e.g., Ra ≤ 0.8μm).

    5. Rail Transit Industry: Machining of Large Structural Components for High-Speed Rail/Metros

    The core components of rail transit equipment (high-speed rail, metros, heavy-haul railways) need to balance "high strength" and "lightweight". The 5-axis gantry machining center can meet their precision machining needs:
    Typical Machined Parts: Bogie frames of high-speed trains (high-precision milling of large thin-walled aluminum alloy parts, requiring deformation control), metro car body underframes (spatial angle machining of multiple crossbeams and connecting holes), and wheel hubs for heavy-haul railways (coaxiality machining of complex curved surfaces and shaft holes).

    Core Advantages: For lightweight materials such as aluminum alloy, high-speed milling (spindle speed: 10,000-20,000 rpm) can be used to improve machining efficiency. At the same time, 5-axis linkage can ensure the "hole position precision" of safety-critical components such as bogies (e.g., positioning hole tolerance ≤ ±0.02mm), guaranteeing the operational stability of trains.

  • Visuals & Video

    Five-axis Gantry Machining Center with Swivel Head

    Excellent Five-Axis Machining Capability

    The five-axis gantry machining center can be used to process multiple faces with one-timeclamping, reducing the changeover time and repeated positioning of the workpiece, and improving the production efficiency

     The whole series of products adopt HT300 casting bed with high rigidity and stability. The bed can effectively absorb vibration generated during high-speed cutting or heavy-duty machining.Reinforcing ribs and casting wall thickness are increased inside the bed to ensure the best structure.High-speed spindle is equipped and small-diameter tools can be used for cutting to reduce electric discharge machining (EDM) area. The high-speed spindle, driven by a servo motor with precise speed control, offers a variable speed range of 6,000-24,000 rpm, and its radial runout is controlled within 0.003mm—this level of precision allows small-diameter tools (down to 0.5mm in diameter) to operate stably without chatter. 

     

  • Specifications & Options

    Trip Company GM5-RL-1715 GM5-RL-2217 GM5-RL-3022 GM5-RL-4022 GM5-RL-4230
    X-axis                  mm 1700  2200  3000  4000  4200 
    Y-axis                  mm 1500  1800  2200  2200  3000 
    Z-axis                  mm 650  800  1000 1000 1000/1200
    A-axis angle range - ±110 ±110 ±110 ±110 ±110
    C-axis angle range - ±360 ±360 ±360 ±360 ±360
    Dstano betwcan  douhlo  oolumrs mm 1500  1700  2000  2000  2800 
    Workbench size
    Xdrectlan of warktanch  mm 1700  2200  3000  4000  4200 
    Ydlrootlon of workbonch mm 1300  1400  1800  1800  2400 
    Warkbanch load          kg 2000  4000  8000  10000  15000 
    Prineipal axis
    Spindle power               rpm

    10000/18000/20000/24000

    Spindle speod               Kw 20/24,30/40 20/24.30/40.54/65 20/24,30/40.54/65 20/24.30/40.54/65
    Tool hande type             / HSK-A63/HSK-A100
    Feed
    X-axis tast teed rate  mm/mm 20000  20000  20000  20000  15000 
    Y-axs fest feed rate  mm/mm 20000  20000  20000  20000  15000 
    Z-axis tastfeed rate  mm/mm 15000  15000  15000  15000  15000 
    Max speed ofA-axi8      rpm 60  60  60  60  60 
    Max.speed of C-axs      rpm 60  60  60  60  60 
    Preclslon JIS 6338
    Posltloning oocuracy mm ±0.015(whole coLuse)
    Repeated positloning mm ±0.005/300
    Other
    Tool magazne capacity       T 24  24  24  24  24 
    Power requirements         KVA 40  40  60-85 60-85 60-85
    Air pressure requremerts kg/cm² 5-8 5-8 5-8 58  58 
    Machine weightlepproximately) T 15  20  30  40  46 
    Machine tool appearance dimensions
    Machire to lergh (apprximatehy  mm 5500  6600  8600  11000  12000 
    Machine width (approximatey) mm 3400  4000  4700  5200  5500 
    Machine heighfapprocimateh) mm 5000  5300  5300  5300  5500 
  • Applications

    1. Aerospace Industry: Machining of Large Structural Components and Core Engine Parts

    The aerospace industry has extremely high requirements for material strength (e.g., titanium alloys, superalloys), machining precision (micron-level), and structural complexity of parts. The 5-axis gantry machining center is a core piece of equipment in this field:
    • Typical Machined Parts: Aircraft fuselage frames (large thin-walled parts made of aluminum alloy/titanium alloy), wing main spars, engine casings (complex curved surfaces + multi-cavity structures), and aerospace rocket body connecting rings.
    • Core Advantages: Through 5-axis linkage (3 linear axes + 2 rotary axes), "flip-side machining" of large parts can be completed in one go, avoiding precision errors caused by multiple clamping operations. At the same time, it can handle the high cutting loads of difficult-to-machine materials such as superalloys, ensuring the machined surface quality.

    2. Marine and Offshore Engineering Industry: Machining of Large Power Systems and Structural Components

    Shipbuilding involves a large number of oversized and heavyweight metal components, with strict requirements for sealing performance and structural strength. The 5-axis gantry machining center can solve the problem of "integral machining of large parts":
    • Typical Machined Parts: Marine diesel engine cylinder blocks (requiring ultra-large bore diameters + coaxiality of multiple cylinder bores), propeller hubs (integrated machining of complex curved surfaces and flange faces), and offshore platform support frames (high-precision drilling and milling of thick-walled steel structures).
    • Core Advantages: The gantry structure features a large span (covering a range of 3-10 meters or even larger) and high load-bearing capacity (capable of carrying workpieces weighing dozens of tons). It enables "one-stop machining" of large parts, reducing assembly errors caused by segmental splicing.

    3. New Energy Equipment Industry: Machining of Large Core Components for Wind Power/Photovoltaics

    The core components of new energy equipment (especially wind power equipment) are large in size and require high precision, which directly affects the operating efficiency and service life of the equipment. The 5-axis gantry machining center is a key production equipment:
    • Typical Machined Parts: Wind power main shafts (slender shaft parts with a large length-to-diameter ratio, requiring guaranteed cylindricity and end face perpendicularity), wind power hubs (spatial angle precision machining of multiple blade mounting holes), and large connecting seats for photovoltaic tracking brackets (integrated machining of multi-hole systems and curved surfaces).
    • Core Advantages: It can compensate for micro-deformations of workpieces caused by weight through 5-axis linkage, while ensuring the machining precision of large hole systems and curved surfaces. This meets the reliability requirement of "20+ years of trouble-free operation" for wind power equipment.

    4. Mold and Tooling Industry: Precision Machining of Large and Complex Molds/Tooling

    Large molds (e.g., automotive panel molds, home appliance shell molds) and tooling fixtures have complex structures and high surface quality requirements. The 5-axis gantry machining center can improve mold manufacturing efficiency and precision:
    • Typical Machined Parts: Automotive body panel molds (integrated machining of large curved surfaces, drawbeads, and vent holes), large injection molds (machining of multi-cavities and complex parting surfaces), and aerospace tooling fixtures (high-precision milling of customized positioning structures).
    • Core Advantages: Compared with traditional 3-axis machine tools, 5-axis linkage can reduce the number of mold clamping operations (even completing the entire process with one clamping), avoiding "positioning errors from multiple clamping". Meanwhile, longer tools can be used to machine deep cavities of molds, ensuring the surface roughness of cavity walls (e.g., Ra ≤ 0.8μm).

    5. Rail Transit Industry: Machining of Large Structural Components for High-Speed Rail/Metros

    The core components of rail transit equipment (high-speed rail, metros, heavy-haul railways) need to balance "high strength" and "lightweight". The 5-axis gantry machining center can meet their precision machining needs:
    • Typical Machined Parts: Bogie frames of high-speed trains (high-precision milling of large thin-walled aluminum alloy parts, requiring deformation control), metro car body underframes (spatial angle machining of multiple crossbeams and connecting holes), and wheel hubs for heavy-haul railways (coaxiality machining of complex curved surfaces and shaft holes).
    • Core Advantages: For lightweight materials such as aluminum alloy, high-speed milling (spindle speed: 10,000-20,000 rpm) can be used to improve machining efficiency. At the same time, 5-axis linkage can ensure the "hole position precision" of safety-critical components such as bogies (e.g., positioning hole tolerance ≤ ±0.02mm), guaranteeing the operational stability of trains.

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Inquiry

You can contact us in the
following ways!

Address: Room 407, Building 1, Yinergy Science and Technology Park, No.69 Weixin Road, Suzhou Industrial Park, Suzhou, China.

WhatsApp / WeChat:

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