Product Description
With a aim to cater to the wide needs of our clients, we are affianced in manufacturing, exporting and supplying Mechanical Under Crank Shearing Machine. It is manufactured at our hi-tech manufacturing unit using high quality components under the supervision of our skilled professionals. To meet the varied needs of our clients, the offered machine is available in various technical specifications as per the diverse needs of the clients. This Mechanical Under Crank Shearing Machine is available at economical prices.
Features:
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Smooth operation
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Robustness
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Low maintenance
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High strength
Technical Specification of Shearing Machine
Technical Data
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K-1
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K-2 |
K-3 |
K-4 |
K-5 |
Shearing Length (mm)
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1500
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2000
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2500
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3000
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4000
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Shearing Capacity (mm)
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4
|
4
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4
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4
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4
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Depth of gap in frame (mm)
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150
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150
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150
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150
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150
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Max. back gauge adjustment (mm)
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500
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600
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600
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600
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600
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Size of Blades
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1550x65x16
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2050x65x16
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1270x75x18
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1020x75x18
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1350x75x18
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Length of cut in one Stroke (mm)
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1500
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2000
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2500
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3000
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4000
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No. of Strokes per minute
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60
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55
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50
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45
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40
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Power Required (HP/1440 x rpm)
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5
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7.5
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10
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12.5
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15
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Floor Area L x W x H (mm)
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2575x1200x1450
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3000x1375x1650
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3625x1375x1650
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4150x1375x1650
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5200x1500x1650
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High-Performance Shearing CapabilityEngineered for efficient and precise sheet metal cutting, the Mechanical Under Crank Shearing Machine handles mild steel sheets up to 6mm thick and 2500mm wide. Its robust design and heavy construction minimize vibration, delivering reliable and accurate results for industrial applications.
Durable Build and Blade QualityConstructed with a solid mild steel body and equipped with high carbon, high chromium steel blades, this machine provides exceptional durability and resistance to wear. Designed for prolonged service life, it supports demanding continuous use in manufacturing environments.
User-Friendly Manual OperationRelying on a straightforward manual or mechanical lever system, this machine is easy to operate and maintain. It requires no computerized controls, making it suitable for workshops without advanced digital infrastructure and ensuring less downtime and easier troubleshooting.
FAQs of Mechanical Under Crank Shearing Machine:
Q: How does the Mechanical Under Crank Shearing Machine operate?
A: This shearing machine uses a mechanical lever or manual system to control the cutting blade. Operators manually adjust and trigger the cutting action, providing precise control over the cutting process without the need for electronics or computerized systems.
Q: What range of materials and thicknesses can the machine cut?
A: The machine is specifically designed for mild steel sheets, handling cutting thicknesses from 3mm up to 6mm, depending on the selected model. It can cut sheet widths up to 2500 mm, providing versatility for various industrial needs.
Q: When is a mechanical under crank shearing machine preferred over CNC models?
A: This machine is best suited for environments where robust, reliable manual operation is valued over computerized automation. If your facility does not require complex cutting patterns but prioritizes straightforward, high-volume sheet metal cutting, this is an ideal choice.
Q: Where is the Mechanical Under Crank Shearing Machine manufactured and supplied from?
A: The machine is designed, produced, and dispatched by experienced manufacturers, exporters, and suppliers based in India, ensuring quality and availability for domestic and international customers.
Q: What maintenance does this shearing machine require?
A: Regular maintenance mainly involves lubrication of moving parts, periodic alignment checks, and routine blade sharpening or replacement, thanks to the machines simple mechanical construction.
Q: How does the manual control system benefit users?
A: The manual or lever system offers straightforward operation, reduces the likelihood of electronic failures, simplifies troubleshooting, and lowers overall maintenance needsmaking the machine user-friendly and cost-effective for workshops.
Q: What safety features are included in the design?
A: The machine is built with heavy-duty components to minimize vibration and ensure stability. Safety guards and mechanical stops are typically incorporated to protect operators during use.