Punches

Image Part Number Description / PDF Quantity Rfq
101

101

GEDORE Tools, Inc.

CENTRE PUNCH WITH TIP AND PROTEC

0

115

115

GEDORE Tools, Inc.

PIN PUNCH SET 8 PIECES

0

113

113

GEDORE Tools, Inc.

DRIFT PUNCH SET 6 PCS IN PLASTIC

0

119-12

119-12

GEDORE Tools, Inc.

PIN PUNCH 12 MM

0

135-14

135-14

GEDORE Tools, Inc.

SETTING PUNCH 315X30X14 MM

0

570007

570007

GEDORE Tools, Inc.

ARC PUNCH 7 MM

0

99 12-8

99 12-8

GEDORE Tools, Inc.

DRIFT PUNCH OCTAGONAL 120X12X8 M

0

119-14

119-14

GEDORE Tools, Inc.

PIN PUNCH 14 MM

0

135-11

135-11

GEDORE Tools, Inc.

SETTING PUNCH 250X25X11 MM

0

570029

570029

GEDORE Tools, Inc.

ARC PUNCH 29 MM

0

570026

570026

GEDORE Tools, Inc.

ARC PUNCH 26 MM

0

570022

570022

GEDORE Tools, Inc.

ARC PUNCH 22 MM

0

114-24

114-24

GEDORE Tools, Inc.

PIN PUNCH 2.4 MM

0

570015

570015

GEDORE Tools, Inc.

ARC PUNCH 15 MM

0

100-10

100-10

GEDORE Tools, Inc.

CENTRE PUNCH 120X10X4 MM

0

99 12-6

99 12-6

GEDORE Tools, Inc.

DRIFT PUNCH OCTAGONAL 120X12X6 M

0

1101-570500

1101-570500

GEDORE Tools, Inc.

SET OF ARC PUNCHES 2-22 MM IN I-

0

136-500

136-500

GEDORE Tools, Inc.

TAPER PUNCH 500X20X5 MM

0

570033

570033

GEDORE Tools, Inc.

ARC PUNCH 33 MM

0

119-175

119-175

GEDORE Tools, Inc.

PIN PUNCH 6 MM

0

Punches

1. Overview

ToolsPunches refer to a category of industrial equipment designed for material perforation, forming, or cutting through mechanical force. These tools utilize specialized punch and die sets to create precise holes, shapes, or structural modifications in various materials. As fundamental components in manufacturing and fabrication processes, they enable high-precision, repeatable operations critical to modern industrial production. Their importance spans across sectors requiring mass production capabilities, tight tolerances, and material efficiency optimization.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Mechanical PressesHigh-speed operation with fixed stroke length, electric motor-drivenAutomotive sheet metal forming
Hydraulic PressesVariable pressure control, deep drawing capabilitiesAerospace composite molding
Pneumatic PunchesLightweight, rapid cycle times, adjustable forceElectronics component assembly
Laser Punch CombinationsNon-contact precision cutting with hybrid mechanical supportMedical device manufacturing

3. Structural and Technical Composition

Typical construction includes: - Frame: Cast iron/steel structure for vibration damping - Punch Assembly: Hardened tool steel with carbide coatings - Die Set: CNC-machined counter-forming component - Drive System: Servo motors/hydraulic cylinders/pneumatic actuators - Control Unit: PLC-based interface with safety interlocks - Material Handling System: Automated feeders/sensors Advanced models integrate IoT sensors for real-time force monitoring and predictive maintenance.

4. Key Technical Specifications

ParameterImportance
Punching Force (kN)Determines material thickness capacity
Stroke Length (mm)Defines working range and material clearance
Positioning Accuracy ( m)Impacts production quality consistency
Cycle Rate (SPM)Directly affects production throughput
Energy Consumption (kW/ton)Operational cost efficiency indicator

5. Application Fields

Primary industries include: - Automotive: Body panel perforation, frame forming - Electronics: PCB component mounting holes - Aerospace: Titanium alloy structural components - Renewables: Solar panel mounting bracket fabrication - Medical: Surgical instrument precision shaping

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
AmadaHG Series Hydraulic PressAI-driven pressure optimization
TRUMPFTurbulaser Punch-Laser SystemCombined 3D cutting/forming
BystronicXpert Punch SeriesModular tooling system
Murata MachineryLASERValkyrie Multi-axisHybrid metal processing

7. Selection Recommendations

Key consideration factors: - Material properties (thickness, hardness, ductility) - Production volume requirements - Precision vs. speed trade-offs - Integration with existing automation systems - Maintenance accessibility and tooling costs For example, a 2000kN mechanical press suits high-volume automotive parts, while a 30kN pneumatic punch better serves electronics batch production.

8. Industry Trends Analysis

Current development directions: - Smart Manufacturing: AI-powered process optimization - Energy Efficiency: Hybrid servo-hydraulic systems reducing energy use by 40% - Multi-axis Flexibility: 6-degree-of-freedom robotic integration - Material Adaptation: Graphene-coated tooling extending die life - Remote Monitoring: Predictive maintenance via cloud analytics Market growth projected at 6.2% CAGR through 2030, driven by electric vehicle component demand.

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