Crimpers, Applicators, Presses - Accessories

Image Part Number Description / PDF Quantity Rfq
3177001000

3177001000

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TOOLS

0

323-9503-000

323-9503-000

VEAM

TOOLS

0

323-7034-000

323-7034-000

VEAM

TOOLS

0

980-0000-628

980-0000-628

VEAM

TOOLS

0

M22520-2-10

M22520-2-10

VEAM

TOOLS

0

M22520-2-08

M22520-2-08

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TOOLS

0

323-7046-000

323-7046-000

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TOOLS

0

995-0001-288

995-0001-288

VEAM

TOOLS

0

3171154002

3171154002

VEAM

TOOLS

0

11-7674C8T50

11-7674C8T50

VEAM

TOOLS

0

995-0002-269

995-0002-269

VEAM

TOOLS

0

121586-5069

121586-5069

VEAM

FOOT PEDAL FOR PNEUMATIC CRIMPER

0

3171054003

3171054003

VEAM

TOOLS

0

995-0001-849

995-0001-849

VEAM

TOOLS

0

1215865132

1215865132

VEAM

TOOLS

0

1181-92001

1181-92001

VEAM

SS LOCATOR SSI-CS10 & SS-CS10

0

995-0001-157

995-0001-157

VEAM

TOOLS

0

3171171001

3171171001

VEAM

TOOLS

0

323-7035-000

323-7035-000

VEAM

TOOLS

0

MSS-CS10

MSS-CS10

VEAM

CCT-SS-20 SS CRIMP TOOL MINI

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Crimpers, Applicators, Presses - Accessories

1. Overview

Crimpers, applicators, presses, and their accessories are precision mechanical systems designed to join materials through compression, deformation, or bonding. These tools are critical in manufacturing processes requiring high reliability of connections, particularly in electrical, automotive, aerospace, and industrial assembly applications. Modern advancements focus on automation, precision control, and material compatibility to meet evolving industry standards.

2. Major Types & Functional Classification

Type Functional Characteristics Application Examples
Manual Crimpers Hand-operated tools with adjustable force settings Prototyping, low-volume electrical terminal crimping
Pneumatic Applicators Air-pressure driven systems for high-speed operations Automotive wiring harness production
Hydraulic Presses Fluid-based force amplification for heavy-duty applications Aerospace component assembly
Servo-Driven Crimpers Computer-controlled motion with real-time feedback Medical device manufacturing

3. Structure & Components

Typical systems consist of: - Frame/Chassis: Aluminum or steel structural base - Actuation Mechanism: Hydraulic cylinders, pneumatic pistons, or electric servomotors - Tooling Interface: Quick-change die systems with precision alignment - Control System: PLC or CNC interface with pressure/position sensors - Die Sets: Customizable anvils and punches for specific material profiles

4. Key Technical Specifications

Parameter Importance
Crushing Force Range Determines maximum material thickness capacity
Positioning Accuracy 0.01mm typical for high-precision connections
Cycle Time Production throughput measurement (0.5-5s/cycle)
Die Compatibility Interchangeability across different tooling systems
Pressure Monitoring Real-time force feedback for quality control

5. Application Fields

Primary industries include: - Automotive manufacturing (wire harness assembly) - Aerospace (composite material bonding) - Electronics (connector terminal crimping) - Industrial machinery (hydraulic fitting installation) - Medical device production (precision micro-crimping)

6. Leading Manufacturers & Products

Manufacturer Representative Product
TE Connectivity Komax 455S automatic crimping machine
Sumitomo Heavy Industries HPF-2000 hydraulic press system
Schleuniger Inc. 9250E wire processing system
Amphenol Industrial Crimptite 2000 series applicators

7. Selection Recommendations

Key considerations: - Application-specific force requirements (calculate peak load needs) - Material compatibility (metal hardness, composite characteristics) - Production volume requirements (manual vs automated systems) - Precision tolerance needs ( 0.02mm for aerospace vs 0.1mm for automotive) - Tooling changeover frequency (quick-release mechanisms save time) - Integration capabilities with existing production lines

8. Industry Trends Analysis

Current developments focus on: - Smart system integration with IoT-enabled monitoring - Hybrid actuation systems combining hydraulic/pneumatic advantages - Advanced coatings for die wear reduction (DLC coatings show 300% lifespan improvement) - AI-driven quality control systems using real-time data analytics - Miniaturization for micro-crimping applications in electronics - Sustainability through energy-efficient servo systems (30-50% power reduction compared to traditional models)

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