Crimpers, Applicators, Presses

Image Part Number Description / PDF Quantity Rfq
121586-5253

121586-5253

VEAM

HP400EL-ITT

0

193800-0029

193800-0029

VEAM

TRI MINI APPLICATOR 14-16 SIG

0

CHT-MDSM

CHT-MDSM

VEAM

CHT MDSM 26-28 O CRIMP TOOL

0

CHT-75OHM

CHT-75OHM

VEAM

112108-0017 HAND CRIMP TOOL 75

0

995-0001-737

995-0001-737

VEAM

M22520/1-04

0

D115433-3

D115433-3

VEAM

DSUB CAN FERRULE TOOL

0

995-0001-734

995-0001-734

VEAM

M22520/2-09

0

192900-0175

192900-0175

VEAM

TRI TOOL SIG CONT 14-18 AWG

0

995-0001-244

995-0001-244

VEAM

TH25

0

070139-0000

070139-0000

VEAM

ER CCT-C8

0

995-0001-733

995-0001-733

VEAM

M22520/2-07

0

274-7634-000

274-7634-000

VEAM

PL CRIMP TOOL - C130 WITH CASE

0

274-8650-114

274-8650-114

VEAM

MECAL-CRIMPAMB-DRAHT

0

121586-0195

121586-0195

VEAM

TOOL HAND CRIMPER 12-14AWG SIDE

0

995-0001-912

995-0001-912

VEAM

M22520/2-03

0

070345-0003

070345-0003

VEAM

F070345-3 JEWEL PRESS ASY

0

995-0001-684

995-0001-684

VEAM

M22520/3-01

0

995-0001-584

995-0001-584

VEAM

TOOL HAND CRIMPER COAX SIDE

0

995-0001-768

995-0001-768

VEAM

TOOLS

0

274-8650-115

274-8650-115

VEAM

MECAL-CRIMPAMB-ISOLA

0

Crimpers, Applicators, Presses

1. Overview

Crimpers, applicators, and presses are precision mechanical tools used to join components through compression, deformation, or forming processes. Crimpers create permanent electrical or mechanical connections by compressing materials (e.g., wire terminals). Applicators install fasteners, clips, or components onto substrates, while presses apply controlled force for shaping, assembling, or testing materials. These tools are critical in industries requiring high reliability, such as automotive, aerospace, and electronics manufacturing.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Manual CrimpersHand-operated, low-force, portableField repairs, prototyping
Electric CrimpersMotor-driven, programmable force controlHigh-volume wire harness production
Pneumatic ApplicatorsAir-powered, high-speed fastener installationAutomotive trim assembly
Hydraulic PressesHigh-force fluid pressure actuationMetal forming, composite molding
Automatic Press SystemsPLC-controlled, integrated sensorsAutomated terminal crimping lines

3. Structure and Components

Typical configurations include: - Crimpers: Die set (anvil/die cavity), handle/actuator, ratchet mechanism, force transmission linkage. - Applicators: Magazine feed system, pneumatic/hydraulic cylinder, applicator nose, spring-loaded retention arms. - Presses: Frame/base, hydraulic/pneumatic cylinder, bolster plate, programmable control panel, safety guarding. Advanced models integrate IoT-enabled sensors for real-time force/displacement monitoring.

4. Key Technical Specifications

ParameterDescriptionImportance
Crimping Force (kN)Maximum compressive force capacityDetermines joint integrity and material compatibility
Stroke Length (mm)Distance of ram/die movementAffects application versatility and material thickness range
Repeatability ( m)Positioning accuracy consistencyEnsures quality in high-precision applications
Cycle Rate (pcs/hr)Production speed metricDirectly impacts manufacturing throughput
Force Control Resolution (%)Adjustable force precisionOptimizes material-specific process windows

5. Application Fields

  • Automotive: Wire harness assembly, battery terminal crimping
  • Electronics: Connector insertion, SMT component forming
  • Aerospace: Composite panel riveting, fuel line fittings
  • Energy: Solar panel busbar welding, battery cell stacking
  • Medical: Catheter tip forming, surgical staple application

6. Leading Manufacturers and Representative Products

ManufacturerProduct ExampleKey Features
TE ConnectivityMicroPress+ Crimping SystemSub- m force control, IoT connectivity
Schleuniger Inc.Combi 7000 SeriesMulti-axis servo control, automatic tool changing
Amada Miyachi EuropeHACO FPH-1500 PressHydraulic servo press with 150 kN force capacity
Delphi TechnologiesAutomotive Terminal Applicator 4.0AI-driven process optimization, predictive maintenance

7. Selection Recommendations

Key selection criteria: - Application-specific force/stroke requirements - Production volume vs. tooling changeover frequency - Automation integration capabilities (PLC, robotics) - Material compatibility (e.g., copper vs. aluminum crimping) - Calibration/maintenance cost considerations - Safety features (e.g., dual-hand operation, light curtains)

8. Industry Trends Analysis

Current trends include: - Smart Tooling: Embedded sensors for real-time quality monitoring - Modular Design: Quick-change tooling systems for multi-product lines - Energy Efficiency: Servo-driven systems reducing power consumption - AI Integration: Predictive maintenance and adaptive process control - Miniaturization: Sub-mm precision tools for microelectronics assembly - Global Standards: Increased adoption of ISO 13849 functional safety compliance

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