Insertion, Extraction

Image Part Number Description / PDF Quantity Rfq
11-7576-101

11-7576-101

VEAM

CIR REMOVAL TOOL 20 KIT

0

CITG-20A-TIP

CITG-20A-TIP

VEAM

121086-3105

0

46592M-101S

46592M-101S

VEAM

CIR REMOVAL TOOL 20S TIPS

0

980-0004-806

980-0004-806

VEAM

M81969/1-03

0

070302-0000

070302-0000

VEAM

CIT-VE12

0

CET-APK25

CET-APK25

VEAM

121086-3278

0

274-7029-000

274-7029-000

VEAM

CET-DL

0

038889-0100

038889-0100

VEAM

CET20A

0

CET-DL5

CET-DL5

VEAM

274-7029-005

0

11-7370-4

11-7370-4

VEAM

CIR REMOVAL TOOL SIZE 4 PIN

0

070256-0000

070256-0000

VEAM

RP TOOL CIT DPXMA 22-1

0

A43240-8

A43240-8

VEAM

CIR REMOVAL 8 TOOL KIT

0

323-9510-014

323-9510-014

VEAM

TIP INSERTION #26

0

038896-0002

038896-0002

VEAM

ER CIT12-2

0

980-0003-954

980-0003-954

VEAM

RP CIT-DPXMA-22-1 TIP

0

121086-0082

121086-0082

VEAM

CET-F80-20 EXTRACTION TOOL

0

274-7003-000

274-7003-000

VEAM

TOOL INS/EXT 12 PLASTIC

0

CET16

CET16

VEAM

EXTRACTION TOOL #16

0

CIT-16

CIT-16

VEAM

INSERTION TOOL

0

46592M-VPT

46592M-VPT

VEAM

CIR REMOVAL TOOL 20P TIPS

0

Insertion, Extraction

1. Overview

Insertion/Extraction tools are precision mechanical devices designed to automate the installation (insertion) and removal (extraction) of components in industrial processes. These tools integrate with robotic systems, CNC machines, and manual workflows to enhance efficiency, accuracy, and safety. They play a critical role in sectors requiring high repeatability and minimal human intervention, such as electronics manufacturing, automotive assembly, and medical device production.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Manual Insertion ToolsHandheld devices with ergonomic design for controlled force applicationPrototyping, small-scale electronics assembly
Pneumatic ExtractorsCompressed air-driven mechanisms for rapid component removalAutomotive engine component disassembly
Electric Insertion SystemsMotorized linear/rotary actuators with torque controlPCB connector installation, battery pack assembly
Automated Robotic End-effectorsMulti-axis grippers with vision system integrationHigh-speed semiconductor packaging lines

3. Structure and Components

A typical system comprises: - Mechanical Frame: Aluminum/steel alloy housing for structural integrity - Actuation System: Servo motors/pneumatic cylinders for motion control - Sensing Array: Force-torque sensors and proximity detectors - Tool Interface: Quick-change couplers with ISO standard compliance - Control Module: PLC-based unit with programmable parameters

4. Key Technical Specifications

ParameterImportanceTypical Range
Insertion ForceDetermines material compatibility and joint integrity5-500N
Positioning AccuracyEnsures proper alignment in precision applications 0.01-0.1mm
Cycle LifeIndicates durability for high-volume production1M-10M operations
Environmental ResistanceDefines operational suitability in harsh conditionsIP54-IP67

5. Application Fields

Primary Industries: - Electronics Manufacturing: IC socket insertion, heat sink installation - Medical Equipment: Surgical instrument sterilization tray handling - Automotive Production: Transmission component assembly - Aerospace: Composite panel fastening systems - Consumer Goods: Battery insertion in mobile devices

6. Leading Manufacturers and Products

ManufacturerKey ProductTechnical Highlights
Coval MecWeldElectromagnetic Insertion ToolPatented shock absorption, 0.02mm repeatability
Atlas CopcoQX Series Electric ExtractorSmart torque feedback, 300rpm max speed
OnRobotMULTI Mount End-effectorQuick-swap modular design for collaborative robots

7. Selection Guidelines

Key Considerations: 1. Match insertion force requirements with material specifications 2. Verify compatibility with existing automation infrastructure 3. Evaluate environmental operating conditions (temperature, dust/water exposure) 4. Calculate total cost of ownership including maintenance intervals 5. Prioritize programmability for adaptive manufacturing needs

8. Industry Trends

Future developments include: - Integration with AI-powered predictive maintenance systems - Adoption of digital twins for virtual process optimization - Miniaturization for micro-electronics assembly applications - Expansion of cobot-compatible tooling solutions - Increased adoption of energy-efficient piezoelectric actuators

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