Screw and Nut Drivers

Image Part Number Description / PDF Quantity Rfq
26704

26704

Wiha

SCREWDRIVER TORX T4 4.7"

46

34124

34124

Wiha

NUT DRIVER HEX SOCKET 8MM 9.4"

4

27870

27870

Wiha

SCREWDRIVER TORX T15X60

0

96307

96307

Wiha

SCREWDRIVER HEX 0.7MM

3

92026

92026

Wiha

SCREWDRIVER INSULATED CUSHION GR

0

34339

34339

Wiha

NUT DRIVER HEX SCKT 5/16" 6.89"

0

31114

31114

Wiha

SCREWDRIVER PHILLIPS #1 16.1"

9

34342

34342

Wiha

NUT DRIVER HEX SCKT 7/16" 7.36"

0

30530

30530

Wiha

SLOTTED SPANNER NUT DRIVER M3

0

46722

46722

Wiha

SCREWDRIVER HEX 7/32" 10.0"

0

26025

26025

Wiha

SCREWDRIVER SLOT 0.4X2.5MM 5.71"

403

27829

27829

Wiha

SCREWDRIVER TORX T9 5.71"

10

36710

36710

Wiha

SCREWDRIVER HEX 0.05" 7.05"

32

96323

96323

Wiha

SCREWDRIVER HEX 3/32"

21

31146

31146

Wiha

SOFTFINISH PHILLIPS SCRDRV #2

13

92081

92081

Wiha

INSULATED #2 POZIDRIV SCREWDRIV

5

36219

36219

Wiha

SCREWDRIVER TORX T15 7.52"

45

27802

27802

Wiha

SCREWDRIVER TORX T2 4.7"

0

36734

36734

Wiha

SCREWDRIVER HEX 3/16" 10.7"

0

33614

33614

Wiha

T-HANDLE METRIC NUT DRIVER 10.0M

0

Screw and Nut Drivers

1. Overview

Screw and nut drivers are hand or power tools designed to install/remove threaded fasteners (screws, bolts, nuts) by applying rotational force (torque). They serve as critical components in mechanical assembly, maintenance, and repair across industries. Modern advancements include ergonomic designs, torque-controlled systems, and integration with smart manufacturing processes.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Manual ScrewdriversHexagonal or slotted tips, ergonomic handlesElectronics assembly, furniture installation
Impact DriversHigh-torque rotational impacts, compact designAutomotive repair, heavy machinery maintenance
Torque WrenchesPrecision torque adjustment, audible feedbackAerospace fastening, engine assembly
Electric ScrewdriversVariable speed control, clutch mechanismsMass production lines, PCB assembly
Pneumatic NutrunnersAir-powered, high power-to-weight ratioAutomotive tire changing, pipeline maintenance

3. Structure and Components

Typical construction includes: - Drive Head: Interchangeable bits (Phillips, Torx, hex) or sockets - Transmission System: Gears, clutch mechanisms, or impact hammers - Power Source: Manual force, electric motors (brushless DC), pneumatic cylinders - Ergonomic Housing: Rubberized grips, vibration damping materials - Control Interface: Torque adjustment rings, speed selectors

4. Key Technical Specifications

ParameterImportance
Torque Range (Nm)Determines fastening strength and material compatibility
No-Load Speed (RPM)Affects work efficiency in repetitive tasks
Power Source TypeInfluences portability and operational environment
Bit CompatibilityDictates versatility across fastener types
Vibration Level (m/s )Impacts user comfort and safety compliance

5. Application Fields

Main industries include: - Automotive: Engine assembly, brake system installation - Aerospace: Composite material fastening, turbine maintenance - Electronics: PCB screw assembly, heat sink installation - Construction: Steel structure bolting, HVAC system installation - Medical: Surgical instrument sterilization and maintenance

6. Leading Manufacturers and Products

ManufacturerCountryRepresentative ProductKey Features
Ingersoll RandUSAW7150 Air Nutrunner1,200 Nm torque, composite housing
Snap-onUSATECH 9R Electric Driver0.5-6 Nm range, IoT connectivity
BoschGermanyGSR 18V-EC Impact DriverBrushless motor, 5,500 RPM
YatoPolandYT-08120 Torque Wrench12-120 Nm, 3% accuracy

7. Selection Recommendations

Key considerations: - Match torque specifications to fastener requirements - Prioritize cordless models for mobility-requiring tasks - Choose ESD-safe variants for electronics work - Opt for modular systems with interchangeable bits - Consider vibration reduction for prolonged use

8. Industry Trends

Emerging developments: - Wireless IoT-enabled tools with torque data logging - Carbon fiber-reinforced composite materials reducing tool weight - AI-powered torque control systems preventing over-tightening - Modular battery systems enabling tool interoperability - Collaborative robot (cobot) integration in smart factories

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