Pliers

Image Part Number Description / PDF Quantity Rfq
68-006

68-006

Xcelite

PLR RET RNG 1/4CONV.047 90D

0

BG260SW

BG260SW

Xcelite

PLIER ANGLED NEEDLE NOSE

0

10337CVN

10337CVN

Xcelite

PLIER,SLD-JT,LONG,7CV,CHAIN NOSE

0

100010VN

100010VN

Xcelite

PLIER,10",SLD-JT,BUTT FENCE,CARD

0

67-175G

67-175G

Xcelite

PLR DIAG CUT 6 GRP &SPR

0

20509CVSMLN

20509CVSMLN

Xcelite

PLIER,SLD-JT,LINEMAN,9CV,

0

67-503G

67-503G

Xcelite

PLR DKBL 8 W/GRP

0

6546CVSMLN

6546CVSMLN

Xcelite

PLIER,SLD-JT,LONG,6CV,CHAIN NOSE

0

67-303

67-303

Xcelite

PLR CHN NSE 5-9/16 SD CUT W/GRP

0

67-917G

67-917G

Xcelite

PLR RET RNG EXT .025 0D

0

68-056

68-056

Xcelite

SET PLR RNG CM LK CONV 6PC

0

67-103

67-103

Xcelite

PLR DIAG LNG RCH GRP

0

68-045

68-045

Xcelite

PLR RET RNG CM LK CONV .038 18D

0

67-965G

67-965G

Xcelite

PLR RET RNG INT .025 0D

0

67-063G

67-063G

Xcelite

PLR LNMN 6-1/4 GRP

0

R27CV

R27CV

Xcelite

PLIER,T/G,STRAIGHT,7"CV

0

7777CVN

7777CVN

Xcelite

PLIER,SLD-JT,LONG,7CV,NEE

0

67-781TH

67-781TH

Xcelite

PLR RIB LCK 12 W/GRP, THR RDY

0

67-331

67-331

Xcelite

PLR NDL NSE 8-5/16 LNG HD

0

5438CEN

5438CEN

Xcelite

PLIER,8",HI LEV,DIAG

0

Pliers

1. Overview

Tools pliers are handheld mechanical devices designed to grip, bend, cut, or manipulate objects through applied force. As a fundamental category of hand tools, pliers utilize a dual-lever system with pivot joints to amplify user input. Their importance in modern technology spans industries, enabling precision work in electronics, automotive repair, construction, and aerospace applications.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Needle-nose PliersLong tapered jaws for precision grippingElectronic component assembly, jewelry making
Lineman's PliersCombination cutting/gripping with insulated handlesElectrical wiring, cable cutting
Water Pump Pliers Adjustable jaw opening mechanismPipe fitting, plumbing repairs
Diagonal Cutting PliersAngled cutting edges for wire snippingElectronics, telecommunications
Retaining Ring PliersSpecialized tips for snap ring installation/removalMechanical assembly, automotive

3. Structure and Components

Typical pliers consist of:

  • Head section: Working surfaces (jaws/cutting edges)
  • Pivot joint: Steel rivet enabling lever action
  • Handle assembly: Dual gripping surfaces with insulation
Constructed from chromium-molybdenum steel alloys with heat-treated working surfaces. Advanced models feature multi-material handles for ergonomics.

4. Key Technical Specifications

ParameterSignificanceTypical Range
Bite Force (N)Determines material handling capability200-1500
Hardness (HRC)Surface wear resistance45-60
Insulation Rating (V)Electrical safety compliance1000
Weight (g)Ergonomic considerations150-600
Jaw Opening (mm)Size versatility15-50

5. Application Fields

Major industries include:

  • Electronics manufacturing (precision assembly)
  • Automotive repair (component removal/installation)
  • Construction (electrical/plumbing systems)
  • Aerospace (aircraft component maintenance)
Used with equipment ranging from PCBs to hydraulic systems.

6. Leading Manufacturers and Products

Water Pump Pliers

ManufacturerKey ProductsTechnical Advantages
KnipexCobra PliersQuick-adjust mechanism
WihaPrecision PliersErgonomic VDE insulation
ChannellockPatented jaw design
Klein ToolsLineman's PliersHot-riveted joint construction
StahlwilleRetaining Ring PliersInterchangeable tip system

7. Selection Recommendations

Consider:

  • Material compatibility (e.g., soft jaws for delicate work)
  • Operating environment (insulation requirements)
  • Force requirements vs. ergonomics
  • Compliance with ISO 5744 standards
  • Maintenance accessibility
Example: Select diagonal pliers with 60HRC hardness for cutting piano wire.

8. Industry Trends

Emerging developments include:

  • Nanocoated surfaces for corrosion resistance
  • Integrated torque measurement sensors
  • Modular head-swapping systems
  • Biodegradable handle materials
  • AI-assisted grip force optimization
Global market growth projected at 4.2% CAGR through 2030.

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