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ASTM E139 ASTM F519 Electronic Tensile Creep Test Machine High Temperature Microcomputer Controlled Creep Rate Analyzer

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ASTM E139 ASTM F519 Electronic Tensile Creep Test Machine High Temperature Microcomputer Controlled Creep Rate Analyzer

ASTM E139 ASTM F519 Electronic Tensile Creep Test Machine High Temperature Microcomputer Controlled Creep Rate Analyzer
ASTM E139 ASTM F519 Electronic Tensile Creep Test Machine High Temperature Microcomputer Controlled Creep Rate Analyzer ASTM E139 ASTM F519 Electronic Tensile Creep Test Machine High Temperature Microcomputer Controlled Creep Rate Analyzer ASTM E139 ASTM F519 Electronic Tensile Creep Test Machine High Temperature Microcomputer Controlled Creep Rate Analyzer ASTM E139 ASTM F519 Electronic Tensile Creep Test Machine High Temperature Microcomputer Controlled Creep Rate Analyzer ASTM E139 ASTM F519 Electronic Tensile Creep Test Machine High Temperature Microcomputer Controlled Creep Rate Analyzer

Large Image :  ASTM E139 ASTM F519 Electronic Tensile Creep Test Machine High Temperature Microcomputer Controlled Creep Rate Analyzer

Product Details:
Place of Origin: Guangdong, China
Brand Name: LONROY
Certification: CE,ISO,ASTM,DPR,ROHS
Model Number: LR-M100
Payment & Shipping Terms:
Minimum Order Quantity: 1
Price: Negotaible
Packaging Details: Wooden package
Delivery Time: 7 work days
Payment Terms: D/A,D/P,T/T,L/C
Supply Ability: 200

ASTM E139 ASTM F519 Electronic Tensile Creep Test Machine High Temperature Microcomputer Controlled Creep Rate Analyzer

Description
Highlight:

High Temperature Creep Endurance Tester

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ASTM E139 ASTM F519 Electronic Tensile Creep Test Machine

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Microcomputer Controlled Creep Rate Analyzer

ASTM E139 ASTM F519 Creep Endurance Tester High Temperature Electronic Tensile Creep Test Machine

The LR-M100 microcomputer-controlled electronic creep endurance testing machine is designed for testing mechanical properties of high-temperature alloys, titanium alloys, ferrous metals, and non-ferrous metal materials. It determines steady-state creep rate, creep limit, creep elongation, sustained rupture time, sustained strength limit, and other critical parameters.

Application Scope

This testing machine performs various tests including:

  • Conventional creep and durability tests
  • Stress relaxation tests
  • High-temperature short-time tensile tests
  • Cyclic loading tests (load spectrum tests)
  • Low-cycle fatigue tests

Compliance Standards

Manufacturing and Inspection Standards

  • JB/T9373 "Technical Conditions for Tensile Creep Testing Machine"
  • GB/T16491 "Electronic Universal Testing Machine"
  • GB2611 "General technical requirements for testing machines"
  • GB/T16825.2 "Inspection of Force Applied by Tensile Creep Testing Machine"

Applicable Test Method Standards

  • GB/T2039 "Metal Tensile Creep and Durability Test Methods"
  • HB5151 "Metal High Temperature Tensile Creep Test Method"
  • HB5150 "Metal High Temperature Tensile Durability Test Method"
  • ASTM E139 - 11 "Standard Test Methods for Conducting Creep, Creep-Rupture and Stress-Rupture Tests of Metallic Materials"
  • ASTM F519 - 10 "Standard Test Method for Mechanical Hydrogen Embrittlement Evaluation of Plating/Coating Processes and Service Environments"

System Components

The testing machine consists of a host computer, measurement control system, (manual control box), centralized control system, and software package.

LR-M100 Creep Endurance Testing Machine Main Frame

Main Frame Structure

Features a portal-type high-stiffness frame with upper crossbeam and test bed connected by two vertical columns. The electric loading system uses AC servo motor driving a ball screw via timing belt and gearbox.

Main Frame Characteristics

  • High stiffness main frame with backlash-free transmission
  • Self-centering spherical joints on both upper and lower pull rods
  • Position limit switches, alarm controls, and interlocking protection

High-Temperature System

Includes high-temperature furnace, thermocouple temperature sensors, cold junction compensator, and temperature measurement control instrument.

Temperature Control System Interface

Measurement Control System

Features advanced measurement controller using FPGA and DSP technology for data acquisition, processing, and process control. Provides closed-loop control of test force, deformation, and displacement.

Software Interface

Testing Machine Software Interface Testing Machine Control Software

Technical Specifications

         Model

Parameters

LR-M100

Testing power

 

 

 

 

Maximum test force (kN)

10

Effective measurement range (%FS)

0.4%~100%FS 

Relative error of indication value (%)

±0.5

Absolute resolution (kN)

1/500000 (the resolution remains unchanged throughout the process)

Force sensing element

Load type load cell

speed, control parameters

 

 

 

 

 

 

 

Speed adjustment range (mm/min)

0.001~100 (stepless speed regulation)

Rate control accuracy (%)

Better than ±0.5

Maximum loading rate (N/s)

3000

Uniform test force rate control error (%)

±0.5

Constant test force control range (%FS)

1~100

Constant test force control error (%)

±0.5

Long-term control stability of deformation (%)

±0.5

Long-term control stability of test force (%)

±0.5(±0.2)

Displacement

 

 

 

Stroke (mm)

200

Measuring range

Full itinerary

Absolute resolution (mm)

0.000025

Relative error of indication value (%)

±0.5

deformation

Deformation measurement sensor

grating ruler

Deformation measurement resolution (mm)

0.0001

Deformation measurement error

0~12mm  , ±0.001mm

Coaxiality (%)

better than 5

The highest frequency HZ during low frequency cycle

0.1

Timing error (%)

±0.1

Effective test space width mm

500

power supply

220V,50Hz,1.0kw

Periodic persistence test loading frequency

≤0.2Hz; loaded waveforms: sine wave, triangle wave, trapezoidal wave and custom wave, etc.

Electric furnace and temperature control system

Electric furnace structure

Split-type atmospheric furnace, resistance wire heating, three-stage temperature control

Maximum temperature℃

1200

Temperature range℃

Temperature fluctuation ℃

Temperature gradient ℃

300~600

±3

3

600~900

±4

4

≥900

±5

5

Effective uniform heating zone length (mm)

150mm

Electric furnace structural dimensions (mm)

Inner diameter Φ90 Appearance Φ320X460

Electric furnace life

Continuous working time at ≤ 1000℃, more than 20,000 hours Continuous working time at ≥ 1000℃, more than 10,000 hours

Electric furnace surface temperature ℃

≤90 (average)

Heating power KW

Limit 5KW

High temperature tie rod and chuck materials

DZ22

Contact Details
DONGGUAN LONROY EQUIPMENT CO LTD

Contact Person: Kaitlyn Wang

Tel: 19376687282

Fax: 86-769-83078748

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