Hydraulic Grip Pump

Hydraulic Grip Pump

2718-500 Hydraulic Grip Pump Angled
2718-500 Hydraulic Grip Pump Angled 2718-500 Hydraulic Grip Pump 2718-500 Hydraulic Grip Pump Perspective 2718-500 Hydraulic Grip Pump Close Up 2718-500 Hydraulic Grip Pump Controller 2718-500 Hydraulic Grip Pump Rear 2718-500 Hydraulic Grip Pump Connections 2718-500 Hydraulic Grip Pump Power Connector

2718-550 | Hydraulic Grip Pump

The Instron 2718-550 hydraulic grip pump is designed for continuous 24/7 operation in manual and automated testing systems in industrial environments.

It can be configured to provide a maximum pressure of 207 bar (3000 PSI for use with wedge grips), or alternatively 138 bar (1900 PSI) for use with side acting grips. The unit incorporates two analogue pressure gauges, that are easily visible to the operator from the front of the pump.

The 2718-550 pump is configured to operate with a two stage flow speed, with a higher flow rate up to 69bar (1000psi) to increase productivity. Once clamping the specimen the pressure will then increase to the full pressure at the slower flow rate.

Principle of Operation

The 2718-550 hydraulic grip pump is activated by a footswitch, while a handset provides close/open functionality of each grip independently. The gripping pressure is easily configured by an electrical adjustment knob located on the front of the pump.

Features and Benefits

  • Dual Stage gripping pressure - improving operator safety & preventing specimen damage while reducing closing time
  • Easy to use grip control handset
  • Meets CE, CSA & UL requirements
  • Long service life with minimal maintenance required
  • Hose whip restraint system - to ensure operator safety in cases of hose failure
  • Upper & Lower grips can be closed/opened independently
  • 2 Wheels make maneuvering simple
  • Quiet operation minimizes operator discomfort - Less than 65 dB at full pressure
  • 3um Filter - Preventing damage to pump or grip components from dirt/debris
  • Easily visible sight glass to check oil level & condition

 

Compatible Grips

Grip Type Static Load Capacity Catalog No.
Advanced Hydraulic Wedge Action Grips ±130 kN 2743-401
Advanced Hydraulic Wedge Action Grips ±312 kN 2742-501
Advanced Hydraulic Wedge Action Grips ±600 kN 2742-601
Hydraulic Dual Side Action Grips 250 kN W-5450
Hydraulic Dual Side Action Grips 600 kN W-5420
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2718-550 Hydraulic Grip Pump

The Instron® 2718-550 hydraulic grip pump is designed for continuous 24/7 operation for both manual and automated testing systems in industrial environments

  • 产品
  • 09/02/2020
  • 201.71 KB

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0.5 in Socket Drive Torsion Grips, English

W-MT03-M_P
W-MT03-M_P

W-MT03 | Socket drive set (US)

Includes:

  • Two complete 6 point US Customary socket sets with
    11 pieces, each ranging from 3/8 inch to 1 inch in 1/16 inch
    increments.
  • Two 1/2 inch drive adapters for motor and torque cell
    mounting.
  • Adapting thread: M12 x 1.75m
  • Max Capacity: 57 Nm (500 lbf-in)
規格表
Accessory Length 60.3 mm (2.375 in)
Lower Fitting M12x1.75mRH
Specimen Diameter mm (0.375 - 1.000 in)
Torque Capacity 57 Nm (500 in-lb)
Upper Effective Length 47.6 mm (1.875 in)
Upper Fitting M12x1.75mRH

Food Fixture Drip Tray

Food Fixture Drip Tray

Catalog no. S5400A

S5400A Food Fixture Drip Tray
S5400A Food Fixture Drip Tray

S5400A | Food Fixture Drip Tray

Capacity: 2 kN

Size: 180 x 180mm (7.1 X 7.1 in) Drip tray.

Lower fitting: 1/2 in clevis, male.

Upper fitting: Requires a food fixture.

Provides a 6 mm clevis, female connection to directly mount other accessories

附加元件

  • Confectionary Holder
  • Kramer Shear Cell
  • Ottawa Texture Cell
  • Back Extrusion Food Cell
  • Warner Bratzler Meat Shear Fixture
  • Tortilla / Pastry Burst test Fixture
  • Dough Extensibility Fixture
  • Pasta Buckling Flexure Fixture
  • Pasta Firmness/Stickiness Test
  • Multiple Pea/Berry Puncture Fixture
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Pitching

Pitching

crash simulation pitching
crash simulation pitching

Active controlled pitch simulation

The active controlled pitch simulation load unit offers a significant advantage through more realistic crash simulations and better reproduction of the dummy injury criteria. In a frontal impact, the deceleration and deformation of the vehicle body is almost always accompanied by a movement in the vertical plane. In most cases, this movement is a combination of a rotation around a point in the space in front of the vehicle with an additional vertical movement.

Pitching in crash events directly influences the acceleration and the movement path of the occupant during an impact. These movements together with the strong frontal deceleration during the impact determine the severity of the injury in interaction with the seatbelt and airbag. One focus of security system development is the management of the Head Injury Criteria (HIC) value. Earlier analyzes have shown up to 40% difference between the HIC values of sled tests with and without the possibility of pitch motion simulation. Further influences are found for neck accelerations and belt forces.

The Instron CSA systems with active pitch simulation are currently successfully used by 14 customers.

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Isolation Mounts for 8801 or 8516 (1 set); For Testing Frequencies Above 15Hz.

No image available - Instron

1300-009 | Isolation mounts for 8801 or 8516 (1 set)

Suitable for testing frequencies above 15Hz

規格表
Compatible Frame Models Isolation mounts for 8801 or 8516 (1 set). For testing frequencies above 15Hz.

Air Compressor, Portable; Line Voltage: 240 VAC

Air Compressor, Portable; Line Voltage: 240 VAC

No image available - Instron

2810-060 | Air Compressor, portable

Line Voltage: 240 VAC.

規格表
Description Air Compressor, portable. Line Voltage: 240 VAC.)

Biaxial Extensometer 50 mm Gauge Length

Biaxial Extensometer 50 mm Gauge Length

Biaxial Clip on Extensometer
Biaxial Clip on Extensometer

Biaxial Extensometer 50 mm Axial Gauge Length providing 2 independent axial and one transverse strain measurement.

Features:

  • Replaceable specimen contacts to suit a range of materials and specimens
  • Simple, single handed attachment and removal
  • Robust design for reliable operation under demanding conditions
  • Meets ASTM E83 B-1, ISO 9513 grade 0.5 and ISO 527 (annex C)

Transverse travel +/- 0.5 mm (Strain range depends on specimen width)

The extensometer provides 2 independent axial outputs along with a single transverse output and requires 3 sensor channels. It has electrical calibration and is self-identifying with 3300, 3400, 4200, 4300, 4400, 4500, 5500, 5800, 5900, 6800, 8500, 8800 Tower, and 8800MT Series Systems. The extensometer is supplied with a single set of conical point specimen contacts.

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Averaging Axial and Biaxial Clip-On Extensometers

These bi-axial and averaging axial clip-on extensometers use strain gauges for measurement and are constructed from high-strength aluminum, titanium, and stainless steel. All of the extensometers feature simple, single-handed operation. The extensometer incorporates automatic electrical calibration and transducer recognition including a unique digital serial number.

  • 产品
  • 05/12/2021
  • 1008.68 KB
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Pneumatic Lead Pull Grip. Rated capacity: 500 N

Pneumatic Lead Pull Grip. Rated capacity: 500 N

2712-212_P
2712-212_P

2712-212 | Pneumatic Lead Pull Grip

Capacity: 500 N (100 lb, 50 kgf)

Includes a single grip with lead pull jaw faces.

Temperature range: 0°C to 60°C (32°F to 140°F).

Fitting: Type Om (12 mm connection with 6 mm clevis pin). The pneumatic lead pull grip is a parallel action pneumatically operated vice action grip fitted with needle nose jaw faces for lead pull testing.

Requires an automatic air kit.

1 Grip Only.

附加元件

  • Jaw Faces (Serrated, needle nose)
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1000°C Three-Zone Split Furnace for Low Cycle Fatigue Testing

1000°C Three-Zone Split Furnace for Low Cycle Fatigue Testing

Three-zone Split Furnace
Three-zone Split Furnace W8518HPjpg FurnaceAccessoriesPjpg Furnaces W754XXP2jpg

3117-200 | 1000°C Three-Zone Split Furnace for Low Cycle Fatigue Testing

Features:

  • 90mm bore diameter, 358mm overall height (furnace only)
  • Three-zone split furnace configuration with durable embedded heating elements
  • 1000 °C (1832 °F) nominal maximum specimen temperature (dependent on load string configuration)
  • 300 - 600 °C (572 - 1112 °F) nominal minimum specimen temperature (dependent on load string configuration and test conditions)
  • High efficiency insulation (refractory ceramic fibre free)
  • Extensometer cut-out, full width, 76 mm high
  • Extensometer slot 40 mm high x 15 mm wide
  • Nominal power rating 3kW

Includes side port insulation plug for blanking extensometer slot.

Requires temperature controller with thermocouples, support brackets, and top/bottom insulating port plugs (not included)

供使用

  • Axial Extensometer; 12.5mm Gauge Length +20% -10% Capacity
  • Axial Extensometer; 12.5mm Gauge Length, +20% / -10% Capacity
  • Strain Gauge Extensometer; 25mm Gauge Length, +10% -5% Capacity
  • High-Temp Extensometer; 25mm Gauge Length, +10% -5% Capacity
  • Leaf Spring Mounting for 2632-054, -055, 056 and -057 Extensometers
附加元件
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TAPPI T541 Internal Bond Strength of Paperboard. Z-Direction Tensile.

TAPPI T541 Internal Bond Strength of Paperboard. Z-Direction Tensile.

Catalog no. S1-11814

noimage

S1-11814 | TAPPI T541 Internal Bond Strength of Paperboard

Z-Direction Tensile.

Fixture includes two test blocks and tabs.

Requires a set of grips, not included.

規格
Description TAPPI T541 Internal Bond Strength of Paperboard. Z-Direction Tensile.
Lower Fitting Requires upper and lower grip
Testing Standards TAPPI T541
Upper Fitting Requires upper and lower grip

Flexure Fixture, Fatigue 3 Point

2810-182_P
2810-182_P

Flexure Fixture, Fatigue 3 Point 2810-181

Fatigue Rated 3 Point Bend Fixture, 100 kN (22 kip) Dynamic Capacity, With 25mm (1.0 in) Diameter Rollers

  • Adjustable lower span from 30 to 250mm (1.18 to 9.8 in)
  • Maximum specimen width is 50mm (2 in)
  • Mechanical interface: M30 x 2 right hand female threads
  • Anti-rotation is incorporated in the design

Includes: One upper roller, 25 mm (0.97 in) Diameter

Requires: fatigue rated adapters

文獻

2810 Series Flexure Fixture

Catalog number 2810-181

  • 产品
  • 10/19/2005
  • 290.17 KB

供使用
附加元件
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Side and Pole Impact Simulation

Side and Pole Impact Simulation

Crashtest
Crashtest

Side and Pole Impact Simulation

Side crashes are the second most common type of accident. They cause the highest number of critical injuries relative to the accident rate. One reason for this is the spatial proximity of the occupant to the deformation zone. There are different test standards for the side impact. These are the side crash according to ECE-R95 (European standard) and FMVSS-214 (US standard) as well as the tests given in the consumer protection programs. In addition to the actual side impact test, there is also a Pole Side Impact test according to Euro NCAP. 

Side-crash simulations on sled systems are carried out for the development of safety restraint systems. These tests begin in an early phase of the development of the whole vehicle. However, prototype parts are not always available at this time and the price of these parts is very high. For the non-destructive sled test, substantially fewer parts are needed than in a destructive test procedure. For example, a seat can be used multiple times, and the door structure with the door trim can last a whole series of tests. Since many of the test components can be re-used, a new test can be set-up in a short time. In addition to the standard side impact simulation unit, Instron can also offer additional sled options for intrusion simulation.  

Instron have also successfully integrated proven structures from external partners for intrusion simulation

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