Aero Nav Laboratories, Inc.
Aero Nav Laboratories is a full service environmental simulation lab that has served the military and industrial communities.
- 631-392-4888
- 631-392-4883
- AeroNavLabs@aeronavlabs.com
- 18 Connor Ln
Deer Park, NY 11729
United States of America
Categories
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Terminal Mechanical Strength Test
The terminal strength test is used to performed to determine whether the design of electrical terminals and their method of attachment can withstand mechanical stresses to which they will be subjected during installation or disassembly in equipment. These stresses must be withstood by the component without sustaining damage which would affect either the integrity of the terminals or the operation of the component part itself. Procedures are established in this method for testing, for example wire-lead terminals, flexible-flat-strip or tab-lead terminals, and rigid-type terminals which are threaded or have other arrangements for attaching conductors. The forces applied during the test consist of direct axial, radial or tension pulls, twist, bending torsion, and the torque exerted by the application of nuts or screws on threaded terminals.
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Electromagnetic Interference Test
Electromagnetic interference (also known as radio frequency interference) tests are used to determine the electromagnetic characteristics of electrical, electronic, and electro-mechanical equipment. Electromagnetic interference, both radiated or conducted, can affect the performance of equipment. Electromagnetic interference tests are specified as follows: conducted emission, radiated emission, conducted susceptibility, and radiated susceptibility.
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Accelerated Weathering Test
Accelerated weathering consists of relatively long term exposure of items to specified environments.This test is designed to observe for material degradation.
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Moisture Resistance/ Humidity Test
This test is performed for evaluating the resistance of component parts and constituent materials to the deteriorative effects of the high-humidity and heat conditions typical of tropical environments. Most tropical degradation results directly or indirectly from absorption of moisture vapor, and from surface wetting. These phenomena produce many types of deterioration, including corrosion of metals; physical distortion and decomposition of organic materials; leaching out of constituent components of materials, and detrimental changes in electrical properties.
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Induced Signals Test
The test relates to interfering signals that may be generated by interconnected equipment. Induced signal testing is used to determine if equipment will withstand various signals, such as might be introduced by failures in other equipment to which the test unit is connected.
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Electrical Contacts Test
The electrical contact testing is performed to determine the reliability of equipment under various contacting conditions. A few types of electrical contact tests are: contact-chatter monitoring, contact resistance, intermediate, and low level contact switching.
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Fire & Flammability Test
Fire & Flammability testing: ASTM E119 [UL 263]; ASTM E152 [UL 10C]; ASTM E814 [UL 1479]; API 607, 6A; ASTM E108 [UL 790]; UL 1709; UL 1715; UL 2043; NFPA 286; UBC 26-2; UBC 26-3; ASTM E84 [NFPA 255, UL 723]; ASTM E162; ASTM E662 [NFPA 258]; ASTM D635; ASTM D1929; ASTM D2863; ASTM E1354; ASTM E1317; Room Burn Facility; CAL 133, 117, 129; UL 94 V/HB; IMO A.652 (16); IMO A.653 (16); ULVW I; ASTM D2859; AITM 2.0007; NFPA 701; FMVSS 302; FAA 25.853; IEEE 383
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Fluid Contamination Test
Fluid contamination testing determines the abilities of materials to withstand the contaminating fluids, to which they are exposed in service.
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Enclosures
An enclosure is a mechanical item which either partly or wholly surrounds a component or assembly. Enclosure tests determine the suitability of equipment enclosures and sealing design techniques to provide various functions, including the following: Physical and environmental protection to the enclosed items. Protection from items within the enclosure to personnel or objects outside the enclosure.Means for ventilating items within the enclosure. Means for cooling items within the enclosure. Sealing equipment to protect against leakage, both internal and external. Enclosures are designed to provide various degree of protection.
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Icing/Freezing Rain Test
This test evaluates the effects of icing/freezing rain on the operational capability of equipment. This method also provides tests for evaluating the effectiveness of de-icing equipment and techniques, using prescribed means that are used in the field.
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Magnetic Effects Test
This test determines if an object can operate normally in strong externally generated magnetic environments. The magnetic effect test helps to assist in determining the proper location of the equipment in the installation.
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Package Handling Test
This test subjects packaged items to the stresses encountered during handling, transportation and storage. The tests consist of drop tests, storage tests such as stacking and compression, temperature tests and transportation vibration tests.
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Electrostatic Discharge Test
The electrostatic discharge test is designed to determine the ability of equipment to perform its intended function without permanent degradation of performance as a result of an air discharged electrostatic pulse. Electrostatic discharge is the result of an unbalanced electrical charge. Typically, it is created by insulator surfaces rubbing together or pulling apart. A transfer of electrostatic charge between bodies (materials, components, etc.) at different electrostatic potentials is caused by direct contact.
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Noise Test
Noise testing is conducted to determine if materials can withstand external noises generated by various sources. It also includes air-borne and structure-borne noise measurements.
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Corrosion Test
The purpose of this test is to determine the resistance of materials and protective coatings to corrosive atmospheres when a more corrosive environment than the salt fog/spray test is required. The test is used when material is stored or operated in areas, for example, where acidic atmospheres exist, such as in industrial areas or near the exhausts of any fuel-burning device. Gases such as sulfur dioxide are used to replicate the exhausts of fuel burning devices.















