AASHTO T 240-2013 Standard Method of Test for Effect of Heat and Air on a Moving Film of Asphalt Binder (Rolling Thin-Film Oven Test).pdf
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1、Standard Method of Test for Effect of Heat and Air on a Moving Film of Asphalt Binder (Rolling Thin-Film Oven Test) AASHTO Designation: T 240-131ASTM Designation: D2872-04 American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 200
2、01 TS-2b T 240-1 AASHTO Standard Method of Test for Effect of Heat and Air on a Moving Film of Asphalt Binder (Rolling Thin-Film Oven Test) AASHTO Designation: T 240-131ASTM Designation: D2872-04 1. SCOPE 1.1. This test is used to measure the effect of heat and air on a moving film of asphalt binder
3、 and to provide residue for additional testing. The effects of this treatment are determined from measurements of the properties of the asphalt binder before and after the test. 1.2. The values stated in SI units are to be regarded as the standard. 1.3. This standard may involve hazardous materials,
4、 operations, and equipment. This standard does not purport to address all of the safety concerns associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.
5、 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: M 231, Weighing Devices Used in the Testing of Materials M 320, Performance-Graded Asphalt Binder R 16, Regulatory Information for Chemicals Used in AASHTO Tests R 18, Establishing and Implementing a Quality Management System for Construction Materials
6、 Testing Laboratories 2.2. ASTM Standards: C670, Standard Practice for Preparing Precision and Bias Statements for Test Methods for Construction Materials E1, Standard Specification for ASTM Liquid-in-Glass Thermometers E220, Standard Test Method for Calibration of Thermocouples By Comparison Techni
7、ques E644, Standard Test Methods for Testing Industrial Resistance Thermometers 2.3. NCHRP Document: NCHRP Web-Only Document 71 (Project 09-26), Precision Estimates for AASHTO Test Method T 308 and the Test Methods for Performance-Graded Asphalt Binder in AASHTO Specification M 320 2015 by the Ameri
8、can Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-2b T 240-2 AASHTO 3. SUMMARY OF TEST METHOD 3.1. A moving film of asphaltic material is heated in an oven for 85 min at 163C (325F). The effects of heat and air are dete
9、rmined from changes in physical test values as measured before and after the oven treatment. The residue from this test is also used for additional testing as required in M 320. An optional procedure is provided for determining the change in sample mass. 3.2. Precision values for this test method ha
10、ve been developed for viscosity at 60C (140F), ductility at 15.6C (60F), and mass change. 4. SIGNIFICANCE AND USE 4.1. This method indicates the approximate change in properties of asphalt binder during conventional batch plant mixing at about 150C (302F) as indicated by viscosity and other rheologi
11、cal measurements. The residue from this test is also used to determine the conformance of an asphalt binder to M 320. It yields a residue that approximates the condition of the asphalt binder immediately after the pavement is constructed. If the mixing temperature differs appreciably from 150C (302F
12、), more or less effect on the properties will occur. This method can also be used to determine mass change, which is a measure of asphalt binder volatility and mass changes resulting from oxidation. 5. APPARATUS 5.1. OvenA double-walled electrically heated convection type with inside dimensions as f
13、ollows: a height of 381 mm (15 in.), a width of 483 mm (19 in.), and a depth (with door closed) of 445 13mm (171/2 1/2in.). The door shall contain a symmetrically located window with dimensions of 305- to 330-mm (12- to 13-in.) wide by 203- to 229-mm (8- to 9-in.) high. The window shall contain two
14、sheets of heat-resistant glass separated by an air space. The window should permit an unobstructed view of the interior of the oven. The heating element shall be located below the oven floor and shall be adequate to maintain the required temperature. The oven shall be vented at the top and bottom. T
15、he bottom vents shall be located symmetrically to supply incoming air around the heating elements. They shall have an open area of 15.0 0.7 cm2(2.31 0.11 in.2). The top vents shall be symmetrically arranged in the upper part of the oven and have an open area of 9.3 0.45 cm2(1.45 0.07 in.2). 5.1.1. T
16、he oven shall have an air plenum covering the side walls and ceiling, the air space being 38 mm (11/2in.) deep from the walls and ceiling. At a midpoint in the width of the oven and 152 mm (6 in.) from the face of the circular metal carriage to its axis, a squirrel cage-type fan 133.4 mm (51/4in.) o
17、utside diameter by 73 mm (27/8in.) wide shall be turned at 1725 r/min by an externally mounted motor. The squirrel cage fan shall be set so that the fan turns in an opposite direction to its vanes. The air flow characteristics of the fan-plenum system shall be suctioned from the floor of the oven th
18、rough the wall plenums with the air exiting through the fan. Figures 1 and 2 show details of this fan-plenum system. 5.1.2. The oven shall be equipped with a proportional temperature controller capable of maintaining a temperature of 163 1.0C (325 1.8F). The sensing element of the controller may be
19、placed at any location that enables the oven to maintain temperature control as specified in this standard. The temperature controller shall be capable of bringing the fully loaded oven back to the test temperature within a 10-min period after insertion of the samples in a preheated oven. 5.1.3. A t
20、hermometer shall be hung from or affixed to a mounting in the ceiling, which is 51 mm (2 in.) from the right side of the oven at a midpoint in the depth of the oven so that the bulb of the 2015 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication
21、 is a violation of applicable law.TS-2b T 240-3 AASHTO thermometer or the tip of the sensor of the alternative thermometric device is within 25 mm (1 in.) of an imaginary line level to the shaft of the circular metal carriage. 5.1.4. The oven shall be provided with a 305-mm (12-in.) diameter vertica
22、l circular carriage (see Figure 2 for details). This carriage shall be provided with suitable openings and clips for firmly holding eight glass containers (see Figure 3) in a horizontal position. The vertical carriage shall be mechanically driven through a 19-mm (3/4-in.) diameter shaft at a speed o
23、f 15 0.2 r/min. 5.1.5. The oven shall be equipped with an air jet positioned to blow heated air into each container at its lowest point of travel. The air jet shall have an outlet orifice 1.02 mm (0.04 in.) in diameter (No. 60 drill) connected to a 7.6-m (25-ft) length of 7.9-mm (5/16-in.) O.D. refr
24、igeration copper tubing. This tubing shall be coiled to lie flat on the bottom of the oven and lead to a source of fresh-dried, dust-free, regulated air. The tubing in the bottom of the oven shall be exposed to the plenum of the oven and shall not be covered by aluminum foil or other material. Figur
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