ANSI T 460 OM-2011 Air resistance of paper (Gurley method).pdf
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1、 T 460 om-11 TENTATIVE STANDARD 1943 OFFICIAL STANDARD 1949 REVISED 1975 OFFICIAL TEST METHOD 1983 REVISED 1988 REVISED 1996 REVISED 2002 REVISED 2006 REVISED 2011 2011 TAPPI The information and data contained in this document were prepared by a technical committee of the Association. The committee
2、and the Association assume no liability or responsibility in connection with the use of such information or data, including but not limited to any liability under patent, copyright, or trade secret laws. The user is responsible for determining that this document is the most recent edition published.
3、 Approved by the Standard Specific Interest Group for this Test Method TAPPI CAUTION: This Test Method may include safety precautions which are believed to be appropriate at the time of publication of the method. The intent of these is to alert the user of the method to safety issues related to such
4、 use. The user is responsible for determining that the safety precautions are complete and are appropriate to their use of the method, and for ensuring that suitable safety practices have not changed since publication of the method. This method may require the use, disposal, or both, of chemicals wh
5、ich may present serious health hazards to humans. Procedures for the handling of such substances are set forth on Material Safety Data Sheets which must be developed by all manufacturers and importers of potentially hazardous chemicals and maintained by all distributors of potentially hazardous chem
6、icals. Prior to the use of this method, the user must determine whether any of the chemicals to be used or disposed of are potentially hazardous and, if so, must follow strictly the procedures specified by both the manufacturer, as well as local, state, and federal authorities for safe use and dispo
7、sal of these chemicals. Air resistance of paper (Gurley method) 1. Scope 1.1 This method is used to measure the air resistance of approximately 6.45 sq. cm. (l sq. in.) circular area of paper using a pressure differential of 1.22 kPa. The recommended range of the liquid column instrument is from 5 t
8、o 1800 seconds per 100 mL cylinder displacement. For more impermeable papers the time requirements become so excessive that other techniques are preferable. 1.2 This method measures the volume of air that passes through the test specimen, along with any possible leakage of air across the surface; th
9、erefore it is unsuitable for paper or paperboards which cannot be securely clamped so as to avoid significant surface and/or edge leakage. 1.3 For a similar method of measuring air resistance that tests paper at a higher pressure (approx. 3 kPa), and has higher resolution in measuring smaller air vo
10、lumes, refer to TAPPI T 536. For a method of measuring air permeance at pressures up to 9.85 kPa, using both smaller and larger test areas, refer to TAPPI T 547. 2. Summary This method measures the amount of time required for a certain volume of air to pass through a test specimen. The air pressure
11、is generated by a gravity-loaded cylinder that captures an air volume within a chamber using a liquid seal. This pressurized volume of air is directed to the clamping gasket ring, which holds the test specimen. Air that passes through the paper specimen escapes to atmosphere through holes in the dow
12、nstream clamping plate. 3. Significance The air resistance of paper may be used as an indirect indicator of Z-directional fluid permeance, as well as other variables such as: degree of refining, absorbency (penetration of oil, water, etc.), apparent specific gravity, and filtering efficiency for liq
13、uids or gases. Air resistance is influenced by the internal structure and also the surface finish of the T 460 om-11 Air resistance of paper (Gurley method) / 2 paper. Internal structure is controlled largely by the type and length of fibers, degree of hydration, orientation, and compaction of the f
14、ibers; as well as the type and amount of fillers and sizing. The measurement of air resistance is a useful control test for machine production; but due to the number and complexity of factors outlined above; careful judgment should be used in the specification limits for air resistance. 4. Definitio
15、n Air resistance is the resistance to the passage of air, offered by the paper structure, when a pressure difference exists across the boundaries of the specimen. It is quantified by obtaining the time for a given volume of air to flow through a specimen of given dimensions under a specified pressur
16、e, pressure difference, temperature, and relative humidity. 5. Apparatus15.1 Oil sealed instruments 5.1.1 Air resistance apparatus, consisting of a vertically positioned outer cylinder which is partly filled with a sealing fluid, and an inner cylinder that can slide freely in the outer cylinder. Air
17、 pressure, generated by the weight of the inner cylinder, is applied to the specimen which is held between clamping plates. The outer cylinder should be filled with a sealing fluid to a depth of about 125 mm, as indicated by a ring on the inside surface of the cylinder or to a depth specified by the
18、 manufacturer 5.1.2 The clamping plates are located at the bottom of the apparatus, and a center feed tube directs the pressurized air to the clamping plates. The top of the floating inner cylinder is closed. NOTE l: On some earlier instruments, the clamping plates are mounted on top of the floating
19、 inner cylinder. Refer to Appendix A.l for additional details. Some versions of this apparatus utilize a hand-tightened capstan (jackscrew) arrangement to tighten the clamping plates together, while other versions are equipped with a dead weight (typically 0.907 kg) loading a lever arm. The recommen
20、ded clamping force is 180 30 newtons. This mechanism provides a technique to give uniform loading, and thus minimize the operator influence on the test. Controlled clamping force is the preferred method of clamping the specimen. 5.1.3 An elastomeric gasket is attached to the clamping plate on the si
21、de exposed to air pressure to minimize the leakage of air between the surface of the paper specimen and the clamping plate. The gasket is 28.58 0.13 mm inside diameter and 34.93 0.13 mm outside diameter. A satisfactory material is Thiokol, grade ST, polished plate molded, 0.8 0.1 mm thick, 50-60 IRH
22、D (International Rubber Hardness Degrees ISO 48). Other materials may be recommended by the instrument manufacturer. Since the hardness of the elastomer will change with age, this gasket must be replaced on a periodic basis to ensure optimum sealing characteristics. For alignment and protection, the
23、 gasket is cemented in a groove machined in the clamping plate. The groove is concentric with the aperture in the opposing plate. The groove is 28.45 +0.000 /-0.08 mm inside diameter and about 35 mm outside diameter to fit the outside diameter of the basket, at a depth of 0.50 0.03 mm. 5.1.4 The out
24、er cylinder is 254 mm high with an internal diameter of 82.6 mm. It has four vertical bars, each 245.5 mm long, 2.4 mm wide and 2.4 mm thick, mounted equidistantly on the inner surface of the outer cylinder to serve as guides for the inner cylinder. It has a fluid level indicator to assist in adding
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