ANSI T 578 SP-2011 Accelerated light aging of printing and writing paper by xenon-arc exposure apparatus.pdf
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1、 T 578 sp-11 STANDARD PRACTICE 2011 2011 TAPPI The information and data contained in this document were prepared by a technical committee of the Association. The committee and the Association assume no liability or responsibility in connection with the use of such information or data, including but
2、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. Approved by the Standard Specific Interest Group for this Test Method TAPPI CAUTION: This Test Method may include safety precau
3、tions 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 use. The user is responsible for determining that the safety precautions are complete and are appropriate to their use of the m
4、ethod, 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 which may present serious health hazards to humans. Procedures for the handling of such substances are set forth on Material Safet
5、y Data Sheets which must be developed by all manufacturers and importers of potentially hazardous chemicals and maintained by all distributors of potentially hazardous chemicals. Prior to the use of this method, the user must determine whether any of the chemicals to be used or disposed of are poten
6、tially 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 disposal of these chemicals. Accelerated light aging of printing and writing paper by xenon-arc exposure apparatus 1. Scope 1.1. This
7、 standard practice describes a laboratory procedure for the exposure of printing and writing paper to xenon-arc light at elevated levels of light flux to permit accelerated aging of that type of paper. 1.2. This standard practice specifies the sample preparation and conditions of exposure required t
8、o obtain information on the relative stability of paper with regard to change in optical properties brought about by exposure of such paper to light. 1.3. This standard practice provides qualitative guidelines regarding paper stability. It does not define the life expectancy for a given paper to rea
9、ch a specified set of optical properties. 1.4 This standard practice uses high-intensity broadband light sources that may not be suitable for the evaluation of light stability of papers that contain peroxide bleached mechanical pulp (1). 2. Summary 2.1. In this standard practice, light from a xenon-
10、arc lamp that makes use of filters to simulate natural daylight that has passed through window glass shines on a paper surface with light flux that is substantially greater than in normal indoor conditions of paper exposure. The light flux shines in a controlled manner and for a specified period of
11、time. The light flux causes photochemical reactions in the paper that may change its reflectance (brightness) and color. Comparing initial and final levels of these parameters against different criteria, provides a measure of optical stability. 3. Significance 3.1. This standard practice will find u
12、se by parties concerned with the relative optical stability of various printing and writing papers. 3.2. The practice will provide manufacturers, paper users and other interested parties with guidelines to determine quantified rankings of paper stability that identify papers that are stable, moderat
13、ely stable and unstable when exposed to light over periods of time. 3.3. The stability rankings may be used for definition of the stability of paper to light, but will not define specific periods of life expectancy of a given paper. T 578 sp-11 Accelerated light aging of printing and writing paper /
14、 2 by xenon-arc exposure apparatus 4. Applicable standards 4.1. TAPPI Test Methods: TAPPI T 400 “Sampling and Accepting a Single Lot of Paper, Paperboard, Containerboard, or Related Product” TAPPI T 412 “Moisture in Pulp, Paper, and Paperboard”TAPPI T 402 “Standard Conditioning and Testing Atmospher
15、e for Paper, Board, Pulp Handsheets and Related Products” TAPPI T 452 “Brightness of pulp, paper, and paperboard (directional reflectance at 457 nm)” TAPPI T 254 “Cupriethylenediamene disperse viscosity of pulp (falling ball method)” TAPPI T 524 “Color of paper and paperboard (45/0 geometry)” TAPPI
16、T 1200 “Interlaboratory Evaluation of Test Methods to Determine TAPPI Repeatability and Reproducibility.” TAPPI T 1212 “Light sources for evaluating papers including those containing fluorescent whitening agents” TAPPI T 1213 “Optical measurement terminology (related to appearance evaluation of pape
17、r” 4.2. ASTM Standards: D 1968 “Standard Terminology Relating to Paper and Paper Products” G 113 “Terminology relating to natural and artificial weathering tests of nonmetallic materials” G 151 “Standard practice for exposing nonmetallic materials in accelerated test devices that use laboratory ligh
18、t sources” G 155 “Standard practice for operating xenon arc light apparatus for exposure of nonmetallic materials.”5. Apparatus test chamber 5.1. Provide a test chamber that utilizes a sealed “long-arc” xenon lamp to illuminate the test samples. The lamp selection shall be according to ASTM Standard
19、 G 155, as per Table 2 of that document. 5.2. Use a glass filtration system in front of the lamp to simulate natural daylight that has passed through window glass. This is to cut off almost all of the very short wavelength (nominally that which is below 320 nm) that occurs when daylight passes throu
20、gh window glass. Provide the glass filtration system as defined in ASTM Standard G 155. 5.3 Provide a cooling system with the test chamber such that a temperature at the paper surface is maintained at greater than 20C and less than 30C for all paper types. Air may be used as a cooling medium, but is
21、 not mandated so long as humidity of about 0.007 kg water/kg of dry air is maintained in the atmosphere above the paper surface and that a supply of oxygen, approximately equivalent to that which is found in standard air, is present at the paper surface. Apart form the oxygen, the remainder of the g
22、as present shall be inert. 5.4 The test chamber shall be designed such that it can be operated with ventilation so as to assure that is it free of ozone gas. 6. Test chamber operation and calibration 6.1 Control the intensity irradiance (E) of the xenon arc lamp to 765 W/m2 75 W/m2as measured in the
23、 290-800 m wavelength range. 6.2 Recalibrate the instrument with sufficient frequency to ensure continual preservation of both the light spectrum and the light intensity. For recalibration frequency recommendations, refer to the manufacturers instructions of the particular instrument in use. 6.3 Arr
24、ange the configuration of the test chamber so as to assure uniformity of light intensity (irradiance) across the paper sample area in a way that provides 10% deviation from target intensity for the entire sample. 6.4 Check the temperature at the paper surface with sufficient frequency to ensure that
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