US2018056637A1PendingUtilityA1

Heat-insulating transparent polyvinyl chloride sheet having excellent weatherability and process for producing the same

Assignee: NANYA PLASTICS CORPPriority: Aug 25, 2016Filed: Aug 22, 2017Published: Mar 1, 2018
Est. expiryAug 25, 2036(~10.1 yrs left)· nominal 20-yr term from priority
B32B 2605/006B32B 2307/304B32B 2307/536B32B 27/304B32B 2250/02B32B 2307/732B32B 2307/712B32B 27/22B32B 2307/412B32B 2307/71B32B 2419/00B32B 2605/08B32B 2250/24B32B 27/08B32B 2264/107B32B 2250/03B29K 2027/06C08K 3/105C08K 5/098B29K 2995/0015B29K 2995/0026C08J 2327/06C08K 3/11C08K 2201/005B29C 49/4823C08K 5/103C08K 2003/324C01G 41/006C08K 3/34C08K 5/54C08K 5/12C08K 3/30C08K 5/02C08K 5/1515C08J 5/18C01D 17/00C08L 27/06C08K 5/56C08K 5/005C01D 17/003C08K 5/0016C08L 2201/08C08L 2201/10B32B 27/32C08K 2201/003C08J 2491/00C08L 2203/16C08F 14/06C08K 2201/011B29C 49/0006B29C 49/0691B29C 2049/4825
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Claims

Abstract

A heat-insulating transparent PVC sheet is formed from a PVC substrate having a thickness of 0.02-2.0 mm and contains heat-insulation pastes evenly distributed over the PVC substrate, since the heat-insulation paste contains an essential component of wolfram cesium powder (WCs) with a chemical formula of Cs X N Y WO 3-Z Cl C and having a particle size of 0.005-2 μm, the heat-insulating transparent PVC sheet has an excellent weatherability, and particularly before and after tested in 300-hour service life in line with ASTM G-154 specification, has a physical property of weatherability decay rate (%) small than 4%.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . A heat-insulating transparent polyvinyl chloride sheet, having a thickness of ranging from 0.02 mm to 2.0 mm, before and after tested in 300-hour service life in line with ASTM G-154 specification, having a physical property of weatherability decay rate (%) small than 4%, and formed from a PVC mixture including (a) 100 PHR of a polyvinyl chloride resin; (b) 0.1-60 PHR of a plasticizer; (c) 1-10 PHR of epoxidized soybean oil; (d) 0.1-10 PHR of a stabilizer; (e) 0.05-5.0 PHR of an ultraviolet absorber; (f) 0.05-0.2 PHR of a coupling agent; and (g) 5.5-7.5 PHR of a heat-insulation paste;
 wherein the heat-insulation paste has a particle size ranged from 40 nm to 110 nm and contains the following components summed up to 100 wt %:   (g1) a wolfram cesium powder (WCs) with a chemical formula of Cs X N Y WO 3-Z Cl C  of 10-18 wt %; where Cs is cesium; N is tin (Sn) or antimony (Sb) or bismuth (Bi); W is wolfram; O is oxygen; and X, Y, Z, C are all positive numbers, with the following relationship satisfied:
   X≦1.0;Y≦1.0;Y/X≦1.0;Z≦0.6; and C≦0.1;
 
   (g2) a dispersant of 2-5 wt %; and   (g3) a plasticizer of 77-88 wt %.   
     
     
         2 . The heat-insulating transparent polyvinyl chloride sheet as claimed in  claim 1 , wherein the wolfram cesium powder (WCs) having a particle size ranged from 0.005 μm to 2 μm. 
     
     
         3 . The heat-insulating transparent polyvinyl chloride sheet as claimed in  claim 1 , wherein the plasticizer is at least one selected from the group consisting of C9-C11 dialkyl phthalate, di-isononyl phthalate (DINP), di-2-ethylhexyl phthalate (DEHP), di-butyl phthalate (DBP), di-iso-decyl phthalate (DIDP), di-2-ethylhexyl terePhthalate (DOTP), di-isononyl adipate (DINA) or dioctyl adipate (DOA), tris (2-ethylhexyl) trimellitate (TOTM) 1,2-cyclohexanedicarboxylic acid diisononyl ester (DHIN) and bis(2-ethylhexyl) cyclohexane-1,2-dicarboxylate (DHEH). 
     
     
         4 . The heat-insulating transparent polyvinyl chloride sheet as claimed in  claim 1 , wherein the stabilizer is at least one selected from Ba—Zn stabilizers, Ca—Zn stabilizers or organic tin stabilizers. 
     
     
         5 . The heat-insulating transparent polyvinyl chloride sheet as claimed in  claim 1 , wherein the ultraviolet absorber is at least one selected from a hydroxy-phenyl benzotriazole ultraviolet absorber or a hydroxybenzophenone ultraviolet absorber. 
     
     
         6 . The heat-insulating transparent polyvinyl chloride sheet as claimed in  claim 1 , wherein the coupling agent is at least one selected from an organic silane compound coupling agent, an organic Zr—Al compound coupling agent or an organic titanium aluminide. 
     
     
         7 . The heat-insulating transparent polyvinyl chloride sheet as claimed in  claim 1 , wherein the dispersant is at least one selected from a polymeric co-polymer dispersant, a silicon-containing dispersant or a fluorine-containing dispersants. 
     
     
         8 . The heat-insulating transparent polyvinyl chloride sheet as claimed in  claim 1 , wherein the sheet is produced by the following steps:
 a) introducing the PVC mixture into a banbury mixer for kneading;   b) controlling the mixture temperature at 150-190° C., heating and shearing the mixture in a roller machine for well-gelation, and proceeding one of the following processes:
 b1) calendaring the mixture by a calendar to form a heat-melting sheet having a thickness of 0.05 mm-1.0 mm, drawing water at 20-85° C. therein for cooling, and entering step c) after dehydration; 
 b2) processing the mixture by a T-Die machine to form a heat-melting sheet of thickness of 0.05-2.0 mm, and entering step c) after forming; or 
 b3) processing the mixture by a blow-molding machine to form a heat-melting sheet of thickness of 0.02-0.8 mm, and entering step c) after forming; and 
   c) introducing the sheet into a cooling wheel for cooling and shaping, and then rolling up the sheet to obtain the heat-insulating transparent polyvinyl chloride sheet.   
     
     
         9 . A multi-layered heat-insulating transparent polyvinyl chloride sheet, formed from having two or more the heat-insulating transparent polyvinyl chloride sheets of  claim 1  stacked together. 
     
     
         10 . A complex-layered heat-insulating transparent polyvinyl chloride sheet, formed from laminating one layer of the heat-insulating transparent polyvinyl chloride sheets of  claim 1  with a plastic matrix together.

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