Method for manufacturing recyclable inorganic paper
11400622 · 2022-08-02
Assignee
Inventors
Cpc classification
B29C43/003
PERFORMING OPERATIONS; TRANSPORTING
B29K2103/08
PERFORMING OPERATIONS; TRANSPORTING
B29L2007/008
PERFORMING OPERATIONS; TRANSPORTING
C08J2367/04
CHEMISTRY; METALLURGY
C08K5/09
CHEMISTRY; METALLURGY
B29K2995/006
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C43/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method is provided for manufacturing recyclable inorganic paper, which has a composition comprising 60-85 wt % mixture of natural inorganic mineral powders, inorganic glass powders, and sand powders, 5-40 wt % bonding agent of polypropylene (PP), and 1-5 wt % assisting agents, through the following steps: feeding and mixing of the constituents of the composition; stirring and mixing the composition; pressing to cause bi-directional extension of the composition so as to form a sheet; subjecting the sheet to operation of a high density squeezing machine for further mixing and pressing the sheet; reversely turning and shaping the sheet for further extension of the sheet; and continuous compression and extension of the sheet to induce further bi-directional extension of the sheet in both lateral and longitudinal direction and to control thickness of the sheet.
Claims
1. A method for manufacturing recyclable inorganic paper, which has a composition comprising 60-85 wt % mixture of natural inorganic mineral powders, inorganic glass powders, and sand powder, 5-40 wt % bonding agent of polypropylene (PP), and 1-5 wt % assisting agents, wherein the composition of the paper does not need to be processed for formation of raw material mother particles and is directly deposited into a compression and extension paper making device, which comprises an automatic metering machine, an automatic stirring and mixing machine, a combined sheet forming machine, a high-density squeezing machine, a five-roller compression and extension machine, and a cooling and shaping machine, the method comprising the following steps: step one: the automatic metering machine performs automatic feeding and mixing of the constituents of the composition according to the ratios of the constituents to be supplied to the automatic stirring and mixing machine; step two: the automatic stirring and mixing machine performs continuous mixture and stirring of the composition to realize uniform mixture of the compositional constituents to obtain mixed composition; step three: the mixed composition is then directly fed to the combined sheet forming machine to be subjected to combined pressing so as to cause bi-directional extension of the compositional constituents and uniform rubbing and kneading to have the compositional constituents bonded in the form of a uniformly rubbed and kneaded sheet; step four: the uniformly rubbed and kneaded sheet is passed through the high density squeezing machine for further mixing and pressing the sheet; step five: the five-roller compression and extension machine is used for reversely turning and shaping the sheet and to realize bi-directional extension of the sheet in both lateral and longitudinal directions; and step six: the cooling and shaping machine is used to perform continuous compression and extension on the sheet to induce further bi-directional extension of the sheet in both lateral and longitudinal directions and to control a thickness of the sheet.
2. The method according to claim 1, wherein the compression and extension paper making device further comprises an automatic roll-winding machine and a trimming machine, wherein the sheet formed in step six is wound by using the automatic roll-winding machine and then trimmed to a planar piece of paper by the trimming machine.
3. The method according to claim 1, wherein the cooling and shaping machine of step six is adjustable for compression time according to the thickness of the paper.
4. The method according to claim 1, wherein the sheet formed in step six is further subjected to surface coating of an oil-based coating solution.
5. The method according to claim 1, wherein the sheet formed in step six is further subjected to surface coating of a water-based coating solution through use of a dual-side coating machine to deposit a non-coated paper sheet into an automatic leveling machine to have the sheet dragged and leveled for subsequent performance of corona treatment, wherein the two surfaces of the paper sheet, after being treated with high voltage discharging, form a plurality of voids, which help improving a bonding force for the coating applied to the surface; the paper sheet is conveyed to a front surface coating machine for initial coating, and then the paper sheet is conveyed to a dry baking oven to have the surfaces thereof dried for subsequent coating on the opposite surface; a back surface coating machine uses a plurality of spraying nozzles to control an amount of the coating solution sprayed and realize coating on the opposite surface; and the paper sheet is then conveyed to the dry baking oven to dry the coated surface, whereby under the condition of being heated, the coated surface of the paper sheet is dried and shows a shining face on the paper surface.
6. The method according to claim 1, wherein the bonding agent of polypropylene comprises a mixture of polypropylene, polyethylene, and polylactic acid.
7. The method according to claim 5, wherein the surface coating is carried out by applying one of thermal fusion coating, fluent spraying, flame spraying, plasma spraying, and electrostatic spraying.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(16) The following descriptions are exemplary embodiments only, and are not intended to limit the scope, applicability or configuration of the invention in any way. Rather, the following description provides a convenient illustration for implementing exemplary embodiments of the invention. Various changes to the described embodiments may be made in the function and arrangement of the elements described without departing from the scope of the invention as set forth in the appended claims.
(17) Referring to
(18) The composition of the inorganic paper does not need to be processed for formation of raw material mother particles and, instead, can be directly deposited into a compression and extension paper making device 10. (Trimmed residuals may also be directly fed back to the machine for compression and extension, so that no waste may be generated.) The compression and extension paper making device 10 comprises an automatic metering machine 11, an automatic stirring and mixing machine 12, a combined sheet forming machine 13, a high-density squeezing machine 14, a five-roller compression and extension machine 15, a cooling and shaping machine 16, an automatic roll-winding machine 17, and a trimming machine 18. The manufacturing method comprises the following steps:
(19) Step one: the automatic metering machine 11 performs automatic feeding and mixing of the constituents of the composition according to the ratios of the constituents to be then supplied to the automatic stirring and mixing machine 12;
(20) Step two: the automatic stirring and mixing machine 12 performs continuous mixture and stirring of the composition to realize uniform mixture of the compositional constituents;
(21) Step three: the well mixed composition is then directly fed to the combined sheet forming machine 13 to be subjected to combined pressing so as to cause bi-directional extension of the compositional constituents and uniform rubbing and kneading to form a sheet of the compositional constituents in a bonded condition;
(22) Step four: the uniformly rubbed and kneaded sheet is passed through the high density squeezing machine 14 for further mixing and pressing the sheet, so as to provide the sheet with proper hardness and proper tension;
(23) Step five: the five-roller compression and extension machine 15 is used for reversely turning and shaping the sheet and to realize bi-directional extension of the sheet in both lateral and longitudinal directions;
(24) Step six: the cooling and shaping machine 16 is used to perform continuous compression and extension on the sheet to induce further bi-directional extension of the sheet in both lateral and longitudinal direction and to control thickness of the sheet;
(25) Step seven: the roll-winding machine 17 is used to automatically roll the paper sheet up in the form of a paper roll; and
(26) Step eight: the trimming machine 18 is used to trim the paper sheet into a planar piece of paper of a desired size.
(27) As such, the composition of paper according to the present invention comprises 60-85 wt % natural inorganic mineral powders, inorganic glass powders, and sand powders, 15-40 wt % bonding agent of PP (which comprises a mixture of PLA or PP and PE) and 1-5 wt % assisting agents, whereby depending upon the assisting agents used, the paper can be biodegradable, which is decomposed in the nature by microorganisms into carbon dioxide and water, or photo-degradable, which can be decomposed by exposure to ultraviolet components contained in the sun light to have main chains of large molecules thereof broken, or oxidation decomposable, which is decomposed through oxidation of the constituent materials thereof with oxygen to form oxides. Thus, any disposed paper can be recycled for regeneration and only the constituent of PP, which is of a minor fraction, will be consumed in combustion, so as not to generate high temperature, smoke, and toxicant gases and to allow the residuals that are primarily the natural inorganic minerals, the inorganic glass powders, and the sand powders that are of a major fraction to return to the earth and the nature after combustion, making the present invention perfectly fit to the requirement of environmental protection. Further, the composition of the inorganic paper according to the present invention can be automatically fed and metered according to the ratios of the constituent components thereof and requiring no formation of particles, which leads to a reduction of cost for mixture of the components and formation of raw material mother particles.
(28) The five-roller compression and extension machine 15 used in the fifth step is operated by employing high temperature compression and extension and the temperature employed can be adjusted according to the characteristics of the composition formula of the desired inorganic paper so as to effectively realize melting, mixture, and bi-directional extension of the composition of inorganic paper. The cooling and shaping machine 16 used in the sixth step is adjustable for compression time according to the desired thickness and product property of the inorganic paper. In the previous process, if the desired form of final paper product is a paper roll, then the eighth step can be omitted.
(29) In an embodiment of the method for manufacturing recyclable inorganic paper according to the present invention, the composition of the paper comprises 73 wt % calcium carbonate, inorganic glass powder, and sand powder, 17 wt % PP, 7 wt % low density PE, 1 wt % coupling agent OL-T951, 1 wt % stearic acid, 1 wt % other assisting agents. All these constituents adding together are 100 wt %, and are subjected to mixture, squeezing, and compounding, and then deposited into the compression and extension paper making device 10 for manufacture of recyclable paper sheets of a thickness of 0.1 mm according to the desired product thickness.
(30) In another embodiment of the method for manufacturing recyclable inorganic paper according to the present invention, the composition of the paper comprises 72 wt % talcum powder, inorganic glass powder, and sand powder, 17 wt % PP, 8 wt % low density PE, 1 wt % coupling agent NDZ-101, 1 wt % calcium stearate, 1 wt % other assisting agents.
(31) The above constituents adding together are 100 wt %, and are subjected to mixture, squeezing, and compounding, and then deposited into the compression and extension paper making device 10 for manufacture of recyclable paper sheets of a thickness of 0.2 mm according to the desired product thickness.
(32) In a further embodiment of the method for manufacturing recyclable inorganic paper according to the present invention, the composition of the paper comprises 70 wt % nanometer calcium carbonate, inorganic glass powder, and sand powder, 15 wt % PP, 5 wt % low density PE, 5 wt % dispersing agent, 1 wt % calcium stearate, 4 wt % other assisting agents.
(33) All these constituents adding together are 100 wt %, and are subjected to mixture, squeezing, and compounding, and then deposited into the compression and extension paper making device for manufacture of recyclable paper sheets of a thickness of 0.3 mm according to the desired product thickness.
(34) Further, according to paper thickness and property, the inorganic paper made according to the method of the present invention can be used, after further and proper processing, to make monthly calendar, almanac, hanging scroll, map, notebook, instruction leaflet, business log, letter paper, book, commercial marks, poster, label, various hand-carrying bags, wrapping paper, art and craft material, wall paper, surface cover for woven bag, release paper, heat-sealing package bag, backing adhesive label paper, surface bonding material, atlas, self-adhesive mark, surface bonding material for plastic tablet, shopping bag, various hand bags, wall paper, newspaper and loose leaf paper, notebook, book, desk calendar, envelope, shinning paper, instruction leaflet, education material, festival and celebration card, three-dimensional cards, playing cards, business card, name plate, hanging card, painting, book cover, various package boxes, shoe box, cigarette box, tea leaf box, meal pad, window curtain, hanging plate, frozen foodstuff plate for food package, disposable dining utensil, meal box, sun shade for automobile, art lantern decoration, frozen commodity indication plate for convenience stores, three-dimensional paper sculpture, coupon, scoring card, product catalog, cup coaster, plastic floor tile, large-sized advertisement, lantern box advertisement, as well as paper for culture purposes, such as paper for culture purposes, paper for printing, paper for writing, and paper for computer character making, and paper for decoration purposes and paper for packaging purposes. The paper can be used directly and further processing is performed to make a coating on a surface of the paper to form a frosted surface or a shining surface.
(35) Referring to
(36) It will be understood that each of the elements described above, or two or more together may also find a useful application in other types of methods differing from the type described above.
(37) While certain novel features of this invention have been shown and described and are pointed out in the annexed claim, it is not intended to be limited to the details above, since it will be understood that various omissions, modifications, substitutions and changes in the forms and details of the device illustrated and in its operation can be made by those skilled in the art without departing in any way from the spirit of the present invention.