序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
101 Method of making gaskets US3697348D 1969-07-09 US3697348A 1972-10-10 FARNAM ROBERT G
A GASKET HAVING IMPROVED SEALING PROPERTIES AND THE METHOD OF FORMING SUCH A GASKET WHEREIN A CONTINUOUS STRIP OR WEB OF GASKET MATERIAL IS WOUND ON A CORE WITH THE CORE HAVING A CROSS-SECTIONAL CINFIGURATION CORRESSPONDING TO THE INTERNAL CONFIGURGATION OF TH GASKET BEING MADE. THE WEB MATERIAL IS WOUND UPON ITSELF AND, IN THE PREFERRED EMBODIMENT, HAS A SERIES OF INTERMEDIATE BONDING LAYERS OF A FLUID-IMPERMEABLE POLYMER MATERIAL WHICH IN THE END PRODUCT FORM A PLURLITY OF PARAQLLEL FLUID BARRIERS TO PRODUCE EFFECTIVE SEALING. THE WINDING OF THE WEB MATERIAL ON THE CORE AND THE APPLICATION OF THE POLYMER MATERIAL TO THE WEB PROVIDES A TUBE WHICH IS THEN CUT INTO PRESELECTED THICKNESS TO PROVIDE INDIVIDUAL GASKETS. ADDITIONAL POLYMER MATERIAL MAY BE PROVIDED ON THE CUT OR EXPOSED SURFACES OF THE GASKET OF DESIRED.THE CROSS-SECTIONAL THICKNESS OF TH GASKET IS DICATED SOLELY BY THE CONVOLUTE GASKET MATERIAL AND THE POLYMER MATERIAL LAYER ON LAYERS. ONE ASPECT OF THE GASKET MATERIAL WHICH IS TO BE WOUND ON THE CORE WITH THE BASE MATERIAL HAVING APPLIED TO ONE OR BOTH SIDES THEREOF AN ADHESIVE COATING WHICH HAS BEEN DRIED, AT LEAST TO THE EXTENT THAT IT WILL NOT ADHERE OR COHERE TO ITSELF WHEN ROLLED UPON ITSELF, BEFORE THE TUBE IN FORMED.

D R A W I N G
102 Hot melt applicator system US3568636D 1968-05-15 US3568636A 1971-03-09 LOCKWOOD GLYNN H
A liquid such as hot melt adhesive is supplied at a controlled superatmospheric pressure to the wheel chamber of a wheel-type applicator. The wheel chamber is so formed that liquid can overflow only by passing through a narrow annular channel between the working face of the wheel where it enters the chamber and an opposing chamber wall. Wheel rotation produces shearing action in the liquid in that channel, raising the pressure in the main body of the chamber. As the channel fills, that shear pressure exceeds the controlled supply pressure, positively preventing overflow during wheel rotation. The controlled supply pressure may be obtained by passing the liquid through an accumulator in which a controlled pressure is maintained by a pressure regulating valve, that pressure being automatically relieved when the wheel stops. Alternatively, liquid may be supplied to the wheel chamber via two valves that are driven with the wheel to open alternately, thus terminating supply in absence of wheel rotation. Another aspect of the invention provides a narrow annular channel at the wheel surface between the liquid inlet to the wheel chamber and the doctor blade or equivalent. Wheel rotation then produces at the doctor device a pressure that is higher than the supply pressure. Such enhanced pressure is especially useful with a wheel of intaglio type.
103 Apparatus for applying pressure-sensitive adhesive to sheet material US77561258 1958-11-21 US2965066A 1960-12-20 PAULSEN HANS C
104 Heating and conveying mechanism US19609038 1938-03-15 US2284641A 1942-06-02 COX JR HERBERT F; HILL HOWARD M
105 Machine for coating continuous strips of paper US409892D US409892A 1889-08-27
106 Improvement in apparatus for coating fabrics with plastic compositions US176019D US176019A 1876-04-11
107 VACUUM ENABLED ARTICLE TRANSFER US15835335 2017-12-07 US20180100087A1 2018-04-12 Chia-Hung Hsieh; Chun-Ta Huang; Chiung-Lung Lin
Moving an article after a material, such as a hot-melt adhesive, has been applied to a surface of the article is accomplished with an article transfer apparatus. The apparatus is comprised of a belt having a plurality of apertures extending there through that are effective to communicate a vacuum pressure from an inner surface of the belt to a contacting surface of the belt. The vacuum pressure secures and adheres the article to the contacting surface of the belt as the belt conveys the article. The vacuum pressure is distributed along the inner surface of the belt by a vacuum chamber, which is between a compression roller and a second roller.
108 Arrangement for producing an electrically conductive pattern on a surface US15146006 2016-05-04 US09862000B2 2018-01-09 Petri Sirviö; Juha Maijala
A method and an arrangement are disclosed for producing an electrically conductive pattern on a surface. Electrically conductive solid particles are transferred onto an area of predetermined form on a surface of a substrate. The electrically conductive solid particles are heated to a temperature that is higher than a characteristic melting point of the electrically conductive solid particles, thus creating a melt. The melt is pressed against the substrate in a nip, wherein a surface temperature of a portion of the nip that comes against the melt is lower than said characteristic melting point.
109 Application Unit US15396763 2017-01-02 US20170144184A1 2017-05-25 Marcus Pfeifle; Tobias Popp
An apparatus and a method for applying a liquid active substance onto surfaces moving in a circulating manner, including a metering unit with a pipe system and an application unit. The active substance is conducted to the application unit by the metering unit, and the application unit has a pad with an open-pore mesh structure for receiving and storing the active substance and for applying the active substance onto a moving surface as a film as a function of the degree of saturation and the contact pressure of the pad on the moving surface. Brackets fix the pad in a working position when pushed together and are capable of being pulled apart to exchange the pad. Also, the use of the apparatus for keeping the moving surfaces free from deposits, accumulations or contaminants.
110 Apparatus wtih pad having a fabric structure to apply a liquid US13821639 2011-09-08 US09555435B2 2017-01-31 Marcus Pfeifle; Tobias Popp
An apparatus and a method for applying a liquid active substance to surfaces moving in a circulating manner, such as of cylinders, rolls, fabrics or other moving webs, consisting of a metering unit and an application unit. The active substance is conducted to the application unit by the metering unit, and the application unit has a pad with an open-pore mesh structure for receiving and storing the active substance and for applying the active substance as a film as a function of the degree of saturation and the contact pressure of the pad on the moving surface. Also, the use of the apparatus for keeping moving surfaces free from deposits, accumulations or contaminants.
111 Substrate transport roller US14432601 2013-11-25 US09550202B2 2017-01-24 Naoki Ohba; Hiroshi Tamagaki
Provided is a substrate transport roller (2a) capable of ensuring a broad temperature-control region on a substrate, without reducing substrate transport quality. This substrate transport roller (2a) is provided in a film-forming device (1) for executing a film-forming process on the surface of a film substrate (W), transports the film substrate (W) by rotating around a center axis, and is equipped with: a center-section segment (13a) positioned in the center section in the axial direction extending along the center axis, and having a first outer-circumferential surface; end-section segments (12a, 12b) positioned on both sides on the outside in the axial direction of the center-section segment (13a), and each having a second outer-circumferential surface which contacts the substrate (W) and has a larger diameter than that of the first outer-circumferential surface; a center-section-rising-falling-temperature-medium mechanism for changing the temperature of the center-section segment (13a); and a both-end-section-rising-falling-temperature mechanism for changing the temperature of each of the end-section segments (12a, 12b) independently from the center-section segment (13a).
112 Method for producing an electrically conductive pattern on a surface US14375680 2013-01-30 US09352351B2 2016-05-31 Petri Sirviö; Juha Maijala
A method and an arrangement are disclosed for producing an electrically conductive pattern on a surface. Electrically conductive solid particles are transferred onto an area of predetermined form on a surface of a substrate. The electrically conductive solid particles are heated to a temperature that is higher than a characteristic melting point of the electrically conductive solid particles, thus creating a melt. The melt is pressed against the substrate in a nip, wherein a surface temperature of a portion of the nip that comes against the melt is lower than said characteristic melting point.
113 UNIT FOR SPREADING AN ADHESIVE ONTO A MOVING FILM US14780063 2014-03-20 US20160038963A1 2016-02-11 Antonio CERCIELLO
A unit for spreading an adhesive onto a moving film, includes at least one pair of abutments (11) upon which is mounted a first pick-up roller (12) for collecting a quantity of adhesive from a collection zone (13), a second roller (14) that rotates in contact with the first roller (12), intended to receive the quantity of adhesive, and a third roller (15) that rotates in contact with the second roller (14), wherein the abutments include at least one fixed portion (19) and one moving portion (20, 21) that can be firmly connected to the fixed portion, the moving portion being configured: to house a tank (17) in which the adhesive collection zone is found, or to house an additional fourth roller (18) positioned at a given distance from the first roller, the collection zone being located in the upper space between the first and the fourth roller (12, 18).
114 Vacuum Enabled Article Transfer US14463115 2014-08-19 US20160031651A1 2016-02-04 Chia-Hung Hsieh; Chun-Ta Huang; Chiung-Lung Lin
Moving an article after a material, such as a hot-melt adhesive, has been applied to a surface of the article is accomplished with an article transfer apparatus. The apparatus is comprised of a belt having a plurality of apertures extending there through that are effective to communicate a vacuum pressure from an inner surface of the belt to a contacting surface of the belt. The vacuum pressure secures and adheres the article to the contacting surface of the belt as the belt conveys the article. The vacuum pressure is distributed along the inner surface of the belt by a vacuum chamber, which is between a compression roller and a second roller.
115 SUBSTRATE TRANSPORT ROLLER US14432601 2013-11-25 US20150238995A1 2015-08-27 Naoki Ohba; Hiroshi Tamagaki
Provided is a substrate transport roller (2a) capable of ensuring a broad temperature-control region on a substrate, without reducing substrate transport quality. This substrate transport roller (2a) is provided in a film-forming device (1) for executing a film-forming process on the surface of a film substrate (W), transports the film substrate (W) by rotating around a center axis, and is equipped with: a center-section segment (13a) positioned in the center section in the axial direction extending along the center axis, and having a first outer-circumferential surface; end-section segments (12a, 12b) positioned on both sides on the outside in the axial direction of the center-section segment (13a), and each having a second outer-circumferential surface which contacts the substrate (W) and has a larger diameter than that of the first outer-circumferential surface; a center-section-rising-falling-temperature-medium mechanism for changing the temperature of the center-section segment (13a); and a both-end-section-rising-falling-temperature mechanism for changing the temperature of each of the end-section segments (12a, 12b) independently from the center-section segment (13a).
116 Coating and curing apparatus and methods US14138542 2013-12-23 US08960123B2 2015-02-24 Brenor L. Brophy; Sina Maghsoodi; Patrick J. Neyman; Peter R. Gonsalves; Jeffrey G. Hirsch; Yu S. Yang
Disclosed are coating apparatus including flow coating and roll-coating that may be used for uniform sol-gel coating of substrates such as glass, solar panels, windows or part of an electronic display. Also disclosed are methods for substrate preparation, flow coating and roll coating. Lastly systems and methods for skin curing sol-gel coatings deposited onto the surface of glass substrates using a high temperature air-knife are disclosed.
117 Coated board of wood-based material and a method of producing same US13616070 2012-09-14 US08865267B2 2014-10-21 Dieter Döhring; Hans Schäfer; Udo Hanitzsch
A method for coating a board of wood-based material, comprising the steps of providing a board of wood-based material; applying a first liquid coating; applying at least a second liquid coating onto the still wet first coating, so that a partial mixture of the coatings takes place; curing the applied coatings by means of radiation, wherein the coatings are selected so that the cured resultant coating has a hardness gradient wherein the hardness of the resultant coating decreases with increasing depth viewed from the surface of the resultant coating.
118 Rotary Applicator US14147157 2014-01-03 US20140120259A1 2014-05-01 Bernard Lasko
Induction heating of a pattern perforated rotating cylinder susceptor is utilized to melt and apply thermoplastic materials to a substrate.
119 Coating device comprising flowing coating material for smooth or structured surfaces US12094214 2005-11-24 US08191500B2 2012-06-05 Dieter Döhring; Udo Hanitzsch; Gary Blenkhorn
The invention relates to a device for coating plates (6) in circulation. Said device comprises a transport system for transporting plates (6) and a feeding device (5) which can apply the coating material (8) to the surface of the plates. Means (7) for drying and/or hardening the coating material are provided next to the feeding device and above the plates. Contrary to state of the art devices, said inventive device comprises means which enable a material web (3) to pass between the transport elements for the transport of plates and means (7) for drying and/or hardening.
120 METHOD FOR PRINTING DIRECTLY ONTO BOARDS OF WOOD-BASED MATERIAL US12516084 2007-11-22 US20100212818A1 2010-08-26 Dieter Döhring; Hans Schäfer; Udo Hanitzsch; Gary P. Blenkhorn
The present invention relates to a method for coating a board of wood-based material, in particular a board of real wood, a plywood board or a board for parquet flooring, with a flowable plastics material. The method comprises applying the plastics material as a single, thick layer to the board of wood-based material (6) and creating an impressed structure by means of a material web (3) or a structure roller. After creating the impressed structure, the plastics material is cured to produce a wear-resistant surface.
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