Patent classifications
D06C15/10
WOVEN CLOTH AND METHOD ABLE TO INTEGRALLY FORM A THREE-DIMENSIONAL PATTERN ON THE WOVEN CLOTH AND ITS FINISHED PRODUCT
A kind of woven cloth and a method able to integrally form a three-dimensional pattern on the woven cloth and its finished product in the present invention is to prepare a kind of woven cloth composed of lots yarns, and each yarn is made from several monofilaments, which respectively have an outer circumference coated with a thermoplastic polymer layer. After the woven cloth is hot pressed in a mold that is preformed with a three-dimensional pattern, the woven cloth will produce a corresponding three-dimensional pattern through compressing or hot melting of the thermoplastic polymer layer. Through above-mentioned method, the woven cloth can be integrally formed with a three-dimensional pattern, able to simplify manufacturing process, lower cost, increase strength and avoid disengaging and breaking apart of the woven cloth and able to be produced fully automatically.
Heat Press
A heat press including a body, a heat plate, a handle, a cover, a control compartment and an insulation portion. The body includes a first end and a second end. The heat plate is located proximate the first end of the body and is configured to engage ironable materials. The handle is located proximate the second end of the body and is configured to withstand forces from a user. The cover covers a portion of the body and the handle. The control compartment includes an electrical circuit, controls and a display. The control compartment is spaced away from and is at least indirectly electrically coupled to the heat plate. The insulation portion is positioned between the control compartment and the heat plate. The insulation portion includes a first layer of insulating material.
Heat press
A heat press including a body, a heat plate, a handle, a cover, a control compartment and an insulation portion. The body includes a first end and a second end. The heat plate is located proximate the first end of the body and is configured to engage ironable materials. The handle is located proximate the second end of the body and is configured to withstand forces from a user. The cover covers a portion of the body and the handle. The control compartment includes an electrical circuit, controls and a display. The control compartment is spaced away from and is at least indirectly electrically coupled to the heat plate. The insulation portion is positioned between the control compartment and the heat plate. The insulation portion includes a first layer of insulating material.
PRETREATMENT DEVICE AND PRETREATMENT INFORMATION SETTING METHOD
A pretreatment device includes a pretreatment portion, a reception portion, a processor and a memory. The pretreatment portion performs a pretreatment on a recording medium. The reception portion receives recording medium information that the recording medium has. The memory stores computer-readable instructions that, when executed by the processor, perform processes including: setting, for the pretreatment portion, pretreatment information relating to the pretreatment, on the basis of the recording medium information received by the reception portion; and causing the pretreatment portion to perform the pretreatment on the basis of the set pretreatment information.
PRETREATMENT DEVICE AND PRETREATMENT INFORMATION SETTING METHOD
A pretreatment device includes a pretreatment portion, a reception portion, a processor and a memory. The pretreatment portion performs a pretreatment on a recording medium. The reception portion receives recording medium information that the recording medium has. The memory stores computer-readable instructions that, when executed by the processor, perform processes including: setting, for the pretreatment portion, pretreatment information relating to the pretreatment, on the basis of the recording medium information received by the reception portion; and causing the pretreatment portion to perform the pretreatment on the basis of the set pretreatment information.
PRETREATMENT DEVICE
A guide guides a movement of a platen from a set position P1 at which a recording medium is set on the platen to a press position P3 at which a heat press portion performs heat press operation on the recording medium. A distance from the set position P1 to the press position P3 is longer than a distance from the set position P1 to an application position P2 at which an application portion applies a pretreatment agent onto the recording medium set on the platen.
PRETREATMENT DEVICE
A guide guides a movement of a platen from a set position P1 at which a recording medium is set on the platen to a press position P3 at which a heat press portion performs heat press operation on the recording medium. A distance from the set position P1 to the press position P3 is longer than a distance from the set position P1 to an application position P2 at which an application portion applies a pretreatment agent onto the recording medium set on the platen.
METHOD FOR APPLYING A PATTERN TO A PLUSH SYNTHETIC FABRIC USING A HOT PRESS TECHNIQUE
A method based on a hot press technique is used to apply a permanent pattern onto a plush synthetic fabric having a pile. The method generally involves mounting one or more top plates and one or more bottom plates onto a hot press machine, where at least one of the top or bottom plates has a raised relief pattern on its surface. The temperature of the plates is set to at least 180 C. and the top and bottom plates are then pressed together against opposite sides of a plush synthetic fabric having a pile on at least one side, the raised relief pattern engaging the side of the fabric having the pile such that the pattern of the relief is imprinted into the pile.
GAS DIFFUSION ELECTRODE SUBSTRATE AND METHOD FOR MANUFACTURING SAME, GAS DIFFUSION ELECTRODE, MEMBRANE ELECTRODE ASSEMBLY, AND POLYMER ELECTROLYTE FUEL CELL
An object of the present invention is to provide a gas diffusion electrode substrate that can facilitate both the supply of a reaction gas to a gas diffusion electrode and discharge of water as a reaction product. The present invention provides a gas diffusion electrode substrate including a carbon fiber nonwoven fabric having 30/cm.sup.2 to 5000/cm.sup.2 discontinuous protrusions dispersedly formed on at least one surface thereof, and a water repellent imparted to the carbon fiber nonwoven fabric.
GAS DIFFUSION ELECTRODE SUBSTRATE AND METHOD FOR MANUFACTURING SAME, GAS DIFFUSION ELECTRODE, MEMBRANE ELECTRODE ASSEMBLY, AND POLYMER ELECTROLYTE FUEL CELL
An object of the present invention is to provide a gas diffusion electrode substrate that can facilitate both the supply of a reaction gas to a gas diffusion electrode and discharge of water as a reaction product. The present invention provides a gas diffusion electrode substrate including a carbon fiber nonwoven fabric having 30/cm.sup.2 to 5000/cm.sup.2 discontinuous protrusions dispersedly formed on at least one surface thereof, and a water repellent imparted to the carbon fiber nonwoven fabric.