Patent classifications
B32B38/0004
Tamper evident label for items
A liner-label combination is provided for a tamper evident label. The combination includes a label substrate and a liner substrate. The label substrate includes label substrate die cuts that define a top portion, a middle portion, and a bottom portion for the label. The liner substrate includes liner substrate die cuts that correspond to the middle portion of the label. The top portion, middle portion, and bottom portion adapted to be separated from the liner substrate as a single label with a backside of the middle portion including the corresponding liner substrate defined by the liner substrate die cuts. The middle portion of the label adapted to cover an opening of an item and when removed from the opening, the middle portion separates from the top portion and the bottom portion along the label substrate die cuts providing evidence that the opening to the item was exposed.
MATTRESS
To provide a mattress which can be used comfortably with good quality by distributing airflow inside. A mattress comprises a breathable elastic layer, a non-breathable covering layer covering the elastic layer, a ventilation portion that is not covered by the covering layer, and a ventilation mechanism. The covering layer is a coating film that is integrated with the elastic layer and covers the surface thereof. In the mattress air supplied to the elastic layer is discharged from the ventilation portion or air supplied to the ventilation portion is discharged from the elastic layer by the ventilation mechanism.
Scent Window Sniffer Card
The present invention is drawn to an innovative scent and freshener device and a method of manufacturing the device comprising a layered stack having a pull tab aperture for release of the fragrance. The scent composition is encapsulated thus preventing leakage and the scent remains pure and uncompromised. A scent sniff window card may hold one fragrance or multiple fragrances. The scent window sniff card is streamlined and uses minimal parts thus reducing manufacturing costs and landfill waste.
SLAB PROCESSING MACHINE FOR SIDE EDGE LAMINATION AND RELATED METHOD
A slab processing machine includes a work table, a machining head and drive mechanism. A controller operates the machining head to mill a section of the rough side opposite the finished face of the slab that is positioned upside down on vacuum pods on the work table using a milling wheel received within the machining head, corresponding to side edge areas of a finished cut slab and lamination strips configured to build up the side edge areas of the finished cut slab. The machining head cuts the slab using a circular saw blade that had been switched out and received within the machining head into a final geometrical form for the finished cut slab and into the lamination strips.
Structural adhesive tape and method of manufacturing the same
Disclosed are a structural adhesive tape in which a mesh layer is located on one side or both sides of an adhesive layer, and a method of manufacturing the same. The mesh layer having a specific specification may be used and an adhesive layer including an epoxy resin with a solid phase and a liquid phase and a flame retardant plasticizer may be used introduced so that a tape sagging phenomenon can be solved while minimizing degradation in adhesive strength. In addition, the mesh layer may be used so that a usage temperature range may be extended from a range ranging from about 5 C. to about 35 C. to a range ranging from about 0 C. to about 40 C., and thus workability in high and low temperature ranges may be improved such that tape workability can be improved even in overseas factories with poor temperature conditions.
Method of Making Mouse Pad
A method of making a mouse pad contains: bonding and hot-press molding a body and a cloth by using a first mold and a second mold. The body is made of polyurethane (PU), the second mold includes a cavity, and a size of the cavity of the second mold is equal to a predetermined size of the body, and a guide rib surrounds the cavity. The method comprising steps of: 1) flattening the body; 2) bonding the cloth on the body; 3) cutting the body in a predetermined; 4) hot-press molding the body and the cloth; 5) sublimation printing; and 6) hot-press molding to trim the mouse pad by using the first mold and of the guide rib the second mold.
Processing method, laminator system, laminator, post-processing apparatus, and recording medium
A processing method includes, collectively performing laminate processing with a long laminate film on a plurality of continuously conveyed flat cut sheets; cutting the long laminate film after the laminate processing for each flat cut sheet and obtaining a laminated flat cut sheet; and performing post-processing on the laminated flat cut sheet. An end portion of the laminated flat cut sheet as a reference of the post-processing is the end portion on a side where the laminate film does not protrude from the end portion of each laminated flat cut sheet.
GYPSUM BOARDS PREPARED USING ECO-FRIENDLY DISPERSANTS AND RELATED SLURRIES AND METHODS
Disclosed are gypsum slurries, gypsum boards, and methods of preparing gypsum board using a high-efficiency lignosulfonate dispersant. The high-efficiency lignosulfonate surprisingly and unexpectedly allows for enhancing the fluidity of the gypsum slurry without requiring the presence of dispersants that are biologically detrimental (including to human and environmental health), or are prepared using harmful materials such as aldehydes (e.g., formaldehyde). In embodiments, the presence of the high-efficiency lignosulfonate allows for excluding a synthetic dispersant such as polynapthalene sulfonate (PNS) or melamine sulfonate.
Controlling adhesives between substrates and carriers
Controlling adhesives between substrates and carriers includes forming a depression into a bonding area of a backside surface of a substrate of a print head where the bonding area being formed proximate an ink feed slot formed through the thickness of the substrate from the backside surface to a front side surface; placing an adhesive between the bonding area and a substrate carrier, and moving the substrate and the substrate carrier together such that the adhesive flows into the depression.
CRYSTAL BLOCK ARRAY AND METHOD OF MANUFACTURE
A novel method of making a crystal block array (configured for coupling with photodetectors as part of an integrated detector module useful in advanced PET scanner systems) is disclosed herein. The novel method comprises a series of cutting, polishing, and assembling steps that utilize reflective sheet material. The crystal block arrays disclosed herein may be of various dimensions and geometries and are amenable to mass production.