Abstract:
The object of the present invention is to overcome a practical restriction that a knit must be used on a surface of a sealing tape when the sealing tape is used for a textile product obtained by subjecting a fabric laminated product to sewing-processing or fusion process as well as providing a sealing tape which is excellent in durability, light-weighted and thin, and highly comfortable without undermining appearance and touch feeling. The sealing tape of the present invention comprises a base film and a woven fabric laminated on one side of the base film and an adhesive layer laminated on the other side of the base film, wherein a total cover factor (CF total ) of calculated with respect to each of the warp and the weft constituting the woven fabric is from 500 to 1400. CF total = CF m + CF t CF m : cover factor of the warp CF t : cover factor of the weft
Abstract:
An apparatus and system for using magnetic fields to heat magnetically susceptible materials within and/or adjacent to adhesives, resins, or composites so as to reversibly or irreversibly bond, bind, or fasten opaque or non-opaque solid materials to one another. The system makes use of the effect that alternating magnetic fields induce eddy currents and generate heat within susceptors, and the effect that alternating magnetic fields additionally induce magnetic hysteresis that occurs in magnetic materials and thereby generate heat. An induction heating tool is used to emit the magnetic field at its work coil, and an electronic controller measures the energy being used by a power converter that generates the alternating current driving the work coil which creates the magnetic field. The distance between the susceptor and work coil is repeatedly analyzed based upon the power converter's input energy, and the work coil is driven at a repeatedly corrected power level during the heating cycle. Once a sufficient accumulated energy has been delivered to the susceptor, the magnetic field is turned off automatically by the tool, thus preventing overheating of the susceptor.
Abstract:
The object of the present invention is to overcome a practical restriction that a knit must be used on a surface of a sealing tape when the sealing tape is used for a textile product obtained by subjecting a fabric laminated product to sewing-processing or fusion process as well as providing a sealing tape which is excellent in durability, light-weighted and thin, and highly comfortable without undermining appearance and touch feeling. The sealing tape of the present invention comprises a base film and a woven fabric laminated on one side of the base film and an adhesive layer laminated on the other side of the base film, wherein a total cover factor (CF total ) of calculated with respect to each of the warp and the weft constituting the woven fabric is from 500 to 1400. CF total = CF m + CF t CF m : cover factor of the warp CF t : cover factor of the weft
Abstract translation:本发明的目的是克服当将密封带用于通过将织物层压产品进行缝合加工或熔合处理而获得的纺织品时,必须在密封带的表面上使用编织物的实际限制 以及提供耐用性优异,重量轻,薄且高度舒适而不破坏外观和触感的密封带。 本发明的密封带包括层压在基膜的一侧上的基膜和织布,以及层压在基膜的另一侧的粘合层,其中总覆盖系数(CF total)相对于 构成织物的经纱和纬纱各自为500〜1400。CF total = CF m + CF t CF m:经纱的覆盖系数CF t:纬纱的覆盖系数
Abstract:
A fabric batting tape (10) that is utilized to fuse two pieces of material (24, 28) together. The fabric batting tape (10) is comprised of a knitted fabric strip (12) having an upper surface (14) and a lower surface (16), and a hot-melt adhesive (22) that is located on the lower surface (16). The two pieces of material (24, 28) are placed together, with a side edge (26) of one piece of the material (24) abutting a side edge (30) of the other piece (28). A length of the knitted fabric strip (12) is placed on top of the two pieces of material (24, 28) with the adhesive lower surface (16) contacting the upper surfaces of the two pieces of material. When heat and pressure are applied via a heating element to the fabric strip (12), the heat activates the adhesive thereby creating a secure permanent fuse which maintains the two pieces of material (24, 28) together along with the knitted fabric strip (12).
Abstract:
A manually operated floor grooving tool (10) is provided which has opposing front (22) and rear (24) ends with a seam-following roller (30) at its front end (22) and a groove-following roller (70) at its rear end (24). The tool (10) also employs a pair of grooving blades (44,44'), one (44) at the front end (22) and one (44') at the rear end (24). The front grooving blade (44) is inclined upwardly and rearwardly with its cutting tip (48) located just behind the forward axis of rotation (34) of the seam-following guide (42). The rear-end grooving blade (44'), on the other hand, projects rearwardly from the rear end (24) of the tool (10) and is inclined upwardly and forwardly and behind the groove-following roller (70). The front-end grooving blade (44) is utilized to form a groove (12) along abutting sections of flooring (14,16) with the seam-following guide (30) following the seam (18) between the abutting sections (14,16) and with the groove following guide (70) traveling in the groove (12) formed by the front-end grooving blade (44). At a vertical abutment (103), such as a wall or a cabinet, the orientation of the tool (10) is reserved so that the rear-end grooving blade (44') is directed toward the vertical abutment (103). Since the rear-end grooving blade (44') projects beyond the end of the tool (10) in which it is secured, it can complete the formation of the groove (12) all the way up to the vertical abutment (103). The groove (12) is thereafter filled with sealant in a conventional manner. The tool (10) and blades (44,44') of the invention can also be utilized to create curved grooves (212) in a flooring surface which are later filled with sealant to form decorative patterns.
Abstract:
Die vorliegende Erfindung betrifft ein Verfahren und einen fahrbaren Schweißapparat (21) zum thermischen Verbinden von jeweils zwei Materialbahnen (MB1, MB2) über ein flächig auf einer Unterseite (UVS) liegendes Verbindungsstück (VS), wobei die Materialbahnen (MB1, MB2) mit jeweils einer einander zugewandten Seitenfläche aneinander stoßend zumindest teilweise mit einer jeweiligen Unterseite (US1, US2) auf einer Oberseite (OVS) des Verbindungsstücks (VS) flächig aufliegend angeordnet sind. Insbesondere können die beiden Materialbahnen (MB1, MB2) und das Verbindungsstück (VS) in einem Zug miteinander verbunden werden.
Abstract:
The object of the present invention is to overcome a practical restriction that a knit must be used on a surface of a sealing tape when the sealing tape is used for a textile product obtained by subjecting a fabric laminated product to sewing-processing or fusion process as well as providing a sealing tape which is excellent in durability, light-weighted and thin, and highly comfortable without undermining appearance and touch feeling. The sealing tape of the present invention comprises a base film and a woven fabric laminated on one side of the base film and an adhesive layer laminated on the other side of the base film, wherein a total cover factor (CF total ) of calculated with respect to each of the warp and the weft constituting the woven fabric is from 500 to 1400. CF total = CF m + CF t CF m : cover factor of the warp CF t : cover factor of the weft
Abstract:
An apparatus and system for using magnetic fields to heat magnetically susceptible materials within and/or adjacent to adhesives, resins, or composites so as to reversibly or irreversibly bond, bind, or fasten opaque or non-opaque solid materials to one another. The system makes use of the effect that alternating magnetic fields induce eddy currents and generate heat within susceptors, and the effect that alternating magnetic fields additionally induce magnetic hysteresis that occurs in magnetic materials and thereby generate heat. An induction heating tool is used to emit the magnetic field at its work coil, and an electronic controller measures the energy being used by a power converter that generates the alternating current driving the work coil which creates the magnetic field. The distance between the susceptor and work coil is repeatedly analyzed based upon the power converter's input energy, and the work coil is driven at a repeatedly corrected power level during the heating cycle. Once a sufficient accumulated energy has been delivered to the susceptor, the magnetic field is turned off automatically by the tool, thus preventing overheating of the susceptor.
Abstract:
An improved method of seaming to bond carpet strips (3) and a composite adhesive tape used for this purpose comprising a substrate layer (1), and a hot-melt type adhesive layer (20,22,22A) containing therein a high frequency inductor powder (20A,22). Alternatively provided is a composite adhesive tape comprising a substrate layer (1) an electrically conductive metal foil (21,21A) extending over said substrate layer (1) and a hot-melt type adhesive layer (20,22,22A) coated over said metal foil (21,21A).Induction heat is generated (4) from the conductive powder (20A,22) or the electrically conductive metal foil (21,21A) to melt the hot-melt type adhesive layer (20,22,22A) so that the carpet strips (3) are bonded together. Further provided is a composite adhesive tape having a tackifier layer (7,7A) extending substantially parallel to said adhesive layer (20,22,22A) for tacking either one of said carpet strip (3) temporarily in position.
Abstract:
Die vorliegende Erfindung betrifft eine Heizvorrichtung (1), ein Verfahren und einen fahrbaren Schweißapparat zum thermischen Verbinden von jeweils zwei Materialbahnen (MB1, MB2, in Abbildung 10) über ein Verbindungsstück (VS), wobei die Materialbahnen mit jeweils einer einander zugewandten Seitenfläche aneinander stoßend zumindest teilweise mit einer jeweiligen Unterseite (US1, US2) auf einer Oberseite (OVS) des Verbindungsstücks flächig aufliegend angeordnet sind. Vorzugsweise kann die Heizvorrichtung (1) ein Hohlkörper (2) mit Löchern (13) sein, durch die heiße Luft von innen nach außen strömen kann, oder es kann sich um eine elektrische Kontaktheizung aus massivem Block handeln. Die Heizvorrichtung (1) weist in der Mitte ihrer Oberseite eine Rückenflosse (10) zur Führung der Materialbahnen auf jeder Seite der Oberseite (8) der Heizvorrichtung auf. Mit dieser Heizvorrichtung können die beiden Materialbahnen (MB1, MB2) und das Verbindungsstück (VS) gleichzeitig miteinander verschweißt werden.