Abstract:
본 발명은 열에너지 수송 매체의 누출에 신속하게 대응할 수 있는 열에너지용 배관에 관한 것이다. 본 발명의 실시 예에 따른 열에너지용 배관은 외관; 상기 외관 내부에 배치되어 내부에서 열에너지 수송 매체가 이송되는 적어도 하나의 내관; 상기 내관을 감싸도록 배치된 보수층; 및 상기 외관 내부와 상기 보수층 사이를 충진하는 충진재를 포함할 수 있다.
Abstract:
A process and system for making a laminated surface covering and the surface covering itself are described. The covering includes several layers bonded to each other. The system performs the process. One example of the process includes passing a first material across a first conveyor, passing a second material across a second conveyor, passing a bonding material across a third conveyor, contacting the first material and the second material to the bonding material, and heating at least one of the first material and the second material. The process also includes introducing the first material, the second material, and the bonding material into a pressure zone such that the bonding material is introduced between a bottom surface of the first material and a top surface of the second material. The process applies pressure to bond the first material and second material together via the bonding material to produce a laminated material.
Abstract:
An assembly for protection against explosion in form of a substantially plate-shaped multi-ply element includes two or outer walls (1, 2) and at least one intermediate layer of a ceramic material presenting a density in the range of approximately 0.3 to 1.5 g/cm 3 , a pore diameter in the range of approximately 20 to 120µ and a physical extent in the range of approximately 0.5 to 10mm.
Abstract translation:用于防止基本上板状多层元件形式的爆炸的组件包括两个或外壁(1,2)和至少一个陶瓷材料的中间层,其密度在约0.3至1.5g的范围内 / cm 3,孔径在约20至120μ的范围内,物理范围在约0.5至10mm的范围内。
Abstract:
The manufacturing of articles relies on the bonding of two or more components to form some forms of the articles, such as a shoe sole bonded with a shoe upper. The bonding may be achieved with an adhesive particulate that is applied to a surface of a substrate. The adhesive particulate is selectively fused to the substrate with a controlled energy source having multiple energy emitters individually controllable, such as a laser array. The selective application of laser energy allows for specific geometric structures of adhesive particulate to be formed on the substrate. The substrate having the fused adhesive particulate is mated with another component allowing the fused adhesive particulate to bond the first substrate and the second component.
Abstract:
Die Erfindung betrifft ein Verbundbauteil aus wenigstens zwei Schichten (2, 3, 4, 5, 6), wobei eine erste Schicht (2) zumindest teilweise aus einem wärmehärtenden Kunstharz besteht und wobei eine zweite Schicht (3) zumindest teilweise aus einem mit einem Vernetzer versehenen Elastomer besteht. Die Erfindung ist dadurch gekennzeichnet, dass die wenigstens eine, teilweise aus einem wärmehärtenden Kunstharz bestehende erste Schicht (2, 4, 6) und die wenigstens eine, zumindest teilweise aus einem mit einem Vernetzer versehenen Elastomer bestehende zweite Schicht (3, 5) durch eine gemeinsame Wärmebehandlung oder eine andere vernetzende Behandlung in einem Arbeitsgang zusammengefügt sind. Die Erfindung betrifft ferner ein Verfahren zur Herstellung eines derartigen Verbundbauteils und die Angabe vorteilhafter Verwendungen dafür.
Abstract:
A composite product is made by forming an object body comprising a mixture of rubber crumb and binder having a first temperature-dependent cure rate. A surface layer of a vulcanizable rubber compound having a second temperature-dependent cure rate is brought into contact with the object body, and the surface layer and the object body are simultaneously cured at different temperatures so as to match said first and second cure rates such that the surface layer adheres to the object body.
Abstract:
A process and system for making a laminated surface covering and the surface covering itself are described. The covering includes several layers bonded to each other. The system performs the process. One example of the process includes passing a first material across a first conveyor, passing a second material across a second conveyor, passing a bonding material across a third conveyor, contacting the first material and the second material to the bonding material, and heating at least one of the first material and the second material. The process also includes introducing the first material, the second material, and the bonding material into a pressure zone such that the bonding material is introduced between a bottom surface of the first material and a top surface of the second material. The process applies pressure to bond the first material and second material together via the bonding material to produce a laminated material.
Abstract:
Verfahren zur Herstellung einen Bodenbelag und Bodenbelag (1), umfassend eine als Nutzschicht ausgebildete erste Lage (2) und eine weitere Lage (3), wobei die weitere Lage (3) einen Latentwärmespeicher (4) umfasst.