摘要:
This shaping structure (1) comprises two shaping sheets (5, 7) facing each other at a distance from one another. According to the invention, the shaping structure (1) further comprises a macroporous spacer sheet (9), the spacer sheet (9) being arranged between the two shaping sheets (5, 7) and being corrugated in such a way as to form a series of alternating even peaks (18) and odd peaks (20) distributed in a first direction (D1) of the shaping structure, at least one of the even peaks (18) being attached to the first shaping sheet (5), at least one of the odd peaks (20) being attached to the second shaping sheet (7), each peak (18, 20) attached in this way defining an attachment surface (22, 26) for attachment to the shaping sheet (5, 7) to which this peak (18, 20) is attached.
摘要:
A metal reinforced plastic article is provided and comprises a first plastic member and a second plastic member bonded together through a plurality of apertures in a metal reinforcing member. Preferably, the metal reinforcing member has a plurality of angled protrusions on a first and second side. The protrusions on the first side are pressed into the first plastic member and the first plastic member is bonded to the protrusions, and the protrusions on the second side are pressed into the second plastic member and the second plastic member is bonded to the protrusions. A method of forming a metal reinforced plastic article is provided and comprises providing a first plastic member and a second plastic member. A metal reinforcing member having a plurality of apertures therein, and having a plurality of angled protrusions on a first and second side is provided. The metal reinforcing member is heated and is placed between the plastic members, and the plastic members are pressed together resulting in the protrusions on the first side of the metal reinforcing member pressing into the first plastic member and the first plastic member bonding to the protrusions, and the protrusions on the second side of the metal reinforcing member pressing into the second plastic member and the second plastic member bonding to the protrusions. Additionally, the pressing of the plastic members together results in the plastic members bonding together through the apertures in the metal reinforcing member.
摘要:
The present invention relates to a hybrid prepreg having reinforcing carbon fibers and foreign fibers. The carbon fibers have a diameter ranging from 5-30 microns and are unidirectionally arranged. The foreign fibers are composed either of single monofilaments having a diameter ranging from between about 50-150 microns or of strands formed by bundling together a plurality of single monofilaments having a diameter ranging from between about 5-50 microns. If strands are employed, they have a conversion diameter (D.sub.0) which is less than about 500 microns. The conversion diameter (D.sub.0) is represented by the following equation: ##EQU1## wherein n is the number of monofilaments used in forming the strand, and wherein d is the diameter of these monofilaments. Examples of foreign fibers which can be used when practicing this invention include boron fibers, metal fibers and organic fibers. These foreign fibers are spaced at fixed intervals, arranged in the same direction as the direction of the reinforcing carbon fibers, and positioned approximately at or near the center of the resulting prepreg. The prepreg prepared in accordance with the present invention also includes a thermosetting matrix resin in which the reinforcing carbon fibers and the foreign fibers are impregnated.
摘要:
For the production of a tight complex having an internal reinforcement or framework and more particularly intended for the production of aerostatic balloons, a nonwoven reinforcement (10) is formed from weft and warp threads arranged in the form of two superimposed layers. To each of the faces of said reinforcement and using a predetermined force is applied a covering film (16a,16b), after bringing it to its pasty melting point on a heating drum (30a,30b). The nonwoven character of the reinforcement makes it possible to preserve the seal of the covering films during complexing. Moreover, the formation of small loops or rings on the edges of the complex obtained in this way makes it possible to introduce connecting cables facilitating the taking up or absorption of stresses.