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    • 6. 发明申请
    • SHOCK AND VIBRATION ISOLATOR
    • 震动和振动隔离器
    • WO1988008933A1
    • 1988-11-17
    • PCT/US1988001547
    • 1988-05-11
    • BARRY WRIGHT CORPORATION
    • BARRY WRIGHT CORPORATIONJACOBS, David
    • F16F01/04
    • B21F35/003F16F7/14
    • A shock and vibration isolator is provided comprising a wire cable (36) and sleeve (38) forming a continuous wire rope (16) helically wound and retained in clamped relation by a pair of spaced structural mounting members (12 and 14). Each of the mounting members comprises a pair of clamping bars (20, 22, 24, 26) having grooves formed in mating surfaces thereof for retaining the wire rope therebetween. The sleeve of elastomeric material has a modulus of elasticity significantly lower than that of the clamping bars and is disposed in enveloping engagement about the wire rope to provide a noise break. The grooves provided in the clamping bars form a circular or elliptical opening between the bars having a cross-sectional area which is of a greater dimension than the cross-sectional area of the wire cable, and of a lesser cross-sectional area than the wire cable to prevent slippage of the wire rope (16) in the mounting members (12 and 14).
    • 提供一种抗冲击和隔振器,其包括形成连续钢丝绳(16)的电缆电缆(36)和套筒(38)​​,所述连续钢丝绳螺旋缠绕并通过一对隔开的结构安装构件(12和14)以夹紧关系保持。 每个安装构件包括一对在其配合表面中形成有凹槽的夹紧杆(20,22,24,26),用于将钢丝绳保持在其间。 弹性体材料的套筒的弹性模量明显低于夹紧杆的弹性模量,并且围绕钢丝绳包围接合以提供噪音断裂。 设置在夹紧杆中的凹槽在杆之间形成圆形或椭圆形的开口,其横截面面积比线缆的横截面面积更大的尺寸,并且具有比导线更小的横截面积 电缆,以防止钢丝绳(16)在安装构件(12和14)中滑动。
    • 8. 发明申请
    • MATTRESS INNERSPRING STRUCTURE HAVING COAXIAL COIL UNITS
    • 具有同轴线圈单元的MATTRESS INNERSPRING结构
    • WO1996029524A1
    • 1996-09-26
    • PCT/US1996003922
    • 1996-03-20
    • L & P PROPERTY MANAGEMENT COMPANY
    • L & P PROPERTY MANAGEMENT COMPANYWELLS, Thomas, J.
    • F16F03/00
    • A47C27/07B21F35/003B21F35/04
    • An innerspring structure (10, 40) comprises a plurality of outer coils (12, 45) generally parallel with each other to form top and bottom face surfaces (24, 26, 52, 53). One or more of the outer coils (12, 45) has an inner coil (14, 55) of similar shape positioned coaxially with the respective outer coil (12, 45). In one embodiment, helical lacing wire (30, 61) wraps adjacent end turns of the coaxially aligned coils together to form reinforced coil units (16, 54). Helical lacing wire (30) connects the coils (16) of the structure together and connects the end turns of peripheral coils to a border wire (28). In another embodiment of the invention, the structure comprises a row of inner coils (55) and a row of outer coils (45), each formed from a single continuous piece of wire such that adjacent coils of the row are interconnected by interconnection segments (47). The rows of coils are positioned together so that the inner coils (55) are coaxial with the outer coils (45) to form reinforced coil unit (54).
    • 内弹簧结构(10,40)包括多个彼此大致平行的外部线圈(12,45),以形成顶面和底面(24,26,52,53)。 一个或多个外部线圈(12,45)具有与相应的外部线圈(12,45)同轴定位的类似形状的内部线圈(14,55)。 在一个实施例中,螺旋带状线(30,61)将同轴对齐的线圈的相邻端匝卷绕在一起以形成加强的线圈单元(16,54)。 螺旋系带线(30)将结构的线圈(16)连接在一起并将外围线圈的端匝连接到边线(28)。 在本发明的另一个实施例中,该结构包括一排内部线圈(55)和一排外部线圈(45),每排外部线圈(45)由单个连续的导线形成,使得该行的相邻线圈由互连部分 47)。 线圈排列在一起,使得内部线圈(55)与外部线圈(45)同轴,以形成加强线圈单元(54)。