序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
1 具有同心弹簧组件的床垫弹簧架 CN96192712.7 1996-03-20 CN1085798C 2002-05-29 托马斯·J·韦尔斯
一种弹簧架(10,40)包括许多通常彼此平行的外簧(12,45),以形成上、下表面(24,26,52,53)。一个或多个外簧(12,45)具有一个呈相似形状的且通常与相应的外簧同心的内簧(14,55)。在一个实施例中,螺旋穿条(30,61)将同心弹簧的相邻端部簧圈缠绕在一起,以形成加强型弹簧组件(16,54)。螺旋穿条(30)将该弹簧架的弹簧(16)连在一起并将周边弹簧的端部簧圈连接到一个边框(28)上。在本发明的另一个实施例中,该弹簧架包括一行内簧(55)和一行外簧(45),各行弹簧是由单根连续线材制成的,从而使该行的相邻弹簧通过连接段而相连。将这些行的弹簧装在一起,以使所述内簧(55)和外簧(45)同心,从而形成了加强型弹簧组件(54)。
2 具有改进的悬挂装置的封闭式压缩机 CN200480020085.4 2004-06-24 CN1823235A 2006-08-23 毛里齐奥·拉曼蒂亚
密封压缩机包括:由电机和往复式活塞压缩机构成的单元(11)。单元(11)安装在外壳(10)中并且由弹性装置(12)支撑。这些弹性装置(12)由多个压缩弹簧形成,而弹簧的弹性主体由绕所述主体的中轴线绞绕的多个绞合线(13)构成。该方案有效地提高阻尼系数,同时减小压缩机在工作期间产生的噪音。
3 具有同心弹簧组件的床垫弹簧架 CN96192712.7 1996-03-20 CN1179203A 1998-04-15 托马斯·J·韦尔斯
一种弹簧架(10,40)包括许多通常彼此平行的外簧(12,45),以形成上、下表面(24,26,52,53)。一个或多个外簧(12,45)具有一个呈相似形状的且通常与相应的外簧同心的内簧(14,55)。在一个实施例中,螺旋穿条(30,61)将同心弹簧的相邻端部簧圈缠绕在一起,以形成加强型弹簧组件(16,54)。螺旋穿条(30)将该弹簧架的弹簧(16)连在一起并将周边弹簧的端部簧圈连接到一个边框(28)上。在本发明的另一个实施例中,该弹簧架包括一行内簧(55)和一行外簧(45),各行弹簧是由单根连续线材制成的,从而使该行的相邻弹簧通过连接段而相连。将这些行的弹簧装在一起,以使所述内簧(55)和外簧(45)同心,从而形成了加强型弹簧组件(54)。
4 Multi-stranded coil spring JP2010245095 2010-11-01 JP2011078793A 2011-04-21 GLADNEY RICHARD F; KUCHEL BERNHARD W
PROBLEM TO BE SOLVED: To provide a spring construction that is less expensive to manufacture than a solid wire spring, and that retains or improves upon the performance characteristics of the solid wire spring, since one disadvantage in a conventional solid wire spring construction is that steel that is suitable for this type of spring can be costly, and another disadvantage is that if one or more of the springs malfunction (e.g., break), the seating and/or sleeping comfort of the seating or resting surface is impaired. SOLUTION: A coil spring assembly includes a plurality of strands configured as a multi-strand cord, the multi-strand cord coiled into a first helical spring having four or more active coils, at least one inactive coil forming a closed end, and a free height of at least about four inches. COPYRIGHT: (C)2011,JPO&INPIT
5 Internal spring structure of the mattress with a coaxial coil spring JP52863396 1996-03-20 JPH11502593A 1999-03-02 ジェイ. ウェルズ,トマス
(57)【要約】 内部スプリング構造(10、40)は、頂面および底面(24、26、52、53)を形成するために、互いに全体的に平行になった複数個の外方コイルスプリング(12、45)を有する。 1あるいはそれ以上の該外方コイルスプリング(12、45)はそれぞれの外方コイルスプリング(12、45)と同軸的に配置された同一の形状の内方コイルスプリング(14、55)を有する。 1つの実施例においては、らせん締めつけワイヤ(30、61)が同軸的に整列されたコイルスプリングの隣接した端部巻き部を巻きつけて、バネ強化コイルスプリング(16、54)を形成する。 該らせん締めつけワイヤ(30)は内部スプリング構造のコイルスプリング(16)を一緒にして結合し、外周部のコイルスプリングの端部巻き部をボーダーワイヤ(28)に結合する。 本発明の他の実施例においては、内部スプリング構造は内方コイルスプリング(55)の配列と外方コイルスプリング(45)の配列とを有し、それらの各々は単一の連続的なワイヤピースから形成され、隣接した配列が相互結合部分(47)によって相互結合される。 コイルスプリングの配列は、内方コイルスプリング(55)が外方コイルスプリング(45)と同軸的になってバネ力強化コイルスプリング(54)を形成するように、一緒になって配置される。
6 Multiple twisted coil spring JP2005512628 2004-02-19 JP2006518829A 2006-08-17 ダブリュ. キューヒェル,ベルンハルト; エフ. グラッドニー,リチャード
本発明は、複数撚り線コードとして構成された複数の撚り線を含むコイルバネ組立品であって、前記複数撚り線コードが、4つ以上の有効巻線を備えた第1つる巻バネと、閉端を形成する少なくとも1つの無効巻線と、少なくとも約4インチの自由高さとに巻き取られた、コイルバネ組立品を提供することで、従来技術の欠点に対処する。 本発明の前記コイルには多数の潜在的用途があるが、1つの特徴によれば、マットレス又は他の家具などの安息面における支持を提供するよう特別に寸法設定してある。 幾つかの構成では、前記コードの前記撚り線が捻り合わされているが、他の構成では、前記撚り線は編み組みされている。 幾つかの実施形態によれば、3本以上の撚り線が捻り合わされて、前記複数撚り線コードを形成している。 他の実施形態では、3本以上の撚り線が編み組みされて、前記複数撚り線コードを形成している。
7 Multiple-strand torsion spring and its production JP4201889 1989-02-23 JPH01254334A 1989-10-11 PIITAA JII SEIRAA
PURPOSE: To efficiently produce a helical spring composing of plural helical strand spring wires joined together at one end of plural strands by synchronizing advancing, coiling, cutting processes to a welding process. CONSTITUTION: A wire extending from a supply devices 17, 18 passes a hole of a guide member 14 of a supply device 15 and is supplied at a straight and continuous state toward a coiling mandrel, i.e., a spindle 11. By energizing a pair of welding electrodes 19, wire W1, W2 parts are welded together. A tip part of the wire passes between a stop pin 13 and a neck part 11a reducing the spindle 11. Until a planned number of coils is formed while the spindle 11 is retracted in an axial direction, the wire is coiled on the neck part 11a reducing the spindle 11. When rotation of the spindle 11 is stopped, the spindle is instantly reversed, a cutting blade 16 shears the wire W1, W2, a formed helical spring is automatically released from the neck part 11a reducing the mandrel 11.
8 JPS551137B2 - JP3218974 1974-03-20 JPS551137B2 1980-01-11
9 HERMETIC COMPRESSOR PROVIDED WITH IMPROVED SUSPENSION MEANS EP04741882.7 2004-06-24 EP1646803A1 2006-04-19 LAMANTIA, Maurizio
Hermetically seated compressor comprising a unit (11) constituted by an electric motor and a reciprocating-piston compressor. The unit (11) is mounted within a casing (10) and is supported by elastic means (12). These elastic means (12) are formed by a plurality of compression springs, whose elastic body is in turn constituted by a plurality of stranded wires (13) twisted around the middle axis of said body. This solution is effective in improving the damping coefficient, while reducing the noise generated by the compressor during operation.
10 MULTI-STRANDED COIL SPRING EP04712878.0 2004-02-19 EP1599683A2 2005-11-30 GLADNEY, Richard, F.; KUCHEL, Bernhard, W.
A spring assembly including a helical coil (20) formed from a multi-strand cord (22).
11 Multiple-strand torsion spring and method of forming the same EP89302196.4 1989-03-06 EP0333358A2 1989-09-20 Seyler, Peter G.

A method is disclosed of forming a helical spring composed of a plurality of parallel, coiled strands of spring wire (31) with such strands being unconnected along a major part of their length but being joined together at least at one end of the spring (32). In a preferred embodiment, such strands or wires are welded together at opposite ends of the spring. Such a spring is formed by incrementally advancing a plurality of wires (W1, W2, ---) in contiguous, parallel realtion towards a wire-coiling station (11,12,13) and then, at the termination of a coiling step, interrupting such advancement to sever the wires through, or immediately adjacent to, a welded zone (44) while at the same time welding such wires together in a further zone (48) spaced a precise distance from the point of the severing operation. The invention extends to helical torsion springs (30,30′) produced by the above method.

12 MULTI-STRANDED COIL SPRING US13356003 2012-01-23 US20120186027A1 2012-07-26 RICHARD F. GLADNEY; BERNHARD W. KUCHEL; MICHAEL S. DEFRANKS
A spring assembly including a helical coil formed from a multi-strand cord.
13 Coil shaft and method for fabricating same US09808169 2001-03-15 US06726568B2 2004-04-27 Toshizumi Tanaka
A coil shaft or tube to be fitted into a flexible sleeve to serve as a flexible rotation transmission shaft, containing a partially coarsely wound coil shaft formed by winding around a core a plural number of unit wires which are arranged in intimately parallel relation with each other in the fashion of a single flat metal strip, and extracting a dummy wire afterwards from a resulting tightly wound coil shaft to form coarsely wound portions where helices of certain adjacent unit wires spaced apart in the axial direction and in certain portions of the coil shaft.
14 Mattress innerspring structure having coaxial coil units US612490 1996-03-15 US5803440A 1998-09-08 Thomas J. Wells
An innerspring structure for a mattress comprises a plurality of outer coils extending generally parallel with each other to collectively form top and bottom face surfaces of the innerspring structure. One or more of the outer coils has an inner coil of preferably similar shape positioned generally coaxially with the respective outer coil. In one embodiment, a helical lacing wire wraps together adjacent end turns of the inner and outer coaxially aligned coils to form reinforced coil units in an area of the innerspring structure to increase the firmness of an area of the mattress utilizing the invention. Helical lacing wire connects the coils of the structure together and connects the end turns of peripheral coils to a border wire surrounding the periphery of the structures at the top and bottom face surfaces. In another embodiment of the invention, the structure comprises a row of inner coils and a row of outer coils, each formed from a single continuous piece of wire such that adjacent coils of the row are interconnected by interconnection segments. The rows of coils are positioned together so that the inner coils are coaxial with the outer coils to form reinforced coil unit.
15 Mattress innerspring structure having coaxial coil units US406694 1995-03-20 US5509642A 1996-04-23 Thomas J. Wells
An innerspring structure for a mattress comprises a plurality of outer coils extending generally parallel with each other to collectively form top and bottom face surfaces of the innerspring structure. One or more of the outer coils has an inner coil of preferably similar shape wound within and generally coaxially with the respective outer coil. Helical lacing wire wraps adjacent end turns of the inner and outer coaxially aligned coils together to form reinforced coil units in an area of the innerspring structure to increase the firmness of an area of the mattress utilizing the invention. Helical lacing wire connects the coils of the structure together and connects the end turns of peripheral coils to a border wire surrounding the periphery of the structures at the top and bottom face surfaces.
16 Multiple-strand torsion spring US27433688 1988-11-21 US4889327B1 1994-12-20 SEYLER PETER G
17 Helical coil forming machine US34361773 1973-03-21 US3823590A 1974-07-16 LANG E
A pair of large wire supply rolls are rotatably supported by a cantilevered tubular shaft, and corresponding wires extend from the rolls to a coil forming rotor which is also supported by a cantilevered tubular shaft aligned axially with the roll support shaft. Wire is withdrawn from the wire supply rolls by rotation of the rotor which includes precisely driven wheels for feeding the wires through corresponding sets of casting rollers to form a continuous double helix nonrotating coil. A nonrotating mandrel projects through the roll support shaft for supporting the helical coil as it is being formed and progresses axially between a set of endless belts which feed the continuous coil from the coil forming rotor and control the pitch of the wire turns of the coil. A disc brake system is mounted on the roll support shaft for braking the rotation of the wire supply rolls to control the tension in the wires, and the roll support shaft is pivotable in a horizontal direction to facilitate loading of new wire supply rolls into the machine. The machine is also adapted to be used with only one wire supply roll when only a single helix nonrotating continuous coil is required.
18 Process for manufacturing multiple coil springs for slide fasteners and method of attachment US69458357 1957-11-05 US2929135A 1960-03-22 OTTO CROMBERG; GUSTAV PRITZBUER; WALTER WINTERHOFF; HANS MAYER
19 Means for simultaneously feeding two wires US21720951 1951-03-23 US2668615A 1954-02-09 SAMPATACOS PETER M
20 Coil spring construction US7316349 1949-01-27 US2631840A 1953-03-17 BUGENHAGEN GEORGE H
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