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    专

    一种自动驾驶多车智能协同的区域交通流导引方法

    BG1875017A1
    发明人
    冷甦鹏, 廖熙雯, 成泽坤, 张科
    受让人
    UNIV ELECTRONIC SCI & TECH CHINA
    申请人
    Hiroki Matsumoto
    申请号
    18614910
    申请日
    1981-12-20
    公开(公告)号
    BG1875017A1
    公开(公告)日
    2016-11-28
    IPC分类号
    F28C001/02F28F025/08
    CPC分类号
    -
    优先权号
    DE00151
    优先权日
    2003-02-18
    摘要

    The latch to secure palletised freight or containers onto the floor of the hold of an aircraft has two interlocking arms (8, 9) secured between two longitudinal side members so as to swing about pivot pins (e.g. 28) to enable a conventional latch arm (10) one end to be operated so that projecting strips (17, 72) underneath engage slots formed in the specially designed floor. These arms are combined with a quick action locking system with further swinging arms (26) between them and the side members.

    Each swinging arm has a specially shaped slot (18) along it to cooperate with extensions of the pivot pin (28) to give the locking action. Each arm (26) carries teeth (31) at the other end which engage a toothed wheel (32) when swung up, combines with the sliding action of further members between the sides to give a positive lock.

    权利要求
    1. A card connector provided at an electronic device, the card connector configured for inserting a card having recorded electronic information in the electronic device and for withdrawing the card from the electronic device, the card connector comprising: a connector main body; a tray having a tilt spring that is movably disposed with respect to said connector main body between a pulled-out position in which a portion of the tray is pulled out from said connector main body and an advanced position in which a portion of the tray is advanced into said connector main body; and an inclining means for inclining said tray in the movement direction of said tray so that a gap between said connector main body and a card mounting surface of said tray increases when said tray is in said pulled-out position, wherein said pulled-out position is a position that allows said card to be mounted on the card mounting surface of said tray, wherein said inclining means comprises: a pawl disposed in said tray and extended outward in a direction that intersects with the movement direction of said tray; and a tilt groove formed in a side of said connector main body and directed perpendicular to said card mounting surface, into which said pawl fits when said tray is in said pulled-out position, and which inclines said tray by guiding said pawl in a direction perpendicular to said card mounting surface; and wherein said connector main body comprises: a first base plate portion disposed below said tray.
    2. The card connector according to claim 1 , wherein said advanced position is a position in which said card is connected to an internal circuitry of said electronic device.
    3. The card connector according to claim 1 , wherein a slide groove is formed extending along the movement direction of said tray in said connector main body; the distal end on said pulled-out position side of the tray is in communication with said tilt groove, and, when said tray moves between said advanced position and said pulled-out position, said tray is guided via the movement of said pawl within the slide groove while engaged therein.
    4. The card connector according to claim 1 , wherein said connector main body comprises: a pair of first side plate portions that stand upwardly erect from two edges that extend in the movement direction of said tray in the first base plate portion; and an upper plate portion extended inward from the upper end of the first side plate portions; said tray comprises: a second base plate portion in which the upper surface thereof constitutes said card mounting surface; and a pair of second side plate portions stand upwardly erect from two edges that extend in the movement direction of said tray in the second base plate portion; said tilt groove is formed from said first side plate portion across said upper plate portion, and guides said pawl in a direction away from said first base plate portion; said pawl is formed on said second side plate portion; said first side plate portion and said upper plate portion extend further to said pulled-out position side from said first base plate portion; and the edge on said pulled-out position side in said first base plate portion is disposed further to said pulled-out position side than said tilt groove.
    5. The card connector according to claim 4 , wherein said tray comprises an elastic member for urging the portion where said pawl is disposed in said tray toward a direction away from said first base plate portion when the tray is in said pulled-out position.
    6. The card connector according to claim 5 , wherein said elastic member is a spring member provided to said second base plate portion.
    7. The card connector according to claim 1 , wherein a lock groove is formed in said connector main body, and a lock pawl that fits into said lock groove when the tray is in said advanced position is provided to said tray.
    8. The card connector according to claim 2 wherein said connector main body comprises a plurality of contact point terminals for connecting terminals of said card to said internal circuitry; and an insulation plate in which the plurality of contact point terminals is embedded and which insulates said plurality of contact point terminals from each other; and that notches are formed in positions that correspond to the terminals of said card in said tray.
    9. A card connector provided at an electronic device, the card connector configured for inserting a card having recorded electronic information in the electronic device and for withdrawing the card from the electronic device, the card connector comprising: a connector main body; a tray that is movably disposed with respect to said connector main body between a pulled-out position in which a portion of the tray is pulled out from said connector main body and an advanced position in which a portion of the tray is advanced into said connector main body; and an inclining means for inclining said tray in the movement direction of said tray so that a gap between said connector main body and a card mounting surface of said tray increases when said tray is in said pulled-out position, wherein said inclining means comprises: a pawl disposed in said tray and extended outward in a direction that intersects with the movement direction of said tray; and a tilt groove formed on said connector main body and directed perpendicular to said card mounting surface, into which said pawl fits when said tray is in said pulled-out position, and which inclines said tray by guiding said pawl in a direction perpendicular to said card mounting surface; wherein said connector main body comprises: a first base plate portion disposed below said tray; a pair of first side plate portions that stand upwardly erect from two edges that extend in the movement direction of said tray in the first base plate portion; and an upper plate portion extended inward from the upper end of the first side plate portions; said tray comprises: a second base plate portion in which the upper surface thereof constitutes said card mounting surface; and a pair of second side plate portions stand upwardly erect from two edges that extend in the movement direction of said tray in the second base plate portion; said tilt groove is formed from said first side plate portion across said upper plate portion, and guides said pawl in a direction away from said first base plate portion; said pawl is formed on said second side plate portion; said first side plate portion and said upper plate portion extend further to said pulled-out position side from said first base plate portion; and the edge on said pulled-out position side in said first base plate portion is disposed further to said pulled-out position side than said tilt groove.
    说明书
    [0001]CROSS REFERENCE TO RELATED APPLICATIONS
    [0002]This application is the National Stage of PCT/EP2013/064640 filed on Jul. 11, 2013, which claims priority under 35 U.S.C. §119 of German Application No. 10 2012 106 340.0 filed on Jul. 13, 2012, the disclosure of which is incorporated by reference. The international application under PCT article 21(2) was not published in English.
    [0003]BACKGROUND OF THE INVENTION
    [0004]1. Field of the Invention
    [0005]The invention relates to a sealing strand for adhesive attachment to a vehicle body, particularly to a body flange projecting away from the vehicle body.
    [0006]2. Description of the Related Art
    [0007]It is known that seals on vehicle, for example door seals, are formed by means of sealing strands that can be set onto a flange projecting away from the vehicle body, using a U-shaped attachment section. Alternatively, the seal is adhesively attached to the flange or to a body region adjacent to the flange.
    [0008]SUMMARY OF THE INVENTION
    [0009]The invention is based on the task of creating a new sealing strand intended for adhesive attachment to the vehicle body, which strand can be conveniently mounted on the vehicle.
    [0010]The sealing strand according to the invention that accomplishes this task is characterized by means for tacking the sealing strand to the vehicle body.
    [0011]It is advantageous that such a sealing strand can be affixed on the vehicle body, before being adhesively attached, so that it is held on its own there and, in particular, is sufficiently fixed in place in a starting position for the adhesive attachment process. During the adhesive attachment process, it is not necessary to exert any holding forces while orienting the sealing strand to be adhesively attached.
    [0012]In a preferred embodiment of the invention, the stated means are means for tacking the sealing strand to the body flange. In particular, the stated means have devices for the production of a clamping connection of the sealing strand to the body flange.
    [0013]It is practical if the sealing strand can be set onto the body flange with the production of a clamping connection transverse to the longitudinal axis of the strand. In particular, the devices for the production of the clamping connection have a clamping shank disposed in clip-type manner relative to an adhesive surface of the sealing strand, for this purpose. It is advantageous if the body flange is automatically clamped in between the adhesive surface and the clamping shank when the sealing strand is set onto the body flange, with the production of a holding force for the sealing strand. It is understood that in this state, the adhesive surface does not yet act in adhesive manner, and that a double-sided adhesive tape that might be used for the adhesive attachment is still covered by a protective film.
    [0014]It is practical if the sealing strand has a stop that is decisive for the desired tacking position, particularly for the starting position of the adhesive attachment process, against which stop the free end of the body flange preferably lies.
    [0015]In a further embodiment of the invention, the stated clamping shank is connected with the remainder of the sealing strand by way of a crosspiece-like bridge that forms a planned breaking point. It is advantageous that if necessary, the clamping shank can be pulled off after complete installation of the sealing strand, by tearing the planned breaking point apart.
    [0016]In a further embodiment of the invention, the clamping shank can be connected with a covering lip of the sealing strand that extends in an arc over the clamping surface, whereby preferably, the clamping shank can be torn off from the adhesively attached sealing strand, with orientation of the covering lip in a covering position.
    [0017]Preferably, a double-sided adhesive tape having a protective film, which can be pulled off using the application device stated initially, if necessary, serves for the adhesive attachment.
    [0018]BRIEF DESCRIPTION OF THE DRAWINGS The invention will be explained in greater detail in the following, using exemplary embodiments and the attached drawings that relate to these exemplary embodiments. These show: FIG. 1 a first exemplary embodiment of a sealing strand according to the invention, having a clamping shank demonstrating an angular deflection, FIG. 2 an exemplary embodiment of a sealing strand according to the invention, having a clamping shank that can be torn off from a covering lip, FIG. 3 an exemplary embodiment of a sealing strand according to the invention, having a covering lip that simultaneously forms a clamping shank, FIG. 4 a further exemplary embodiment of a sealing strand according to the invention, having a clamping shank that can be torn off, FIG. 5 a representation that explains the installation of the sealing strands according to the invention.
    [0019]DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
    [0020]A sealing strand having a sealing section 1 and an attachment section 2 consisting or a harder elastomer material than the sealing section serves for forming a seal on a vehicle door and is intended to be adhesively attached to a body flange 3 that runs around the circumference of a door opening. The adhesive attachment of the attachment section 2 to the flange 3 takes place using a double-sided adhesive tape 4 adhesively attached to an adhesive surface 18 of the attachment section 2 , which tape has a protective film 12 .
    [0021]A covering lip 5 that runs in an arc over the attachment section, angled away from the latter, extends from the attachment section 2 ; this lip lies against the edge of a body part 6 in the completely installed status of the sealing strand, and covers a gap between the body flange 3 and the body part 6 .
    [0022]A projection 7 at the foot of the covering lip 5 forms a stop for the free end of the body flange 3 .
    [0023]A shank 8 having an angular deflection 15 extends from the covering lip 5 , whereby the shank 8 engages on the body flange 3 opposite the attachment section 2 or the adhesive tape 4 in the manner of a pliers shank.
    [0024]Furthermore, a rubber string 9 having an embedded tear-resistant thread 10 is connected with the covering lip 5 , whereby the rubber string is connected with the covering lip 5 by way of a crosspiece 11 that forms a planned breaking point.
    [0025]To install the sealing strand shown in FIG. 1 , with adhesive attachment to the body flange 3 by means of the adhesive tape 4 , the sealing strand is at first only tacked onto the vehicle body and, for this purpose, set onto the body flange 3 until the free end of the body flange 3 makes contact with the projection 7 . The shank 8 connected with the covering lip 5 ensures clamping of the sealing strand to the body flange 3 , the side of which, facing the attachment section 2 , lies against the adhesive tape 4 . The adhesive tape 4 is still covered with the protective film 12 in this tacked state.
    [0026]The sealing strand is now in a starting position for adhesive attachment to the body flange 3 , using an application device 13 reproduced schematically in FIG. 5 . A press-down pressure according to arrow 14 , which ensures adhesive attachment, is produced by way of the application device 13 , with the sealing section 1 of the sealing strand being folded together. If necessary, production of the press-down pressure takes place continuously by means of a roller or a slide shoe. In any case, the application device 13 comprises means for pulling the protective film 12 off from the adhesive tape 4 before the adhesive attachment process, according to the arrow 19 , whereby these means can comprise a pull-off roller (not shown) that precedes the application device, for example.
    [0027]After the sealing strand has been adhesively attached to the body flange 3 , the rubber string 9 is pulled off, in a final work step, with continuous tearing of the crosspiece 11 that is configured as a planned breaking point, and the covering lip 5 is thereby brought into the planned veneering position, with contact against the body part 6 . If necessary, pulling the rubber string 9 off takes place automatically, using the application device 13 , for example together with pulling off the protective film 12 .
    [0028]In the following exemplary embodiments, shown in FIGS. 2 to 4 , the same parts or parts having the same effect are indicated with the same reference number as in FIG. 1 , whereby the letter a, b or c is appended to the reference number in question.
    [0029]In the exemplary embodiment of FIG. 2 , a shank 8 a that projects away from a covering lip 5 a , which shank serves for a clamping connection of the sealing strand shown with a body flange 3 , simultaneously forms an installation string for positioning of the covering lip 5 a in a covering position. Accordingly, a tear-resistant thread 10 a has been set into the shank 8 a , and the shank stands in connection with the covering lip 5 a by way of a crosspiece 11 a . A projection 16 that projects away from the shank 8 a supports the transfer of a clamping force to the body flange 3 . Pulling the shank 8 a off takes place, if necessary, by way of a pull-off device that follows the application device 13 .
    [0030]In the exemplary embodiment shown in FIG. 3 , a covering lip 5 a itself forms a clamping shank that tacks the sealing strand onto the flange 3 . Using a tear-off string 9 b , the covering lip 5 b can be brought into its intended position after the sealing strand has been adhesively attached.
    [0031]In a sealing strand shown in FIG. 4 , an attachment section 2 c is connected with two sealing sections 1 c and 1 c ′, and has an angular deflection 17 that forms a stop for the free end of a body flange 3 c . A shank 8 c that projects away from the stop, which shank serves for clamping the sealing strand to the body flange 3 c , is connected with the angular deflection 17 by way of a crosspiece 11 c that forms the planned breaking point, and a tear-resistant thread 10 a for pulling the shank 8 a off after installation of the sealing strand has taken place is formed in the shank 8 a.
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