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    专

    CNUSMXY1蛋白及其在培育抗虫植物中的应用

    110239906A
    发明人
    宋素胜, 谢道昕, 黄煌, 齐天从, 刘贝
    受让人
    首都师范大学
    申请人
    MI PLAST S R L
    申请号
    515506
    申请日
    2020-01-07
    公开(公告)号
    110239906A
    公开(公告)日
    2010-12-13
    IPC分类号
    C07C229/22A61K031/195C07C323/58C07C000/00A61K000/00C07C323/38A01N037/44C07C229/28C07C321/16C07C321/28A61K031/197A61P001/00A61P001/04A61P025/00A61P025/04A61P025/08A61P025/22A61P025/24A61P025/28A61P029/00C07C229/34A61K031/19A61K031/215C07C229/04A61K031/185C07C229/00C07C321/00C07C323/00
    CPC分类号
    -
    优先权号
    200246
    046772
    2690610
    726403
    719696
    优先权日
    2007-07-30
    2008-02-26
    2009-12-10
    2009-12-16
    2013-07-23
    摘要

    NOVELTY - The container (10) has flap lid (20) with slit (21) for forming mountain-shaped tongue piece which is pointed in the direction of base of lid. A receiving slit (22) for engaging tongue piece when the lid is closed, is formed on main portion (10M) at a position closer to lower front surface. The tongue piece is pressed from front side to rear side by finger when flap lid is closed, so that tongue piece latches into receiving slit.

    USE - Packaging container for storing flat-shaped foodstuff such as chewing gum, chocolate, etc.

    ADVANTAGE - The process of opening and closing packaging container can be performed easily and efficiently. The flat-shaped foodstuff can be easily taken out from the packaging container.

    DESCRIPTION OF DRAWING(S) - The drawing shows a perspective view of the packaging container.

    Packaging container (10)

    Main portion (10M)

    Flap lid (20)

    Slit (21)

    Receiving slit (22)

    权利要求
    1.一种缓冲器,包括:壳体,具有形成井的壁;位于壳体的井内的转子,能够在转子与壁之间形成空隙,并能在壳体内转动;密封室,至少部分地由转子和壳体形成,并与转子和壳体之间的空隙邻接,该密封室沿纵向拉长;至少一个密封件,设置该密封室中,位于在壳体和转子之间,用来使该空隙与外界环境隔离,该密封件具有小于密封室的拉长尺寸的尺寸,并延伸小于密封室的拉长尺寸;和在转子和壳体之间的井内的缓冲液,用来缓冲转子相对于壳体的转动;其中壳体、转子和至少一个密封件由含有硅酮或浸渍硅酮的材料构成,并且缓冲液是硅基液体。
    2.如权利要求1所述的缓冲器,其中壳体由浸渍硅酮的乙缩醛共聚物构成。
    3.如权利要求2所述的缓冲器,浸渍在该共聚物中的硅酮含量是2%。
    4.如权利要求1所述的缓冲器,其中转子由浸渍硅酮的尼龙构成。
    5.如权利要求1所述的缓冲器,其中壳体具有内壁和外壁,在内壁和外壁之间形成该井,其中该井部分地由密封室形成并且缓冲器包括一对密封件,该密封件设置在密封室内,第一密封件设在内壁与转子的接合处而第二密封件设在外壁与转子的接合处。
    6.如权利要求5所述的缓冲器,其中密封件由硬度为40丢洛的硅酮材料构成。
    7.如权利要求5所述的缓冲器,其中壳体包含保持部件,用来接收转子上的配合保持部件,以将转子固定在壳体上。
    8.如权利要求7所述的缓冲器,其中壳体保持部件是在外壁上的凹槽,且转子保持部件是形成于转子凸缘上的凸边。
    9.一种缓冲相关物体运动的缓冲器,包括:第一固定部分,由浸渍硅酮或含有硅酮的刚性材料构成;第二运动部分,由浸渍硅酮或含有硅酮的刚性材料构成,第二运动部分可相对于第一固定部分运动,第二运动部分相对第一固定部分形成空隙,第一固定部分和第二运动部分的接口形成密封井,该密封井具有第一尺寸和第二横向尺寸;设在第一固定部分和第二运动部分之间空隙处的缓冲液,该缓冲液是含有硅酮的液体,其中第二运动部分相对于第一固定部分的自由运动受到缓冲液存在的限制;和至少一个密封件,设置在该密封井中,该密封件延伸整个第一尺寸并小于整个第二横向尺寸。
    10.如权利要求9所述的缓冲器,其中第一固定部分形成壳体,该壳体具有形成井的壁,第二运动部分至少部分设在井内,并且缓冲液设在井内,用于缓冲第二部分相对于第一部分的运动。
    11.如权利要求9所述的缓冲器,其中第一和第二部分由添加有硅酮的聚合物材料构成。
    12.如权利要求11所述的缓冲器,其中第一部分由浸渍硅酮的乙缩醛聚合物构成。
    13.如权利要求12所述的缓冲器,其中硅酮的浓度为2%。
    14.如权利要求12所述的缓冲器,其中第二部分由浸渍硅酮的尼龙构成。
    15.如权利要求9所述的缓冲器,其中,该密封件由浸渍硅酮或含有硅酮的材料构成。
    说明书
    [0001]This application claims foreign priority of German Patent Application No. DE 10 2006 024 576.8, filed May 23, 2006 in Germany, which application is incorporated herein by reference in its entirety.
    [0002]FIELD OF THE INVENTION
    [0003]The present invention relates to a sheet-metal-type part, in particular a muffler bottom having at least one through-opening for a tubular part, in particular for an exhaust pipe.
    [0004]BACKGROUND OF THE INVENTION
    [0005]In a multitude of applications, it is necessary to pass a tubular part through a through-opening in a sheet-metal-type part and connect it there. Such an application would be, for example, a muffler bottom of an exhaust system for an internal combustion engine, (for example, in a motor vehicle) through which bottom, an exhaust pipe passes. During operation of the exhaust system, there may be mechanical stress in the area of the connection of the tubular part to the sheet-metal-type part, and the resulting force peaks may result in cracking in the circumferential edge of the through-opening.
    [0006]SUMMARY OF THE INVENTION
    [0007]The present invention relates to the problem of providing an embodiment for a sheet-metal-type part of the generic type so that it will be characterized by a better durability in particular.
    [0008]The present invention is based on the general idea of providing at least one slot that passes through the sheet-metal-type part in an area adjacent to the through-opening, so that the slot runs in the circumferential direction of the through-opening or tangentially thereto. One or more such slots result in an improved introduction of force into the sheet-metal-type part during operation of the exhaust system and/or in heating of the tubular part and thus lead to a force flow running in a meandering line around the slots provided in the sheet-metal-type part. Owing to the meandering line of the force flow, the force is introduced into the sheet-metal-type part along a much longer path, so it is capable of absorbing the force introduced in the elastic range and thus absorbing it without deformation and/or damage. Due to the elimination of stress peaks that exceed the elastic range of the sheet-metal-type part, the lifetime of the arrangement of parts formed by the tubular part and the sheet-metal-type part can be increased significantly.
    [0009]Essentially the at least one slot passing through the sheet-metal-type part can be produced by a suitable cutting operation with or without removal of material. In an exemplary embodiment, the respective slot is produced by punching out and/or punching through an area of the sheet-metal-type part which is in the area adjacent to the through-opening, e.g., by means of a corresponding punching operation. Such a punching operation can be implemented as a non-cutting operation, so the tool used in this process can achieve a long lifetime and the manufacturing cost for the sheet-metal-type part can therefore be reduced.
    [0010]The slot expediently has a rounded end which enlarges the width of the slot at one end, or the end sections of the slot on the longitudinal end may be curved in a semicircular shape. Both variants produce a favorable flow of force in the area of the slot at the longitudinal end and thereby reduce the risk of cracking of the end of the slot. Due to the embodiment of the areas of the slots at the longitudinal end described here, stress peaks can thus be absorbed better and at the same time the lifetime of the sheet-metal-type part can be increased.
    [0011]In another exemplary embodiment of the inventive approach, at least two slots have different lengths. The longitudinal extent of slots may be adapted individually to the force flow that occurs and/or is expected to occur, so that at the time of its manufacture, the sheet-metal-type part can be aligned especially well with the stresses occurring in the later operating state.
    [0012]In yet another exemplary embodiment of the inventive approach, several slots are arranged along several circles spaced a distance apart radially. These circles need not necessarily have the same midpoint and they produce a favorable force flow of the force to be introduced in particular with an arrangement of the slots along the circles, which is selected in the manner of an offset arrangement. Due to the slots arranged in the manner of an offset arrangement, the force flow is forced to follow a meandering line, thereby lengthening the distance traveled. This prolonged force introduction pathway causes the material to be capable of absorbing the force introduced in the elastic range, so there is no plastic deformation, in particular no prominent plastic deformation during operation.
    [0013]It is self-evident that the features mentioned above and those yet to be explained below may be used not only in the particular combination given but also in other combinations or alone without going beyond the scope of the present invention.
    [0014]Exemplary embodiments of the invention are depicted in the drawings and explained in greater detail in the following description, where the same reference numerals refer to the same or similar or functionally identical parts.
    [0015]BRIEF DESCRIPTION OF THE DRAWINGS In the drawings, schematically in each; FIG. 1 shows a sheet-metal-type part having the inventive slots passing through it; and FIG. 2 shows a diagram like that in FIG. 1 but in a different embodiment.
    [0016]DETAILED DESCRIPTION OF THE PRESENT INVENTION
    [0017]According to FIG. 1 , a sheet-metal-type part 1 has at least one through-opening 2 , here a total of three through-openings 2 , 2 ′, 2 ″, whereby a tubular part (not shown here), in particular an exhaust pipe, can be passed through the through-opening 2 . Accordingly, the sheet-metal-type part 1 may be designed as a muffler bottom, for example, and may be part of a muffler (not otherwise shown here) of an exhaust system for an internal combustion engine, for example in a motor vehicle. As FIG. 1 also shows, the sheet-metal-type part 1 has a plurality of slots 3 passing through the sheet-metal-type part 1 in an area adjacent to the through-opening 2 , these slots running essentially in the circumferential direction of the through-opening 2 or tangentially thereto. The slots 3 may have a curved or straight profile. In addition to the slots 3 , the sheet-metal-type part may also have other openings 4 passing through the sheet-metal-type part 1 and arranged in an offset grid pattern according to FIG. 1 . However, the openings 4 are shown here merely as an example, so that sheet-metal-type parts 1 , which do not have any additional openings 4 according to FIG. 2 , should also be included in the invention.
    [0018]At the longitudinal end of the slots 3 , they may have a rounded area 5 which enlarges the slot width (see FIG. 2 ) and which produces an improved force flow within the sheet-metal-type part 1 . Instead of the rounded end 5 , the longitudinal end sections of the slots 3 may also be curved in a semicircular shape, which has the same effect. The rounded ends 5 and/or the curved end sections are preferably arranged concave to one another and protrude radially outward away from the respective slot 3 .
    [0019]The slots 3 are arranged along a plurality of circles 6 spaced a radial distance apart from another, these circles may not have a common midpoint as shown in FIG. 1 or may be arranged concentrically with one another as shown in FIG. 2 . Regardless of the arrangement of the circles 6 in relation to one another, the slots 3 are preferably arranged in a type of offset arrangement to one another along the circles 6 spaced a radial distance apart from one another. Such an offset arrangement is known from the field of masonry, for example, and has the effect that joints between the individual slots 3 do not run continuously in any layer (here: circles 6 ).
    [0020]In the installed state, the tubular part (not shown here) passes at least through the through-opening 2 and is fixedly connected to the sheet-metal-type part 1 in the area of the through-opening 2 , e.g., by welding or soldering. During operation, there may be heating of the tubular part so that it expands in the circumferential direction. Such an expansion results in forces acting in the circumferential direction on an edge 7 of the through-opening 2 , which in the worst case would lead to cracking of the edge 7 . To prevent such cracking, the slots 3 are provided in the area adjacent to the through-opening 2 . The slots 3 then cause a deflection of the force flow so that the path to the introduction of force is lengthened, preferably so that the sheet-metal-type part 1 can absorb the force which is introduced, e.g., due to the thermal expansion, in the elastic range. The arrangement of the slots 3 in the manner of an offset arrangement along the circle 6 spaced a distance apart from one another radially as described above results in a forced meandering profile of the force flow between the slots 3 and thus lengthens the force introduction pathway in a particularly advantageous manner. The arrangement of slots 3 along the circle 6 spaced a radial distance apart is to be understood as merely an example so that, for example, an arrangement of the slots 3 along rays curving in the circumferential direction is also conceivable.
    [0021]As also shown in FIGS. 1 and 2 , the slots 3 may have different lengths and may be adapted especially well to the expected input of force. It is also conceivable that the slots 3 may be arranged only on a limited circumferential segment around the through-opening 2 , as shown in FIG. 1 , for example, or may be arranged around the through-opening 2 for the full circumference, as shown in FIG. 2 .
    [0022]In general, the sheet-metal-type part 1 may be designed as a muffler bottom as described above and may therefore form a part of a muffler, e.g., for an exhaust system of a motor vehicle. Such a muffler bottom has the function of a partition, for example, separating two chambers in the muffler from one another. One of the chambers may be, for example, an absorption chamber that is filled with a sound-absorbing material or an absorbent material. The sheet-metal-type part 1 in this embodiment is attached to a housing of the muffler (not shown), in particular by welding. Essentially the sheet-metal-type part 1 here may be made of a plastic or a metal, in particular sheet metal. The term “sheet metal type” as used here should be understood to mean only that in a Cartesian coordinate system, the part 1 has a much smaller thickness than its extent in the longitudinal and/or width directions. In general, the sheet-metal-type part 1 may essentially have any desired three-dimensional profile and need not extend in one plane.
    [0023]The invention proposes that in the case of a sheet-metal-type part 1 having a through-opening 2 for a tubular part slots 3 are to be provided, passing through the sheet-metal-type part 1 in the area around the through-opening 2 and/or in an area adjacent thereto, these slots being designed and arranged in such a way that a force introduced through the tubular part in particular due to thermal expansion thereof can be absorbed in the elastic range of the sheet-metal-type part 1 . To this end, the slots 3 are arranged to run essentially in the circumferential direction or tangentially to the through-opening 2 .
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