This application is related to and claims priority under the Paris Convention from German Utility Model Application No. 20 2004 001 485.8, filed 30 January, 2004.
The present invention relates to loss safety devices and, in particular, to a loss safety device for a tank cap.
The present invention relates to a loss safety device for a vehicle cap, in particular a cap for a fuel tank. Tank caps have been used for a considerable length of time. Fuel tank caps for a variety of vehicles feature a band or cord-like device, where a first end section of the device is connected with the tank cap and a second end section is connected with the vehicle. When the cap is removed from the filler neck of the fuel tank, the cap cannot be removed from the vehicle.
The loss safety device typically must meet many requirements, both during the many years of vehicle operation, as well as during the manufacturing phase. For example, the cost must be reasonable and the quality of the device must be high.
Document DE 200 18 750 U1 features a tank cap with a first connecting element, rotably assembled around the axis of rotation of the tank cap, being formed of an annular eyelet and an anchor, connected with a band section and an annular eyelet. The anchor is introduced into an inner recess of the annular eyelet, exiting from the inner section of the annular eyelet through an insertion groove. Nevertheless, there is a problem, in that during insertion of the anchor into the annular eyelet recess, errors may be committed by a technician, as the anchor may be introduced in different positions into the annular eyelet. As a consequence, faulty alignment of the second connecting element may result. Since tank caps are normally irreversibly assembled by means of insertion and spring catches, such a failure may not be uncorrectable and the tank cap must be discarded.
As to the material of the connector, especially the material of the second connecting element discussed above, one problem can arise in that transporting the element from the supplier to the vehicle manufacturer may effect the material. This is especially applicable in the case of plastics which, during long airplane transportation routes, may be exposed to conditions of extreme cold, which could negatively influence material properties.
It is therefore an object of the present invention to provide a loss safety device for a tank cap of a vehicle, which overcomes the handicaps mentioned above.
Generally and briefly, and in one embodiment of the invention, a loss safety device for a tank cap of a vehicle, especially for a fuel tank, has a first end section attached over a first connecting element at the tank cap. A second end section is attached on a vehicle over a second connecting element. A band section is provided between the first and second end sections. The second connecting element is formed by a pin and at least an anchoring extension. The first connecting element is connected with the tank cap rotatably around an axis of rotation R of the tank cap, being formed of an annular eyelet and of an anchor, connected with said band section and annular eyelet, and said annular eyelet features a recess in its inner section, as well as an insertion groove, connecting said recess with the outer side of the annular eyelet, and said anchor may be inserted into the insertion groove.
While the foregoing sets forth general features of a particular embodiment, further embodiments and features will be apparent from the Detailed Description, the drawings and the claims. Consequently, the invention is not limited to what this Summary briefly describes.
a is a version of a loss safety device according to the present invention, wherein the anchor of the first connecting element may be introduced into the annular eyelet only in one angular position, while the second connecting element features two anchoring extensions, and the pin longitudinal axis coincides with the longitudinal axis of the band section;
b is the cross section taken along line C-C through the second connecting element according to the invention, in
a is an embodiment of a loss safety device, where the anchor of the first connecting element may be introduced randomly into the annular eyelet, whilst the second connecting element features four anchoring extensions, with the pin longitudinal axis projected in rectangular direction on the longitudinal axis of the band segment;
b is the cross section taken along line B-B through the second connecting element in
c is the cross section taken along line A-A through the second connecting element in
This task is being solved according to the invention in that said anchor of the first connecting element is designed in such a fashion that relatively to the longitudinal axis of said band section, it can be introduced precisely in an angular or random position into said annular eyelet. This insures that during anchor insertion into said annular eyelet, faulty assembly and consequent faulty alignment of the second connecting element may be prevented.
The task is additionally solved due to the fact that the pin features, on its outer section, at least one admission groove and the anchoring extension surpasses said pin in a direction perpendicular to its longitudinal axis, being flexibly united with said pin and can be pressed into said admission groove. As a result, notwithstanding the surpassing section of said anchoring extension, with accurate insertion of said second connecting element, eventually in a perforation existing on vehicle for this purpose, the anchor diameter offers reduced clearance inside the perforation, being insured a firm seat, offering a good quality impression. Also vibrations acting upon the second connecting elements are effectively absorbed. Additionally, this offers the possibility to provide a one-piece version, insuring a strong rupturing force.
To provide an adequate disposition of anchoring extension and admission groove, the latter preferably extends in the axial direction of said pin. Due to this condition, also positioning and a constructive disposition of a tool, required for production, eventually during an injection molding process will be considerably easier.
In order to be able to insure a sufficiently resistant and economical production process, it is foreseen that said pin and anchoring extension are produced in one piece. Ideally, the band section and the second connecting element are produced in one piece, so that the loss safety device consists of one only section, as least of the side of the second connecting element.
In another advantageous embodiment of the present invention, it is foreseen that the pin and anchoring extension are produced of similar material, especially of polyoxymethylene (POM) or of another plastic material. With an equally one-piece version of the second connecting element and of said band section, also these items are manufactured of the identical material, especially polyoxymethylene (POM) or of another plastic material.
Preferably, the plastic material features a Shore hardness rate between 40 and 80. This hardness is sufficiently flexible and even so its offers sufficient resistance. Additionally, the initially mentioned disadvantages, which may result during longer transportation routes at low temperatures, are thus being effectively avoided.
To increase anchorage resistance, it is advantageous to provide different anchoring extensions, and for each of these anchoring extensions an admission groove is foreseen in the pin. The number of anchoring extensions, in the case of a cylindrical pin, will be in accordance with the pin diameter. Normally, the number of anchoring extensions will be of two, three, four, five, six, seven or eight units. In an adequate fashion, the second connecting element will then be designed in such a fashion that said anchoring extensions and admission grooves will be uniformly disposed over the pin circumference, in order to render feasible a uniform power distribution. For this purpose, said anchoring extensions and admission grooves, in a specially advantageous form, are concentrically disposed in the direction of the pin central axis.
In order to render feasible a higher degree of protection against extraction of the loss safety device from its anchored position at the vehicle, the second connecting element is designed in such a fashion, that after introducing the second connecting element by means of a power, acting upon it against the insertion direction of the second connecting element, under the influence of progressive increase of the effective transversal surface, said anchoring extension of the second connecting element will be expanded and, therefore, by compounding a form-locking condition, will be opposed to a movement of the second connecting element contrary to the insertion direction.
In order to avoid that the second connecting element may be moved randomly in the insertion direction, for example into an empty space, located behind an admission perforation, the pin features an enlargement in its upper section, which restricts the mobility of the second connecting element in the insertion direction.
As occurs also with the second connecting element, at the first connecting element a one-piece configuration would be adequate. Nevertheless, this is rendered difficult due to the bipartite configuration of the first connecting element with an annular eyelet and anchor. Preferably, however, at least the anchor and band section are configured in one piece of identical material, especially of polyoxymethylene (POM) or another plastic material. For simplicity's sake, it can be foreseen that said anchor and annular eyelet are built of the same material, especially of polyoxymethylene (POM) or another plastic material. Also in this case, the material advantageously features a Shore hardness between 40 and 80.
An especially advantageous configuration results, evidently, with a loss safety device according to the present invention, which combines the advantages of the first connecting element with those of the second connecting element, in that the first and second connecting elements are configured according to the guidelines of the invention.
Considering now the drawings,
a features, in detail, a possible configuration of said loss safety device. The first connecting element 2 features an anchor 10 and an annular eyelet 9, said anchor 10 being introduced into a recess 11 of said annular eyelet 9, and abandons said annular eyelet 9 through an insertion groove 12. For anchoring action, said anchor 10 features two outwardly extending arms. These are of different length and recess 11 in said annular eyelet 9 is adjusted to these arms, so that said anchor may only be inserted into recess 11 in one exclusive angular position, relative to longitudinal axis I of band section 4. The inner wall of annular eyelet 9 is not interrupted by recess 11, so that anchor 10 may be firmly inserted into recess 11 of annular eyelet 9, without being mobile in the direction of longitudinal axis L of said band section 4.
At its second end section, the loss safety device features a second connecting element 3, which is being formed by a pin 5 and by two anchoring extensions 6. Said anchoring extensions 6 surpass pin 5 in a direction perpendicular to longitudinal axis Z of said pin 5. By inserting pin into an admission perforation 13, said anchoring extensions 6 are pressed in insertion direction E into an admission groove 7. Once the anchoring extensions 6 have transfixed said admission perforation 13, in view of their flexibility, they resiliently return and prevent a renewed extraction of said second connecting element 3 from admission perforation 13 only by pulling band section 4 contrary to insertion direction E. On the contrary, said anchoring extensions 6 will adjust in the rear section of the material composing said admission perforation 13, being outwardly expanded.
In order to avoid also an additional displacement of the second connecting element 3 in the direction of introduction E and also to insure adequate attachment of the second connecting element 3 inside the admission perforation 13, pin 5 features an enlargement 8 in its upper section. The minimum distance between said enlargement 8 and anchoring extension 6 is adequately chosen in such a way, that the mobility of the second connecting element 3 is largely restricted, without endangering upward resilience of said anchoring extensions 6, after trespassing admission perforation 13.
b features cross section C-C, indicated in
a features another configuration of the loss safety device according to the present invention. Contrary to the embodiment shown in
Additionally, the annular eyelet 9 inner wall is interrupted by a recess 11, which offers advantages during production of injection molded tools, implying in cost reduction. Therefore, band section 4 features, at its point of transition to anchor 10, an outwardly projecting stem, which prevents mobility of loss safety device to provide safe assembly, among other features. Longitudinal axis Z of pin 5 of the second connecting element 3 is aligned perpendicularly towards longitudinal axis L of band section 4. This version may be especially advantageous when a reduced construction height of the second connecting element 3 and of the band section 4 should be required, since in the embodiment shown here, the second connecting element 3 and band section surpass only in an insignificant extension the material forming an admission groove 13 (see also
In analog fashion to
c features an upper view of an alternate embodiment of an enlargement 8, based on enlargement 8, featured in
Contrary to version according to
Number | Date | Country | Kind |
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20 2004 001 485.8 | Jan 2004 | DE | national |