CLAMP
20180180075 ยท 2018-06-28
Inventors
- Fabio Ghirardi (Hanau, DE)
- Viktor Stoll (Grosskrotzenburg, DE)
- Gerrit von Breitenbach (Karlstein, DE)
- Erkan Kayacik (Istanbul, TR)
Cpc classification
F16L33/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L21/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L23/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16B2/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L23/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L21/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a clamp comprising a clamp band having a clamping head with two clamping jaws, in each of which a guide-through opening is formed, through which a clamping element for clamping the clamp is guided, wherein at least one contact surface is formed on a respective edge of the guide-through openings, on which contact surface a support surface of the clamping element can at least partially be contacted. In order to achieve minimum inner tensions in the clip, the clamping jaws are arranged at an angle to one another, wherein at least one reinforcing bead is formed in the clamping jaws and one of the clamping jaws has an anti-rotation means for the clamping element.
Claims
1. A clamp having a clamp band which comprises: a clamping head with two clamping jaws; and a feed-through opening, through which a clamping element is fed for tensioning the clamp, being realized in each of said clamping jaws; wherein at least one contact surface, on which a support surface of the clamping element can be placed at least in part, is realized on an edge of each of the passage openings, the clamping jaws are arranged at an angle with respect to one another, at least one reinforcing bead is realized in the clamping jaws, and one of the clamping jaws comprises an anti-rotation device for the clamping element.
2. The clamp as claimed in claim 1, wherein the clamping element comprises a screw bolt with a nut, and, where applicable, the screw bolt comprises an external thread with a friction-reducing coating.
3. The clamp as claimed in claim 2, wherein the clamping jaws are inclined at an angle to one another in such a manner that, during the tensioning operation, first of all they contact one another in part and, when clamped further, they bear against one another.
4. The clamp as claimed claim 3, wherein an angle of inclination between the clamping jaws is more than 0 and up to 10.
5. The clamp as claimed in claim 4, wherein at least one clamping jaw comprises at least one deformable lug which is directed to the other clamping jaw.
6. The clamp as claimed in claim 5, wherein the lug is realized in one piece with the clamping jaw.
7. The clamp as claimed in claim 5, wherein the lug is realized as an element which is held on the clamping jaw in particular with the clamping element.
8. The clamp as claimed in claim 7, wherein the anti-rotation device is formed by the element.
9. The clamp as claimed in claim 8, wherein at least one lug is arranged on each of both clamping jaws.
10. The clamp as claimed in claim 9, wherein at least one of the contact surfaces comprises a friction-reducing coating.
11. The clamp as claimed in claim 10, wherein the contact surface is raised, wherein the contact surface is smaller than the support surface of the clamping element.
12. The clamp as claimed in claim 11, wherein the contact surface is realized in the form of, in particular, two diametrically opposite circle segments.
13. The clamp as claimed in claim 12, wherein the contact surface is arranged in the region of the reinforcing bead which is realized in the clamping jaw.
14. The clamp as claimed in claim 13, wherein the clamp is realized as a profile clamp, the clamp band includes a base and two radially inwardly directed flanks, and the clamp band comprises, in particular, a trapezoidal or triangular cross section.
15. The clamp as claimed in claim 14, wherein at least one recess is realized in at least one position in at least one of the flanks.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Further features, details and advantages of the invention are produced from the wording of the claims and from the following description of exemplary embodiments by way of the drawings, in which:
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
DETAILED DESCRIPTION
[0032]
[0033] The clamping element 6 comprises a screw bolt 7 and a nut 8, the screw bolt being fed through feed-through openings which are not visible in
[0034] The clamp band 2 comprises a triangular cross sectional profile. For this, the clamp band 2 includes a base 11, from which two flanks 12, 13 extend in a radially inwardly angled manner. In order to achieve sufficient flexibility of the clamp band 2, so that the clamp can be tightened, recesses 14, 15, 16 are admitted at three positions in the flanks 12, 13 of the clamp band 2. A smaller or larger number of recesses is also possible.
[0035]
[0036] A contact surface for the clamping element 6 is realized on an edge 19 of the feed-through opening 17 in the form of two circle segments 20, 21 which are provided with a friction-reducing coating. As can be seen from
[0037] The second clamping jaw 5 can be constructed in an analogous manner.
[0038]
[0039]
[0040] Where applicable, the holding lugs 27, 28 can press against the nut 8 at a preliminary tension such that said nut is already secured on the clamping jaw 5 prior to the introduction of the screw bolt 7.
[0041]
[0042]
[0043] In the representation shown, the clamping jaws 4, 5 are aligned parallel to one another, they consequently run parallel to an imaginary vertical line 31, 31. Imaginary lines, which indicate the inclination outward in each case by a maximum of 5, about which the clamping jaws 4, 5 can be angled outward in the non-clamped state, are shown by way of the reference 32, 32. Imaginary lines, which indicate the inclination inward in each case by a maximum of 5, about which the clamping jaws 4, 5 can be angled inward in the non-clamped state, are shown by the reference 33, 33. An angle with an amount that is greater than 0 and smaller than or equal to 10 is consequently enclosed between the clamping jaws. This results in the clamping jaws, during the tensioning operation, gradually bearing against one another with elastic deformation, the deformation resistance produced by the elastic deformation being able to be detected, for example, by an automatic setting tool in order to enable automated, reproducible mounting in this way.
[0044] The invention is not limited to one of the afore-described embodiments, but is modifiable in diverse ways. The clamp according to the invention enables the introduction of higher clamping forces with fewer internal stresses and, in this case, is suitable, in particular, for high temperature application and applications with changing temperatures.
[0045] All features and advantages produced from the claims, the description and the drawing, including structural details, spatial arrangements and method steps can be essential to the invention both on their own per se and also in the most varied combinations.
LIST OF REFERENCES
[0046] 1. Clamp [0047] 2. Clamp band [0048] 3. Clamping head [0049] 4. Clamping jaw [0050] 5. Clamping jaw [0051] 6. Clamping element [0052] 7. Screw bolt [0053] 8. Nut [0054] 9. External thread [0055] 10. Head [0056] 11. Base [0057] 12. Flank [0058] 13. Flank [0059] 14. Recess [0060] 15. Recess [0061] 16. Recess [0062] 17. Feed-through opening [0063] 18. Reinforcing bead [0064] 19. Edge [0065] 20. Circle segment [0066] 21. Circle segment [0067] 22. Lug [0068] 23. Lug [0069] 24. Element [0070] 25. Lug [0071] 26. Lug [0072] 27. Holding lug [0073] 28. Holding lug [0074] 29. Groove [0075] 30. Groove [0076] 31. Line [0077] 32. Line [0078] 33. Line