Sealing device
09765915 ยท 2017-09-19
Assignee
Inventors
- Ralf Kutzinsky (Cologne, DE)
- Juergen Meier-Sponheuer (Herne, DE)
- Wilfried Baeumler (Bergisch Gladbach, DE)
- Ralf Michels (Leverkusen, DE)
- Oliver Naumann (Muendersbach, DE)
Cpc classification
F16J13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L55/1125
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T29/49998
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F16L55/1141
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16L55/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L55/11
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a sealing device for cylindrical or conical orifices, which is composed of an elongate sealing body made from elastically deformable material, the following components being provided for the deformation of the sealing body: a tension bolt extending through the middle, free passage region of the sealing body, a pressure sleeve seated at the inner end of the tension bolt, a brace which is arranged at the outer end of the tension bolt and through which the tension bolt engages, and an actuation element which acts upon the outer end, projecting through the brace, of the tension bolt and which, when a tensile force is exerted upon the tension bolt, enlarges the sealing body and at the same time its outer circumference.
Claims
1. A sealing device for cylindrical or conical orifices, comprising an elongate sealing body made of elastically deformable material, the following components being provided for the deformation of the sealing body: a tension bolt extending through a middle, free passage region of the sealing body, a pressure sleeve seated at an inner end of the tension bolt, a brace which is arranged at an outer end of the tension bolt and through which the tension bolt engages, and an actuation element, which acts upon the outer end of the tension bolt projecting through the brace, exerts a tensile force upon the tension bolt, wherein said tensile force deforms the sealing body and at the same time enlarges an outer circumference of the sealing body, wherein the sealing body is of concave form in length.
2. The sealing device as claimed in claim 1, wherein the sealing body is composed of elastomeric material with a Shore A hardness of above 75.
3. The sealing device as claimed in claim 1, wherein the concave sealing body has a narrowest point approximately in the middle, free passage region.
4. The sealing device as claimed in one of claim 1, wherein the sealing body includes a first frustoconical region and a second frustoconical region adjacent to the narrowest point.
5. The sealing device as claimed in claim 4, wherein an apex angle of the first frustoconical region is identical to or larger than that of the second frustoconical region.
6. The sealing device as claimed in claim 1, wherein a diameter of the pressure sleeve is adapted with slight undersize to the cross section of the cylindrical or conical orifice to be sealed off.
7. The sealing device as claimed in claim 1, wherein that region of the sealing body which is adjacent to the brace has a slightly smaller diameter than the orifice to be sealed off.
8. The sealing device as claimed in claim 1, wherein the sealing body has two ends including ring-cylindrical portions of reduced diameter that engage into corresponding reception regions of the pressure sleeve and of the brace.
9. The sealing device as claimed in claim 8, wherein in the expanded state of the sealing body, an air gap is provided in each case between outer end faces of the first frustoconical region and the second frustoconical region and outer bearing ends of the pressure sleeve and of the brace.
10. The sealing device as claimed in claim 9, wherein the actuation element is an eccentric which is connected pivotably to an outer end of the tension bolt and is equipped with a lever for pivoting the eccentric.
11. The device as claimed in claim 10, wherein a guide element is attached to the pressure sleeve to allow easy and quick introduction into a corresponding bore.
12. A method of conducting leak tests or filling operations, comprising: using the sealing device of claim 1 to grip a workpiece including a cylindrical or conical orifice.
13. A sealing device for cylindrical or conical orifices, comprising an elongate sealing body made of elastically deformable material, the following components being provided for the deformation of the sealing body: a tension bolt extending through a middle, free passage region of the sealing body, a pressure sleeve seated at an inner end of the tension bolt, wherein a diameter of the pressure sleeve is adapted with slight undersize to the cross section of the cylindrical or conical orifice to be sealed off, a brace which is arranged at an outer end of the tension bolt and through which the tension bolt engages, and an actuation element, which acts upon the outer end of the tension bolt projecting through the brace, exerts a tensile force upon the tension bolt, wherein said tensile force deforms the sealing body and at the same time enlarges an outer circumference of the sealing body, wherein the sealing body is of concave form in length, and wherein a region of the sealing body adjacent to the pressure sleeve has a slightly smaller diameter than the pressure sleeve.
14. A sealing device for cylindrical or conical orifices, comprising an elongate sealing body made of elastically deformable material, the following components being provided for the deformation of the sealing body: a tension bolt extending through a middle, free passage region of the sealing body, wherein the sealing body includes a first frustoconical region and a second frustoconical region adjacent to a narrowest point, and wherein the first frustoconical region and the second frustoconical region both have a cylindrical flat facing away from one another, a pressure sleeve seated at an inner end of the tension bolt, a brace which is arranged at an outer end of the tension bolt and through which the tension bolt engages, and an actuation element, which acts upon the outer end of the tension bolt projecting through the brace, exerts a tensile force upon the tension bolt, wherein said tensile force deforms the sealing body and at the same time enlarges an outer circumference of the sealing body, wherein the sealing body is of concave form in length.
Description
BRIEF DESCRIPTION OF THE DRAWING FIGURES
(1) The invention is illustrated by way of example in the drawing and is described in detail below by means of the drawing in which:
(2)
(3)
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(9)
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(14)
DETAILED DESCRIPTION
(15) According to
(16) To perform a sealing function, the sealing body 1 is contracted in its longitudinal direction, so that its diameter widens as at result of rolling and bears sealingly against the cylindrical or conical wall to be sealed off.
(17) For the deformation of the scaling body 1, the latter has a middle passage region, through which a tension bolt 6 extends. Arranged at the end to be introduced into an orifice to be sealed off is a pressure sleeve 2 which is seated firmly on the tension bolt 6 and against which the corresponding end of the sealing body 1 bears. At the other end of the tension bolt 6 is arranged a brace 3, through which the tension bolt 6 engages. At that end of the tension bolt 6 which engages through the brace 3, an actuation element is provided, which acts upon the tension bolt 6 and which, where a tensile force is exerted upon the tension bolt 6, contracts the sealing body 1 and consequently triggers the rolling behavior and the sealing operation associated with this.
(18) In the exemplary embodiment illustrated in
(19) When the lever 7 is pivoted downward in the direction of the arrow 20 in
(20) In the cross section illustrated in
(21) In
(22) As can be seen from
(23) As can be seen particularly from
(24) As may likewise be gathered from
(25) In the expanded state of the scaling body 1, as illustrated in
(26) Although not emphasized especially in the drawing, the apex angle of the frustoconical region 18 lying on the same side as the brace 3 may be designed to be larger than that of the frustoconical region 17 arranged on the same side as the pressure sleeve 2. This variant is suitable particularly for the sealing off of conical workpiece orifices.
(27) As may be gathered, furthermore, from
(28)
(29) When the deformation process progresses further, a bead occurs in each case in front of and behind the rolling zone 9, so that two sealing lips are formed within the workpiece S to be sealed off, specifically a rear sealing lip 10 near the brace 3 and a front sealing lip 11 near the pressure sleeve 2.
(30) With the two angular surfaces rolling one into the other, the axial forces are converted in a very careful way into radially acting forces. In this case, it can be seen, particularly in
(31) As a result of the contraction of the sealing body 1, while at the same time the frustoconical regions roll and are pushed one onto the other, the axially applied forces are distributed optimally to two radially spreading-out sealing lips 10 and 11. By virtue of this deformation mechanism, it is also possible to employ elastomers with substantially higher Shore A hardness than has been customary hitherto. Furthermore, much higher pressure forces are possible with these harder elastomers.
(32) The sealing device according to the invention, in addition to its task as a sealing element, may also be used for the rapid and reliable gripping and releasing of components which are provided with bores for internal engagement.
(33) With a view to optimal pared-down production, the sealing device according to the invention can have very versatile uses, specifically, for example, with a gripping of components, at the same time with the possibility of carrying out a leak test or filling operation.
(34) What is suitable for this purpose is, for example, the embodiment, illustrated in
(35) In order to make it easier to grip a corresponding workpiece 13 or 14, the pressure sleeve 2 may have attached to it a guide element 15 which is formed slightly conically toward its front end, so that it can easily be slipped into the bore to be correspondingly gripped and sealed off.
(36) Further examples of use are possible in automated production technology. The device according to the invention can be employed whenever parts have to be transported or filled or sealed off without any damage, reliably and efficiently.
(37)
(38) The flow of the medium passes via a connection fitting 25 into a circular slide element 26 and then through a tension bolt 27, designed as a hollow shaft, and through as guide element 28 which is drilled through.
(39) Owing to the high radial force transmission which is possible by means of the device according to the invention, transportation of components during manufacture, without any damage, can be made possible. The clamping force can be set via the pressure sleeve 2, so that sensitive and powerful clamping is possible.
(40) A further field of use of the device according to the invention is the transition-free connection of two pipe ends, as illustrated in
(41) The individual deformation steps of the sealing body 1 are illustrated in great detail in