Gripping device
12163603 ยท 2024-12-10
Assignee
Inventors
Cpc classification
F16L1/23
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B25B1/20
PERFORMING OPERATIONS; TRANSPORTING
B25B1/2426
PERFORMING OPERATIONS; TRANSPORTING
F16L1/207
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T279/1986
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
F16L3/1066
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16L1/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B25B1/24
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A clamp (1000) designed to axially block an axisymmetric body (CA) by applying radial actions (forces) and provided with a plurality of gripping devices (1) distributed concentrically around an axis (AX) and developed along a given direction (D) to apply radial actions (forces) centered on said central axis (AX); each device (1) comprising a support assembly (10) and a gripping assembly (20) coupled by means of a plate (22) that supports at least one holding unit (200) at the front; each holding unit (200) comprising at least one toothed sliding block (202) carried in a freely rotatable and axially fixed way and axial-hinge coupling members (30) arranged between the plate (22) and each sliding block (202) and distributed along the direction (D).
Claims
1. A gripping device for a clamp having a central axis (AX) and extending in a direction (D) parallel to the central axis (AX), the gripping device being designed to axially block an axisymmetric body by applying radial actions centered on the central axis (AX), the gripping device comprising: a support assembly and a gripping assembly coupled together by a plate that delimits the gripping assembly at a rear thereof, the gripping assembly including at a front, at least one holding unit, each holding unit including: i) at least one toothed sliding block carried so as to be freely rotatable while axially fixed with respect to said direction (D), ii) hinge coupling elements axially distributed along said direction (D) and arranged between the plate and each said sliding block, wherein the hinge coupling elements include tabs carried by the plate and abutment elements carried at the rear of the sliding block and shape-fitted to the tabs; wherein each tab has at a front a concave seat with a cylindrical shape, and the abutment elements are axially distributed and delimit longitudinally, two-by-two, a second compartment, which is in turn transversally delimited by a partially cylindrical sheath concentric with a fulcrum axis and has an angular extension that approximates the concave seat.
2. The gripping device according to claim 1, wherein the tabs are removable from the plate and define a plurality of axial abutment surfaces that axially delimit first compartments distributed along said direction (D) for the abutment elements, wherein each abutment element is delimited by a surface facing the plate.
3. The gipping device according to claim 1, further comprising radial reference members, which are designed to hold the plate and gripping assembly in position and comprise a pair of lids coupled to the plate at ends of the plate on longitudinally opposite sides, and a pair of pins, which engage each sliding block in respective end portions coaxially with the fulcrum axis.
4. The gripping device according to claim 3, wherein the hinge coupling elements each comprise an elongated member that incorporates at a rear the abutment elements and the second compartments, each hinge coupling element being made in a single piece with, or is rigidly coupled to, the sliding block on the side of the plate.
5. The gripping device according to claim 4, wherein said hinge coupling elements comprise a ribbed body interposed between said plate and said sliding block, the ribbed body being shaped for hinged coupling with the plate and with the elongated member and between the tabs and the abutment elements.
6. The gripping device according to claim 5, wherein said ribbed body has, at the rear, third toothed members each of which being designed to engage a first compartment and a recess for enabling shape fitting with the concave seat and, at the front, a plurality of housings each housing being shaped in a way similar to the first compartment for housing the abutment element.
7. The gripping device according to claim 1, wherein each said tab is made of steel or a material with antifriction characteristics if, in use, it is coupled to steel; said abutment elements being made of steel or of a material with antifriction characteristics if, in use, they are coupled to steel.
8. A clamp for blocking an axisymmetric body (CA) axially by applying radial actions, the clamp comprising a plurality of gripping devices according to claim 1 distributed concentrically about an axis (AX) and developing in a given direction (D), each gripping device having a support assembly and a gripping assembly coupled by a connection element, a driving assembly for each said gripping device, each said driving assembly being designed to alternatively move the respective said support assembly between a retracted inactive position and an advanced active position transversal to said given direction, each said gripping device further having a supporting member coupled to a respective said driving assembly via a ball joint.
9. A gripping device for a clamp having a central axis (AX) and extending in a direction (D) parallel to the central axis (AX), the gripping device being designed to axially block an axisymmetric body by applying radial actions centered on the central axis (AX), the gripping device comprising: a support assembly and a gripping assembly coupled together by a plate that delimits the gripping assembly at a rear thereof, the gripping assembly including at a front, at least one holding unit, each holding unit including: i) at least one toothed sliding block carried so as to be freely rotatable while axially fixed with respect to said direction (D), ii) hinge coupling elements axially distributed along said direction (D) and arranged between the plate and each said sliding block, wherein the hinge coupling elements include tabs carried by the plate and abutment elements carried at the rear of the sliding block and shape-fitted to the tabs; The gripping device according to claim 1, wherein each said sliding block is delimited at a front thereof by a face provided with a plurality of teeth arranged transversally to said given direction (D) for the entire transversal extension of said sliding block, each said tooth having a triangular or rectangular, cross-section.
10. The gripping device according to claim 9, wherein said face has a prismatic or concave or convex shape and has at the front at least two longitudinal portions, each said longitudinal being flat or convex or concave and having a longitudinal extension that is substantially identical to a longitudinal extent of said plate.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) Further characteristics and advantages of the clamp and of the respective gripping device according to the present invention will be more apparent from the following description of respective non-limiting embodiments represented in the drawings, wherein identical or corresponding parts of the same device are identified by means of the same reference numbers. In particular:
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DETAILED DESCRIPTION
(19) In
(20) With particular reference to
(21) Again, with reference to
(22) With particular reference to
(23) As can be seen from
(24) Moreover, the abutment elements 34 are also distributed regularly spaced along the direction D and each of them axially engages a first compartment 320. Each abutment element 34 is delimited by a surface 340 facing the plate 22. The solution described allows the axial loads acting on the body CA to be distributed uniformly between the tabs 32 and the abutment elements 34.
(25) It is easily understood that it can be particularly advantageous for the tabs 32 and/or the abutment elements 34 to be made of steel, bronze, or any material with antifriction characteristics in consideration of the conditions of use, taking into account the material with which the tabs 32 and the relative abutment elements 34 are made.
(26) Again, with reference to
(27) Each gripping device 1 comprises axial reference members 40 which comprise a pair of lids 42 carried by said plate 22 at its ends on longitudinally opposite sides and a pair of pins 44 which engage each sliding block 202 in respective end portions 2020 coaxially with the fulcrum axis 342.
(28) Again with reference to
(29) Each sliding block 202 is delimited at the front by a face 2026 provided with a plurality of teeth 2028 arranged transversally to the direction D for the entire transversal extension of the sliding block 202. Each tooth 2028 (more clearly shown in
(30) Each face 2026 has a substantially prismatic and concave shape and can be divided into two longitudinal portions 20260 by a longitudinal median groove 20262. Each portion 20260 has been represented as flat in the accompanying figures, but can indifferently be flat, convex or concave according to the requirements of use of the clamp 1000.
(31) The use of the clamp 1000 and of the gripping devices 1 of which it is composed can be easily understood from the description above and do not require further explanation. However, it might be useful to specify that the particular choice to couple each sliding block 202 in an jointed/tilting way with respect to the plate 22 makes it possible to circumferentially distribute the load exerted radially on the body CA by each gripping device 1 in a substantially uniform way on the faces 2026 of the sliding blocks 202 of the clamp 1000 engaged in gripping the body CA. In this way, the load is uniformly distributed for each face 2026, thus where the stress of the external sheath of the body CA is circumferentially uniform.
(32) Moreover, as can be seen in
(33) Finally, it is clear that modifications and variants can be made to the clamp 1000 and to each respective gripping device 1 described and illustrated herein without departing from the scope of the present invention.
(34) For example, with reference to
(35) With reference to
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(37) According to the above description, the clamp 1000 according to the present invention and each of the gripping devices 1 of which it is composed solve the problem of minimizing the impact determined by applying radial force on the external sheath of each body CA held due to the holding units 200 whose sliding blocks 202 can be orientated freely also based on the deformation effectively shown by the body CA being gripped on an extension that is substantially identical to that of each gripping device 1, and hence of the clamp 1000 that comprises it. In this way the uniformity of the pressure applied radially to the segments of body CA subjected to application of radial load to be held, and consequently the capacity to withstand axial loads is maximized and deterioration of the body CA and of the respective external sheath is limited. Moreover, the distribution of the axial load on a plurality of pairs consisting of a tab 32 and an abutment element 34, through the contact determined with the side surfaces 33 along the entire axial extension of the plate 22, and consequently according to the above description also for the entire axial extension of the sliding blocks 202, allows the specific pressure in the contact between the tabs 32 and the abutment elements 34 to be limited, and consequently the radial dimension of the gripping assemblies 20, and hence of the gripping devices 1 as a whole, to be limited.