Apparatus for bending oblong metal products, such as bars, round pieces or metal wires, and corresponding bending method
10232425 ยท 2019-03-19
Assignee
Inventors
Cpc classification
B21D11/12
PERFORMING OPERATIONS; TRANSPORTING
B21D28/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B21D11/12
PERFORMING OPERATIONS; TRANSPORTING
B21D28/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Apparatus for bending at least an oblong metal product comprising a feed channel to feed the metal product, and a bending unit positioned downstream of the feed channel and provided with at least a first contrast member and a first bending member configured to bend the metal product, on a first bending plane, around the first contrast member. The apparatus comprises a second contrast member provided in proximity to an exit end of the metal product from the feed channel and a second bending member mounted on the bending unit or in direct proximity to the bending unit, and selectively movable in a direction transverse to the first bending plane in order to bend the metal product around the second contrast member and on a second bending plane transverse to the first bending plane.
Claims
1. Apparatus for bending at least an oblong metal product, comprising: a feed channel to feed said metal product; a bending unit positioned downstream of the feed channel and provided with at least a first contrast member and a first bending member configured to bend the metal product, on a first bending plane, around said first contrast member; a second contrast member provided in proximity to an exit end of said metal product from said feed channel; and a second bending member mounted on said bending unit or in direct proximity to said bending unit, and selectively movable in a direction transverse to the first bending plane in order to bend said metal product around said second contrast member and on a second bending plane transverse to said first bending plane, wherein between said feed channel and said bending unit a shearing unit is interposed, configured to shear said metal product, and in that said second contrast member defines at least one of either a fixed part and/or a mobile part of said shearing unit.
2. Apparatus as in claim 1, wherein said second bending member is associated with an actuator configured to move said second bending member in said transverse direction.
3. Apparatus as in claim 2 wherein said actuator is connected to said first contrast member and is configured to move both said first contrast member and also said second bending member in said transverse direction.
4. Apparatus as in claim 2 wherein said first bending member is installed on a mandrel, selectively rotatable, to determine the activation of said first bending member, and in that said second bending member is associated with said mandrel, and wherein said actuator is connected to said mandrel and is configured to move the latter and said second bending member in said transverse direction.
5. Apparatus as in claim 2, wherein said second bending member is disposed in proximity to said bending unit and is mounted directly on a terminal end of said actuator.
6. Apparatus as in claim 1, wherein the second contrast member is at least partially defined by the exit end of the feed channel and is shaped to supply a contrasting action to bend the metal product on the second bending plane.
7. Apparatus as in claim 1, wherein said second bending member is associated with said first contrast member of the bending unit.
8. Apparatus as in claim 1, wherein said second contrast member extends longitudinally, partly overlapping above said bending unit, and is disposed with its terminal end substantially flush with said first contrast member.
9. Apparatus as in claim 1, wherein said first bending member is installed on a mandrel, selectively rotatable, to determine the activation of said first bending member, and in that said second bending member is associated with said mandrel.
10. Apparatus as in claim 9 wherein said second bending member is mounted on a perimeter edge of said mandrel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) These and other characteristics of the present invention will become apparent from the following description of some forms of embodiment, given as a non-restrictive example with reference to the attached drawings wherein:
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(9) To facilitate comprehension, the same reference numbers have been used, where possible, to identify identical common elements in the drawings. It is understood that elements and characteristics of one form of embodiment can conveniently be incorporated into other forms of embodiment without further clarifications.
DETAILED DESCRIPTION OF SOME FORMS OF EMBODIMENT
(10) With reference to
(11) The apparatus 10 comprises a drawing unit, of the known type and not shown in the drawings, configured to move the metal product P in a direction of feed D.
(12) According to another aspect of the invention, the apparatus 10 comprises a feed channel 11 to feed the metal product P and a bending unit 12 positioned downstream of the feed channel 11.
(13) The function of the feed channel 11 is to maintain the metal product P guided in its movement in the direction of feed D.
(14) In possible formulations of the invention, the feed channel 11 develops linearly in a longitudinal direction X, during use substantially coinciding with the direction of feed D of the metal product P.
(15) One possible solution provides that the feed channel 11 comprises a pipe, one or more guides, a rollerway with rolls possibly mounted with different orientations, or possible combinations thereof.
(16) According to possible formulations of the present invention it can be provided that the drawing unit is mounted in an intermediate position along the longitudinal extension of the feed channel 11, although an installation upstream of the latter is not excluded.
(17) In the form of embodiment shown in
(18) According to one formulation of the invention, the bending unit 12 comprises at least a first contrast member 15 and first bending member 16 configured to bend the metal product P around the first contrast member 15 and on a first bending plane ?. The first contrast member 15 can comprise one or more pins or cylindrical bodies.
(19) In possible alternative solutions, the first contrast member 15 can comprise two elongated pins defining a central passage channel of the metal product.
(20) In a possible formulation of the invention, the first bending member 16 can be installed on a disc, or mandrel 17, selectively rotatable around an axis of rotation Z located substantially orthogonal to the first bending plane ?. To this purpose a motor member, not shown in the drawings, can be connected to the mandrel 17, configured to allow the rotation of the mandrel 17 and the activation of the first bending member 16.
(21) The mandrel 17 can have a flat development and can in practice define the first bending plane ?.
(22) The first contrast member 15, at least during the bending operations, is kept stationary and the metal product P is bent around it.
(23) According to a possible solution, see
(24) According to possible solutions, movement members 19 can be connected to the support frame 18, provided to move at least the first contrast member 15 and the first bending member 16 on the first bending plane ? and in a direction of movement M transverse to the direction of feed D of the metal product P.
(25) The support frame 18 in its turn can also comprise a support plane 20 located, during normal use, substantially parallel and coincident with the first bending plane ?.
(26) The support plane 20 can be selectively translated along the direction of movement M by the action of the movement members 19.
(27) In correspondence to the exit of the metal product P, the feed channel 11 is provided with an end 21.
(28) According to one solution of the invention, the end 21 of the feed channel 11 is provided with, or defines, a second contrast member 22, shaped and configured to supply a contrasting action to the bending of the metal product P on a second bending plane ?, located substantially transverse to the first bending plane ?.
(29) In possible implementations of the present invention, the second bending plane ? is disposed substantially orthogonal with respect to the first bending plane ?. It can also be provided that the longitudinal direction X lies on the intersection between the first ? and the second bending plane ?.
(30) According to a possible formulation of the present invention, shown for example in
(31) According to a possible variant, the second contrast member 22 is made in a single body with the feed channel 11.
(32) The second contrast member 22 is sized and made of materials suitable to resist the bending stresses to which it can be subjected during use.
(33) According to a possible formulation of the invention, see
(34) According to possible formulations of the present invention, the conveying channel 24 is provided with an introduction portion 25 with a cross section size substantially equal to that of the feed channel 11.
(35) According to other forms of embodiment, downstream of the introduction portion 25 the conveying channel 24 is provided with a guide portion 26, provided to guide the movement of the metal product P. The guide portion 26 can have a reduced section size with respect to that of the introduction portion 25, so as to suitably control the movement of the metal product P.
(36) Between the introduction portion 25 and the guide portion 26 a rounded portion can be interposed, configured to prevent the occurrence of blockages of the metal product P.
(37) According to a possible formulation of the present invention, the conveying channel 24 of the second contrast member 22 is provided, in its terminal end, with at least a contrast portion 23 against which, during use, the metal product P is bent.
(38) The contrast portion 23 can have a rounded configuration, according to a radius of curvature R. The radius can have different values, for example depending on the diameter of the metal product and/or the shape of the stirrup to be made.
(39) According to an alternative form of embodiment of the present invention, shown for example in
(40) According to possible formulations of the present invention, the second contrast member 22 defines at least a part of the shearing unit 29.
(41) With reference to
(42) According to one form of embodiment, shown for example in
(43) According to possible forms of embodiment, possibly combinable with the forms of embodiment described above, the mobile part 31 of the shearing unit 29 is mounted on the support plane 20 and is activated by actuating the movement members 19.
(44) However it is not excluded that the shearing unit 29 can be applied in an intermediate position of the feed channel 11 or in proximity to the end 21 of the latter.
(45) According to one form of embodiment of the invention, the apparatus 10 comprises a second bending member 27 mounted on the bending unit 12, or in direct proximity to the bending unit 12, and selectively movable in a transverse direction T with respect to the first bending plane ?. In particular, the second bending member 27 is configured to bend the metal product P around the second contrast member 22 and on the second bending plane ?.
(46) According to a possible form of embodiment of the invention, the second bending member 27 is associated, or directly or indirectly connected to an actuator 28 which is configured to move the second bending member 27 in the transverse direction T.
(47) The actuator 28 can comprise at least one of either an electric actuator, a hydraulic actuator, a rack, a worm screw, or similar or comparable members suitable to the purpose.
(48) According to possible forms of embodiment, the actuator 28 can be attached to the support frame 18 of the bending unit 12.
(49) According to a first formulation of the present invention, for example shown in
(50) In particular, it can be provided that the second bending member 27 is made in a single body with the first contrast member 15 or, in other forms of embodiment, that the second bending member 27 is a separate component and subsequently connected to the first contrast member 15. This latter solution allows to suitably size the different components also in relation to the specific mechanical stresses to which they will be subjected during use.
(51) In a possible implementation of the invention, the actuator 28 is connected to the first contrast member 15 in order to move the second bending member 27 in the transverse direction T.
(52) In particular, with reference to
(53) Indeed, with this form of embodiment the first contrast member 15 and the second bending member 27 substantially coincide in the same component, or are substantially integrated with respect to each other. This solution allows to simplify the complexity of the apparatus 10 since, with the necessary modifications, it is possible to use known components already present in the apparatus 10 to carry out functions not previously envisaged. Moreover, this solution allows to reduce and contain the overall bulk of the apparatus 10.
(54) The actuator 28 can be configured to take the first bending member 15 and the second bending member 16 into a non-operating condition, for example retracted with respect to the support plane 20.
(55) The actuator 28 can also be provided to move the first contrast member 15 and the first bending member 16 simultaneously.
(56) According to the form of embodiment shown in
(57) Possible implementations can provide that the second bending member 27 comprises a cylindrical body 34 mounted idle on the first contrast member 15 and in which its circumferential surface defines the contact portion 33 with the metal product P.
(58) In possible solutions, not shown in the drawings, it can be provided that the circumferential surface of the cylindrical body 34 is provided with a circumferential groove to receive and guide the metal product P at least during bending on the second bending plane ?.
(59) As shown in
(60) This solution not only does not conflict with the need to bend the metal product P on the first bending plane ?, but also allows to dispose the second contrast member 22, during use, substantially adjacent to the second bending member 27. This allows a correct execution of the bends also on the second bending plane ?.
(61) According to a second formulation of the present invention, shown for example in
(62) In this form of embodiment, it can be provided that the actuator 28 is connected to the mandrel 17 and is configured to move the latter and the second bending member 27 in the transverse direction T.
(63) According to some forms of embodiment of the present invention, the second bending member 27 is mounted on a perimeter edge of the mandrel 17 and can be selectively positioned, for example by means of the motor member that drives the latter, in order to be disposed on each occasion substantially facing the second contrast member 22.
(64) It can be provided that the support frame 18 is provided with guide members 35 provided with guide seatings oriented in the transverse direction T, in order to guide the movement of the mandrel 17.
(65) During the execution of the bends on the first bending plane ?, the mandrel 17 is disposed substantially aligned to the support plane 20; when it becomes necessary to make bends on the second bending plane ?, it is taken into a condition protruding from the support plane 20, generating a thrust, in this case toward the outside of the support plane 20, on the metal product P disposed there.
(66) According to a possible form of embodiment, the second bending member 27 can be made in a single body with the mandrel 17, even though it is not excluded that in other forms of embodiment, shown for example in
(67) As shown in
(68) According to the forms of embodiment of
(69) According to another formulation of the present invention, shown for example in
(70) The second bending member 27 can assume a first operating condition, retracted with respect to the support plane 20, and a second operating condition, protruding from the support plane 20.
(71) The second bending member 27 can be mounted directly on a terminal actuation end 37 of the actuator 28.
(72) As shown in
(73) With reference to the form of embodiment shown in
(74) In particular, a possible form of embodiment, shown for example in
(75) In particular, the entity of movement of the second bending member 27 allows to determine the entity of bending of the metal product P around the second contrast member 22 and on the second bending plane ?.
(76) According to some forms of embodiment, an example of which is shown in
(77) The second bending member 27 can be moved in the transverse direction T that is disposed inclined toward the feed channel 11 and with respect to the first bending plane ? at an angle of inclination ?. The angle of inclination ? can be comprised between 25? and 65?, preferably between 30? and 60?, even more preferably between about 40? and 50?.
(78) To this purpose it is provided that the actuator 28 is mounted on the support frame 18 inclined, according to said angle of inclination ?, toward the feed channel 11.
(79) With this configuration, the second bending member 27 can make bends with angles even bigger than 90? with a single exit and re-entry cycle.
(80) With reference to
(81) In particular, with reference to
(82) In this operating condition, the first contrast member 15 and the second bending member 27 associated with it are disposed below the metal product P so as not to interfere with the latter during the movements.
(83) Subsequently, see
(84) During the movement of the second bending member 27, the latter enters into contact with the metal product P and, by a thrust action, bends the first segment 41 around the second contrast member 22. With this operation, the metal product P can be bent directly by about 90? or, as shown in
(85) In the latter case it can be provided that the bending of the first segment 41 of the metal product P is subsequently completed as shown in
(86) In particular, as can be seen in
(87) In this condition, the metal product P is made to advance toward the bending unit 12 by a determinate length. Subsequently, as shown in
(88) According to a possible variant, alternative to the operations shown in
(89) The metal product P can also be bent on the first bending plane ?. In this case the metal product P is moved in the direction of feed D making a second segment 42 of the metal product P protrude from the feed channel 11 toward the bending unit 12.
(90) Subsequently, the bending unit 12 is activated in order to command the activation of the first bending member 16 and to bend the second segment 42 of the metal product P around the first contrast member 15.
(91) It is clear that modifications and/or additions of parts may be made to the apparatus for bending oblong metal products and the corresponding bending method as described heretofore, without departing from the field and scope of the present invention. It is also clear that, although the present invention has been described with reference to some specific examples, a person of skill in the art shall certainly be able to achieve many other equivalent forms of apparatus 10 for bending oblong metal products P and the corresponding bending method, having the characteristics as set forth in the claims and hence all coming within the field of protection defined thereby.