DEVICE HAVING A QUICK COUPLING SYSTEM FOR FASTENING AN EXCHANGEABLE HEAD
20220176538 · 2022-06-09
Inventors
Cpc classification
B25F3/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B25F3/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A power tool operable with an exchangeable tool head, and comprising a tool body, and a hydraulic cylinder with a main piston A quick coupling system is arranged at a free end of the tool body and includes an actuation unit and a locking unit movable by the actuation unit between a released position and a locked position to secure the exchangeable head to the tool body. Thee locking unit comprises a first and a second half-ring radially movable between the released position and the locked position. When in the locked position the locking unit is adapted to secure the exchangeable head to the tool body, such that transmission forces can be exchanged between the exchangeable head and the main piston. When in the released position the locking unit is adapted to release any force applied to the exchangeable head to remove the exchangeable head.
Claims
1. A power tool operable with an exchangeable tool head, the power tool comprising: a tool body extending longitudinally along a tool axis to a free end; a hydraulic cylinder, the hydraulic cylinder including a main piston movable inside the hydraulic cylinder under the effect of an injection of pressurised fluid into an interior of the cylinder; a quick coupling system arranged at the free end of the tool body and comprising: an actuation unit; and a locking unit movable by the actuation unit between a released position and a locked position to secure the exchangeable head to the tool body, and the locking unit comprises a first half-ring and a second half-ring radially movable between the released position and the locked position; and wherein in the locked position the locking unit is adapted to secure the exchangeable head to the tool body, such that transmission forces can be exchanged between the exchangeable head and the main piston, and wherein in the released position the locking unit is adapted to release any force applied to the exchangeable head in order to remove the exchangeable head.
2. The power tool according to claim 1, and further comprising: a first end portion and a second end portion on each of the first half-ring and the second half-ring , and each of the first end portion and the second end portion comprise a groove; the actuation unit further comprises a first actuation part and a second actuation part, and both the first actuation part and the second actuation part each includes a first actuation segment and a second actuation segment; and each of the second actuation segments partly extend within the respective groove.
3. The power tool according to claim 2, wherein: the second actuation segment of the first actuation part partly extends in the grooves of the first end portions of the first half ring and second half ring, and the second actuation segment of the second actuation part partly extends in the grooves of the second end portions of the first half ring and second half ring.
4. The power tool according to claim 1, wherein each of the first half ring and the second half ring has a curved shape with a front surface, a rear surface, two end portions, and two lateral portions extending between and perpendicular to the front surface and the rear surface, and: the rear surface is flat; the front surface comprises a first area extending parallel to the rear surface and a second area having a surface forming an angle with regard to the rear surface; and a shoulder is between the first and second areas, such that a first thickness of the first half ring and the second half ring between the rear surface and the first area is greater than a second thickness between the rear surface and the second area.
5. The power tool according claim 1, wherein the quick coupling system further comprises a sleeve slidingly arranged around the quick coupling system, the sleeve movable along the tool axis; the actuation unit is connected to the sleeve and adapted to be radially moved by the sleeve from a rest position to an active position; and when the actuation unit is in the rest position then the first half ring and the second half ring are in the locked position; and when the actuation unit is in the active position then the first half ring and the second half ring are forced in the released position.
6. The power tool according to claim 5, wherein the sleeve comprises an internal surface facing the tool body and an external surface opposite the internal surface, and the internal surface comprises a slope which cooperates with the actuation unit, such that during movement of the sleeve, the actuation unit slides along the slope, resulting in the actuation unit moving radially toward the tool axis between the rest position and the active position.
7. The power tool according to claim 6, wherein the slope is a sloped groove and the actuation unit comprises a guiding pin inside the sloped groove.
8. The power tool according to claim 1, wherein the main piston is axially displaceable along a cylinder axis between a first position and a second position under the effect of an injection of the pressurised fluid into the interior of the cylinder, and wherein the main piston comprises a first end forming a piston surface, and a second end, opposite the first end, wherein the second end comprises a recess, in which an elastic element and a mushroom piston are arranged.
9. The power tool according to claim 1, and further comprising a pressure relief valve connected to the hydraulic cylinder.
10. An exchangeable tool head for performing work on a workpiece in cooperation with a power tool including: a tool body, a hydraulic cylinder having a main piston, a quick coupling system arranged on tool body and including an actuation unit, and a locking unit movable by the actuation unit between a released position and a locked position; and the exchangeable tool head comprising: a functional part adapted to apply a force to the workpiece, and an interface part for coupling with the tool body via the quick coupling system, and the interface part comprises: a circular groove adapted to receive the locking unit; a chamfer for facilitating the insertion of the head within the power tool; and a recess for partly receiving the main piston.
11. The exchangeable head according to claim 10, wherein the circular groove is formed by a bottom, a first lateral wall, and a second lateral wall; and the second lateral wall is inclined with regard to the first lateral wall.
12. The exchangeable head according to claim 10, further comprising a head piston actuatable by the main piston.
13. An hydraulic tool comprising: a tool body extending longitudinally along a tool axis to a free end; a hydraulic cylinder, the hydraulic cylinder including a main piston movable inside the hydraulic cylinder under the effect of an injection of pressurised fluid into an interior of the cylinder; a quick coupling system arranged at the free end of the tool body and comprising: an actuation unit; and a locking unit movable by the actuation unit between a released position and a locked position to secure the exchangeable head to the tool body, and the locking unit comprises a first half-ring and a second half-ring radially movable between the released position and the locked position; and an exchangeable tool head comprising: a functional part adapted to apply a force to the workpiece; and an interface part for coupling with the tool body via the quick coupling system, and the interface part comprises: a circular groove adapted to receive the locking unit; a chamfer for facilitating the insertion of the head within the power tool; and a recess for partly receiving the main piston; and wherein the quick coupling system is removably connectable to the circular groove of the exchangeable head, such that when in the locked position of the locking unit, the exchangeable head is secured to the tool body with the half rings extending inside the circular groove, and in the released position, the exchangeable head can be removed from the tool body; and wherein in the locked position the locking unit is adapted to secure the exchangeable head to the tool body, such that transmission forces can be exchanged between the exchangeable head and the main piston, and wherein in the released position the locking unit is adapted to release any force applied to the exchangeable head in order to remove the exchangeable head; and
14. The hydraulic tool according to claim 13, wherein, in the locked position of the locking unit , the first half ring and the second half ring cooperate with the circular groove in a form-locking manner, and an inclined surface of the circular groove cooperating with a slope provided on the half-rings and an edge of the circular ring cooperating with a shoulder of the half-rings.
15. A method for mounting an exchangeable tool head to a hydraulic tool comprising the following steps: providing a hydraulic tool comprising: a tool body extending longitudinally along a tool axis to a free end; a hydraulic cylinder, the hydraulic cylinder including a main piston movable inside the hydraulic cylinder under the effect of an injection of pressurised fluid into an interior of the cylinder; a quick coupling system arranged at the free end of the tool body and comprising: an actuation unit; and a locking unit movable by the actuation unit between a released position and a locked position to secure the exchangeable head to the tool body, and the locking unit comprises a first half-ring and a second half-ring radially movable between the released position and the locked position; and wherein in the locked position the locking unit is adapted to secure the exchangeable head to the tool body, such that transmission forces can be exchanged between the exchangeable head and the main piston; wherein in the released position the locking unit is adapted to release any force applied to the exchangeable head in order to remove the exchangeable head; wherein the locking unit is in the locking position; and providing an exchangeable head comprising: a functional part adapted to apply a force to the workpiece; and an interface part for coupling with the tool body via the quick coupling system, and the interface part comprises: a circular groove adapted to receive the locking unit; a chamfer for facilitating the insertion of the head within the power tool; and a recess for partly receiving the main piston); inserting the exchangeable head within the tool body by pushing the exchangeable head along an insertion axis, such that a portion of the main piston enters the recess provided on the interface part and the chamfer contacts the locking unit); moving the insertion head further along the insertion axis toward the tool body such that the chamfer pushes the locking unit from the locked position toward a released position, moving the insertion head still further along the insertion axis toward the tool body such that the locking unit faces the circular groove and the locking unit automatically return in the locked position; and wherein the connection between the exchangeable head and the tool body requires a pushing force of at least 80 Newtons.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
[0029] Other features and advantages will become more apparent from the description that follows, which is purely illustrative, and not limiting and should be read with reference to the accompanying drawings, in which:
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
[0041]
[0042]
[0043]
[0044]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0045] On the different figures, the same reference signs designate identical or similar elements.
[0046]
[0047] The device 12 is commonly provided with a fluid reservoir 24 having a cavity 26 intended to contain fluid. The fluid is typically oil. The hydraulic tool 10 is notably a handheld hydraulic apparatus. An electric motor is for instance disposed in the device 12 or connected to the device 12. Drive of the tool 10 is actuated by means of a battery integrated into the device 12. When a finger operated switch 28 is actuated, fluid is pumped out of the reservoir 24 into the cylinder 20, thereby moving the main piston 22.
[0048] The quick coupling system 18 is arranged at a free end of the tool body 18, as depicted in
[0049] The locking unit 32 comprises two half rings 34a, 34b. The first half ring 34a is identical to the second half ring 34b. First and second half rings 34a, 34b are arranged facing each other such that they define an opening.
[0050] As shown in
[0051] The rear surface 38 is sensibly flat. In other words, the rear surface 38 extends sensibly within a plan. The front surface 36, opposite the rear surface 38 comprises two area 44, 46. The first area 44 is sensibly flat and extends parallel to the rear surface 38. The second area 46 is inclined with regard to the first area 44. A shoulder 48 is provided between the first and the second area 44, 46, such that the thickness between the rear surface 38 and the first area 44 is greater than the thickness between the rear surface 38 and the second area 46. Besides, the thickness of the half ring between the second area and the rear surface 38 decreases when going from the second lateral portion 42b to the shoulder 48. The second area 46 is in the shape of a crescent, as better illustrated in
[0052] The first end portion 40a comprises a groove 50a. The second end portion 40b comprises a groove 50b. A first and second through hole 52 are provided between the rear surface and the first area at the vicinity of the end portions for receiving a first and a second attachment pin 54. The pins 54 enable to connect springs R1, R2 (see
[0053] The half rings 34a, 34b are for instance made of metal.
[0054] As previously mentioned, the half rings 34a, 34b are arranged within the quick coupling system 16 facing each other. More particularly, the lateral portions 42a, 42b are facing each other. For instance, the concave side of the lateral portions 42a, 42b are facing each other. The lateral surfaces define each two cylindrical surfaces having different main planes. The first end portions 40a are arranged facing each other. The second end portions 40b are arranged facing each other. The rear surfaces 38 extend for instance in the same plan.
[0055] The actuation unit 30 partly extends between two end portions 40a, 40b of the half rings 34a, 34b, as notably seen in
[0056] The quick coupling system comprises a housing 62. The housing 62 is fixedly connected to a free end of the tool body 18, and the locking and actuation units 30, 32 are movingly arranged within the housing 62. More particularly, the housing 62 may have a cylindrical shape defining an opening and two lateral recesses 64a, 64b adapted to receive the first actuation segments 60a. The recesses 64a, 64b are for instance arranged opposite each other, as better seen in
[0057] The quick coupling system is symmetrical with a mirror symmetry with regard to a plan orthogonal to the tool axis.
[0058] The first actuation segments 60a interact with a sliding sleeve 66. The sleeve 66 is arranged around the housing 62. The sleeve 66 is movable along the tool axis X. The sleeve 66 comprises an internal surface facing the quick coupling system and an external surface, opposite the internal surface. The internal surface is provided with a slope 68. More particularly the internal surface comprises a sloped groove 68. For instance, two sloped grooves 68 are provided. The two sloped grooves are arranged opposite each other. The first sloped groove is arranged facing the first actuation part. The second sloped groove is arranged facing the second actuation part. The sleeve 66 controls the position of the actuation unit 30. For instance, the sleeve 66 is connected to the first actuation segments 60a, as better seen in
[0059] The main piston 22, and more particularly its piston pin 78 is arranged concentrically to the quick coupling system 16 and along the tool axis X. The piston pin 78 is axially movable along the tool axis X and comprises a recess 80 arranged at the free end of the piston pin 78. A spring 82 is arranged in the recess 80 and a mushroom piston 84 interferes with the spring 82. The mushroom piston 84 partly protrudes from the piston pin 78, notably when the spring 82 is in a rest position. The mushroom piston 84 is movable along the tool axis X.
[0060] The device 12 further comprises a pressure relief valve 86 connected to the cylinder 20. The pressure relief valve 86 is detailed notably on
[0061] More particularly, the pressure relief valve 86 comprises a valve body 88, a fluid circulation channel 90, a needle 92 and a seat 94. The needle 92 is movable relative to the valve body 88 between a closed position in which the needle 92 is in contact with the seat 94 in order to close the channel and an open position in which the needle is at a distance from the seat in order to allow fluid to circulate in the channel 90. The seat 94 is movable relative to the valve body so that, as soon as fluid circulates in the channel because of the movement of the needle to the open position, the fluid causes a movement of the seat 94 relative to the valve body 88 that tends to move the seat away from the needle and prevents the seat from returning towards the needle, in order to maintain the circulation of fluid in the channel. By virtue of the movable seat 94, the pressure relief valve remains open as long as fluid is circulating in the channel, which allows complete evacuation of the fluid contained in the cylinder of the main piston. Thus, the fluid returns automatically and rapidly to the reservoir as soon as the pressure in the cylinder has reached a predetermined pressure threshold. The pressure relief valve and how said pressure relief valve cooperates with the main piston 22 is more particularly detailed in EP2626608A1 which is herein incorporated by reference.
[0062] The quick coupling system 16 is provided for engaging and securing the exchangeable head 14 to the device 12.
[0063] The exchangeable head 14 comprises a functional part 96. For example, the exchangeable head 14 is a crimping head and the functional part 96 includes dies. In another embodiment the exchangeable head 14 is a cutting head and the functional part 96 includes blades or jaws. More generally, the functional part 96 is adapted to be actuated by the main piston in order to apply a force on an element (a cable, for example).
[0064] Opposite the functional part 96, the exchangeable head 14 comprises an interface part 98 for its coupling to the device 12. The interface part 98 is adapted to be inserted inside the housing 62. The interface part 98 may comprise a shoulder 100 adapted to abut the housing 62.
[0065] The interface part 98 is designed to engage with the quick coupling system 16. More particularly, the interface part 98 comprises a circular groove 102 adapted to receive the locking unit 32. The circular groove 102 receives the first and the second half rings 34a, 34b when said half rings are in the locking position. The circular groove 102 is formed by a bottom 104, a first and a second lateral wall 106, 108. In a cross-section, the first wall 106 extends sensibly orthogonal from the bottom 104, wherein the second wall 108 is inclined with regard to the first wall 106. The inclination of the second wall corresponds to the inclination of the second area 46 of the half rings 34a, 34b.
[0066] The interface part 98 further comprises on its free end adapted to be directed toward the device a chamfer 110. The chamfer 110 allows an easy insertion of the interface part 98 within the housing 62, but most importantly it allows to radially push the locking unit 32 from its locking position toward its released position.
[0067] An interface recess 112 is provided at the end of the interface part 98. The recess 112 is adapted to receive the mushroom piston 84 and a portion of the piston pin 78. Thus, the motion of the main piston 22 may be transferred to the functional part 96 of the head in order to impress a force to an element. For instance, the head comprises a head piston 114 which interacts directly with the piston pin.
[0068]
[0069]
[0070] The first head piston 128 extends between the second head piston 132 and the main piston 22 (and mushroom piston) when the head 14 is connected to the device 12. A shoulder 134 is provided between the first section 126 and the second section 130.
[0071] The first head piston 128 comprises a first head piston surface 136 which is facing the mushroom piston and the main piston 22 when the exchangeable head 14 is secured to the device 12. The first head piston 128 is actuated directly by the main piston. The first head piston 128 comprises a first piston rod 138 extending toward the second head piston 132. The second head piston 132 comprises a second head piston surface 140 and a second piston rod 142. The second head piston surface 140 is arranged facing the first section 126. In the rest position, the second head piston surface 140 may abut against the shoulder 134. The second head piston surface 140 is provided with a second head recess 144 in which the first piston rod 138 can be guided.
[0072] The first head piston surface is adapted to slide within the first section (notably through the action of the main piston, as explained in more detail below). The first section comprises fluid, notably oil. The first head piston surface is adapted to move toward the second head piston, thus compressing the fluid provided in the first section. The compressed fluid applies a force on a second head piston surface. For instance, the first piston rod 138 does not forward any translation motion to the second head piston 132. The translation motion of the second head piston 132 is realized through the force applied by the fluid provided and compressed in the head cylinder 124.
[0073] The second piston rod 142 directly interacts with the first die 116 and thus moves the first die 116. The ratio between the first and second diameters allows to increase the compression force generated by the second head piston 132. The stroke of the first head piston is the twice the stroke of the second head piston.
[0074] The first die 116 and the second die 118 each defines a profile (or opening) sized and shaped to receive a strut channel inserted therein. The profile or opening extends through the dies 116, 118. In another embodiment, as seen notably in
[0075] Referring to
[0076] A spring 148 may be provided between the frame 120 and the second head piston in order to move the second head piston automatically back to its rest position when no forces are applied on the first and second head pistons. In the rest position, the dies are back in a first position where the openings of the first die face the openings of the second die.
[0077] As seen in
[0078] The exchangeable head of
[0079] In order to form a hydraulic tool 10 adapted to perform an operation on an element, a user shall first select the exchangeable head 14 corresponding to the action to be performed and to the dimensions of the element. Once the exchangeable head 14 has been selected, exchangeable head 14 and device 12 are aligned such that the interface part 98 of the exchangeable head 14 faces the quick coupling system 16 and a longitudinal axis of the exchangeable head 14 is aligned with the tool axis X, as notably seen in
[0080] As seen in
[0081] In order to ensure the correct engagement of the exchangeable head and the device, a pushing force of at least 8 daN, and in particular of at least 10 to 12 daN is required. More particularly, as seen in
[0082]
[0083] For disengaging the exchangeable head 14 from the device 12, a user can slide the sleeve 66 in a direction opposite the exchangeable head 14, as notably depicted in
[0084] In
[0085] In order to move the half rings 34a, 34b from the locking position to the released position, the user slide the sleeve 66 according to arrow S (see
[0086] In another embodiment, the released and the locking positions could be stable positions. A hook or switch may be provided to maintain the sleeve in a position, in which the actuation unit is forced in the active position (and thus the locking unit is forced in the released position).
[0087]
[0088] Although exemplary embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes may be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.