The invention concerns a pneumatic needle gripper that comprises two due slides (33) on board a gripper body (10) each carrying at least one pair of needle grippers (36). The needles on a slide are facing towards the needles on the other slide, each sloping and converging towards a frontal plane (16
The invention concerns a pneumatic needle gripper that comprises two due slides (33) on board a gripper body (10) each carrying at least one pair of needle grippers (36). The needles on a slide are facing towards the needles on the other slide, each sloping and converging towards a frontal plane (16) of the gripper body. The slides can me moved simultaneously in opposite directions, by means of a pneumatic control piston (19), between an inactive position, in which the needles are retracted compared with the frontal plane and at a distance from each other, and an active position in which they protrude from the frontal plane to penetrate into a material to be picked up and moved. The control piston (19) is associated with an adjustment means (24) interacting with the gripper body (10) so as to vary the stroke of said piston in the direction of the slide movements, and consequently the needle grippers, towards the active position, it being able in this way to adjust the protrusion of said gripper needles from the frontal plane (16) depending on the width of the element to be picked up and moved.
대표청구항▼
1. A pneumatic needle gripper, comprising: a gripper body;a pneumatic piston prone to strokes between a retrograde position and an advanced position in a chamber defined by the gripper body;two slides on board the gripper body each carrying at least one pair of parallel gripper needles, wherein the
1. A pneumatic needle gripper, comprising: a gripper body;a pneumatic piston prone to strokes between a retrograde position and an advanced position in a chamber defined by the gripper body;two slides on board the gripper body each carrying at least one pair of parallel gripper needles, wherein the needles on one slide are facing towards the needles on the other, both slanting and converging towards the frontal plane of the gripper body, and wherein said slides in connection with the pneumatic piston strokes are movable simultaneously in opposite directions between an idle position, wherein the needles of both slides are retrograded compared to said frontal plane and at a distance one from the other, and an active position, wherein the needles of the two slides are advanced to cross one with the other and emerge from said frontal plane through respective guide bores slanting to penetrate into an element of penetrable material to be collected and moved;an adjustment device associated coaxially to the pneumatic piston and interacting with the gripper body to vary the stroke of said piston in the direction of the movement of the slides, consequently of the gripper needles, towards the active position and to adjust the protrusion of said gripper needles from said frontal plane depending on the thickness of the element to be collected and moved. 2. A pneumatic needle gripper according to claim 1, wherein the pneumatic piston has an axial cavity and the adjustment device extends in the cavity of said piston and is capable to be screwed in various ways in the gripper body so as to modify an axial position thereof and adjust the piston stroke in the direction of the movement of the slides towards the said active position. 3. A pneumatic needle gripper according to claim 1, wherein the gripper body is made up of a supporting element and of a head fixed and aligned according to an axis, and wherein the chamber housing the pneumatic piston is delimited by said supporting element, the frontal plane is defined by a part of said head on an axis to the gripper body, and the slides with gripper needles are on board said head with said needles slanting compared to the axis of the gripper body to converge by means of the respective guide bores towards said frontal plane. 4. A pneumatic needle gripper according to claim 1, wherein said adjusting device comprises a guide shank, passing in the axial cavity of the pneumatic piston and having an initial part that screws into a threaded bore in said supporting element. 5. A pneumatic needle gripper according to claim 4, wherein said guide shank has moreover an intermediate portion centered in said chamber with the interposition of a sealing gasket, extending in the cavity of the piston also with the interposition of at least a sealing gasket, and has a guided terminal part with a central bore crossing the frontal plane of the head of the gripper body. 6. A pneumatic needle gripper according to claim 4, wherein the intermediate portion of said guide shank delimits an annular stop plane facing towards said piston and interacting with the said piston to limit the stroke of the piston in the movement direction of the slides towards said active position, and the level of said annular stop plane in said chamber is variable in response to the screwing or unscrewing of said guide shank in said threaded bore. 7. A pneumatic needle gripper according to claim 6, wherein the guide shank has a portion of the shank with radial notches accessible with a device for screwing and unscrewing of the shank in said threaded bore, and the shank is blocked in the position from time to time chosen at least by a grub screw fixed radially to the gripper body. 8. A pneumatic needle gripper according to claim 3, wherein: the head of the gripper body delimits two housings resulting on opposite parts with respect to the axis of the gripper body;the slides with respective gripper needles are assembled to slide in said housings;the pneumatic piston has a stem that extends in said head up to a level of said housings and interacts with said slides by means of transmission devices for the moving of the gripper needles between the idle and active positions. 9. A pneumatic needle gripper according to claim 8, wherein said transmission devices comprise for each slide with gripper needles, with gear rack teething along a side of the stem of the control piston, with gear rack teething on said slide and a toothed pinion assembled and turning in the housing of the slide with needles and engaging at the same time with said gear rack teething. 10. A pneumatic needle gripper according to claim 1, wherein sensors are applicable for detecting the active and idle positions of the gripper through the position of the piston. 11. A pneumatic needle gripper according to claim 2, wherein the gripper body is made up of a supporting element and of a head fixed and aligned according to an axis, and the chamber housing the pneumatic piston is delimited by said supporting element, the frontal plane is defined by a part of said head on an axis to the gripper body, and the slides with gripper needles are on board said head with said needles slanting compared to the axis of the gripper body to converge by means of the respective guide bores towards said frontal plane. 12. A pneumatic needle gripper according to claim 5, wherein the intermediate portion of said guide shank delimits an annular stop plane facing towards said piston and interacting with the piston to limit the stroke of the piston in the movement direction of the slides towards said active position, and the level of said annular stop plane in said chamber is variable in response to the screwing or unscrewing of said guide shank in said threaded bore.
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