Cutting apparatus for manufacturing bags utilizing a rotary cutting die
11267156 · 2022-03-08
Assignee
Inventors
Cpc classification
B26D7/2614
PERFORMING OPERATIONS; TRANSPORTING
B26F1/20
PERFORMING OPERATIONS; TRANSPORTING
B26F1/44
PERFORMING OPERATIONS; TRANSPORTING
International classification
B26F1/20
PERFORMING OPERATIONS; TRANSPORTING
B26D7/26
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A cutting apparatus including an apparatus frame and a cutting station, for forming interconnected bags, is provided. The cutting station includes a rotary anvil having an axis of rotation and mounted to a first frame structure, a rotary cutting die disposed adjacent to said rotary anvil and having an axis of rotation parallel to said first axis of rotation, said rotary cutting die including a rotatable cylindrical shaft carrying a die blade, said rotary cutting die being mounted to a frame structure, and an adjustment mechanism for varying the distance between said anvil and said cutting die, said mechanism including a rotatable spindle having threaded portions of different pitch. A first threaded portion engages a threaded portion of said first or said second frame structure and said second threaded portion engaging a threaded portion of said apparatus frame.
Claims
1. A cutting apparatus including a stationary apparatus frame and a cutting station supported on said stationary apparatus frame, for forming interconnected bags, such as interconnected along transverse lines of weakness, said cutting station comprising: a rotary anvil having a first axis of rotation and mounted to a first frame structure; a rotary cutting die disposed adjacent to said rotary anvil and having a second axis of rotation substantially parallel to said first axis of rotation, said rotary cutting die including a rotatable cylindrical shaft carrying a die blade, said rotary cutting die being mounted to a second frame structure; and an adjustment mechanism for varying a distance between said rotary anvil and said rotary cutting die, said adjustment mechanism including a rotatable spindle having a first threaded portion and a second threaded portion, wherein a pitch of said first threaded portion being different from a pitch of said second threaded portion, wherein: said first threaded portion is configured to engage a threaded portion of said first or said second frame structure and said second threaded portion is configured to engage a threaded portion of said stationary apparatus frame.
2. The cutting apparatus of claim 1, said first frame structure or said second frame structure being pivotally connected to said apparatus frame.
3. The cutting apparatus of claim 1 further comprising a spring connected with said apparatus frame supporting said first frame structure or said second frame structure.
4. The cutting apparatus of claim 1, said adjustment mechanism additionally comprising a first part including a motor, said rotatable spindle being directly or indirectly driven for rotation by said motor, said threaded portions being arranged next to each other along a length of said rotatable spindle, said second threaded portion being closer to said motor.
5. The cutting apparatus of claim 4, wherein said first threaded portion is distal from said motor and engages said one internally threaded structure fixedly mounted against rotation to said first frame structure or to said second frame structure.
6. The cutting apparatus of claim 1, said rotatable spindle comprising a tubular wall, said first threaded portion being formed on the inside of said tubular wall and said second threaded portion being formed on the outside of said tubular wall.
7. The cutting apparatus of claim 6, said threaded portion of said first or said second frame structure being externally threaded and said threaded portion of said apparatus frame being internally threaded.
8. The cutting apparatus of claim 6, said rotatable spindle including a manually engageable portion for rotation of said rotatable spindle.
9. The cutting apparatus of claim 6, said first threaded portion having a thread pitch that is smaller than the thread pitch of said second threaded portion.
10. The cutting apparatus according to claim 1, including a a second adjustment mechanism for adjustment of said distance between said rotary anvil and said rotary cutting die.
11. The cutting apparatus of claim 1, further comprising a a first internally threaded structure engaging a respective one of said threaded portions of said rotatable spindle and being fixed against rotation to said first frame structure or to said second frame structure, and a second internally threaded structure engaging another of said threaded portions of said rotatable spindle, and being fixed against rotation to said apparatus frame.
12. The cutting apparatus of claim 4, wherein said first threaded portion is distal from said motor and has a smaller thread pitch.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(8)
(9) On a first web section 1 a first processing may, using the apparatus of the present invention, be effected by applying a cutting pattern defining a handle-forming portion 4 delimited by two parallel cutting lines 6 extending continuously along the length of the web 5 and by two cutting lines 7 that extend transversally to the length of the web 5. The two latter cutting lines 7 may be discontinuous, i.e., in the form of perforations, whereby the material of the portion 4 remains joined to the rest of the web 5, for subsequent removal. Perforation lines 9 may preferably extend from the longitudinally extending cutting lines 6 to the longitudinal edges of the web 5. These perforation lines 9 enable separation of the individual bags from one another. For the second section 2, subsequently established welding lines 10 are shown that extend along a respective side of the perforation line 9.
(10) The invention will now be explained in more detail below by reference to two presently preferred embodiments.
(11) A cutting pattern as described above may, amongst other cutting patterns, be applied using the cutting apparatus 20 shown in
(12) The cutting station 26 is generally comprised of a driven or free spinning rotary anvil 28 and a driven rotary cutting die 30. The rotary anvil 28 has a first axis A1 of rotation, while the rotary cutting die 30 has a second axis A2 of rotation parallel to the first axis of rotation A1. As indicated by the arrows in
(13) In use, the die blade contacts the web and has face portions that cuts through the web 5, as it passes between the rotary anvil 28 and the rotary cutting die 30.
(14) During use of the apparatus 20, the die blade of the cutting die 30 is worn, requiring frequent adjustments of the position of the anvil 28 relative to the cutting die 30, up until the time the die blade is completely worn out. For these adjustments, an improved adjustment mechanism according to the invention is provided, allowing an operator to maintain essentially constant the gap between the anvil 28 and the cutting die 30.
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(16) It is noted that, as shown in
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(19) Shown in
(20) The elongated spindle 105 driven for rotation about its longitudinal axis by the motor 100 is threaded along its length, specifically along two lengthwise adjoining portions 106, 107 thereof, the threading of distal portion 107 (e.g., external thread 109) differing from that of portion 106 closer to the motor 100 in 20 having another pitch, preferably a smaller pitch. The internal thread 110 of the nut 75, fixed against rotation to the arm 71, corresponds to the thread pitch of the threaded distal portion 107 of the spindle 105 while the pitch of the internal thread of the nut 160, fixed against rotation to the arm 22, corresponds to the thread pitch of the other portion 106 of the spindle 105. Preferably, all threads of the mechanism M have the same handedness, i.e., are either right-handed or left-handed.
(21) In use, on activation of the motor 100, the spindle 105 rotates about its longitudinal axis, and the engagement with the nuts 75, 160 that are fixed against rotation brings the first portion of the mechanism M to move up or down relative to the fixed arm 22 in accordance with the direction of rotation of the spindle 105, the supporting arm 108 allowing for this movement. With the nut 75 being fixed to the pivotally supported bracket 70 via the arm 71, an up or down turning of the bracket 70 carrying the anvil 28 results.
(22) As will be understood, the thread pitch difference along the spindle 105 causes one full rotation of the spindle 105 to bring about a displacement of the spindle 105 (together with motor 100 and gear 102) relative to the fixed arm 22 which is larger than the displacement/movement of the arm 71 relative to the arm 22, due to the smaller pitch of the portion 107 of the spindle 105 engaging the nut 75 on arm 71. Turning the spindle 105 in one direction gives rise to the spindle moving relative to the nut 160 while the arm 71 will move down relative to the spindle 105 to a lesser extent determined by the thread pitch of portion 107.
(23) Even though the pitch of portion 107 is referred to above as being small, standard pitches may be used, the thread pitch difference along the spindle 105 allowing for small and precise adjustments of the bracket 70 carrying the anvil 28 without the need for careful motor 100 controlling as the pitch variation along the spindle 105 provides for an advantageous gearing. Through the invention, there is no need for costly spindles with a delicate threading requiring careful machining. It is noted that while the use of standard nuts 75, 160 attached to the arms 22, 71 is shown herein, it would alternatively be possible to machine the arms 22, 71 with through-going bores having an internal thread of selected, corresponding pitch and engaging the spindle 105; this option may be preferred where the bracket 70 is linearly movable, in contrast to the shown pivotal journaling at hinge 41 where some skewing of the spindle 105 may occur.
(24) As may be understood, the frame 70 with the anvil 28 is carried by the spindle(s) 105, optionally assisted by a compressed spring 40 that maintains the gap between the anvil 28 and the cutting die 30 to the value determined by the adjustment mechanism M movements, thus minimizing the effect of any play between the parts of the hinge 42 and the spindle 105 and the nuts 75, 160. As shown in
(25) As may also be understood, the proximal and distal portions 106, 107 of the spindle 105 may have different diameters, as shown, and be received in through-going bores B of the arms 22, 71. The diameter variation allows for an easy connection of the mechanism M with the arms 22, 71.
(26) For the shown example, a 1.5 mm thread pitch and a 1.25 mm thread pitch may be selected for the distal portion 107 and proximal portion 106, respectively, resulting in a change in distance between the two nuts 75, 160 of 1.5-1.25=0.25 mm per turn of the spindle 105; in practice M16×1.5 and ¾″UNF may be selected, resulting in a change in distance of 1.5875−1.5=0.085 mm per turn of the spindle, whereby a relatively high number of turns of the spindle 105 is required for any significant adjustment of the position of the anvil 28 relative to the die 30 is required.
(27) While in the foregoing the mechanism M has been explained in connection with an embodiment wherein the mechanism acts on the anvil 28, being in this embodiment the movable part, the skilled person will understand that the mechanism M may equally act on the die cutter 30 being the movable part, with the anvil 28 being fixed relative to the apparatus frame 21.
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(29) While in the previous description the mechanism M has been described for use in connection with a cutting apparatus including a rotary anvil 28 and a rotary cutting die 30, the skilled person will understand that such a mechanism M may also find use in the context of a cutting device of the general type disclosed in W02015/015327 (Amutec S. R. L.) where the web is run in a stop-and-go punching procedure in a passage between an abutment and a movable bar/structure carrying the die blade. Applicant reserves the right to draw up claims, such as for a divisional patent application, directed also to a plastic bag forming cutting apparatus with an apparatus frame 21 having an abutment mounted to a first frame structure and a bar/structure carrying a die blade mounted to a second frame structure, the first or the second frame structure being movable, and including the adjustment mechanism M according to the present invention, for varying the distance between said abutment and said bar, the mechanism M including a rotatable spindle 105, 105′ having a first threaded portion 107, 107′ and a second threaded portion 106, 106′, the thread angle of said first threaded portion 107, 107′ being different from the thread angle of said second threaded portion 106, 106′, the first threaded portion 107, 107′ engaging a threaded portion 75, 75′ of said first or said second frame structure 50, 70 and said second threaded portion 106, 106′ engaging a threaded portion 160, 160′ of said apparatus frame 21, with all the appended dependent claims depending thereon.