Deep-drawing packaging machine with electromotive lifting gear
09694414 · 2017-07-04
Assignee
Inventors
Cpc classification
B65B31/021
PERFORMING OPERATIONS; TRANSPORTING
B21D51/18
PERFORMING OPERATIONS; TRANSPORTING
B65B47/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B21D51/18
PERFORMING OPERATIONS; TRANSPORTING
B65B31/02
PERFORMING OPERATIONS; TRANSPORTING
B65B7/16
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a deep-drawing packaging machine with a lifting gear for a forming station, sealing station or cutting station, wherein the lifting gear provides guides and lifting spindles which are arranged outside a collision region of a movable tool.
Claims
1. Deep-drawing packaging machine comprising: an electromotive lifting gear for at least one of a forming station, a sealing station and a cutting station, wherein the lifting gear comprises: at least two carriages mounted in vertical guides; a tool connected to the carriages, the tool being movable in a vertical direction between an uppermost position and a lowermost position, wherein a collision region of the tool is a spatial volume defined by all space that the tool occupies and passes over in a vertical travel distance between the lowermost position and the uppermost position, the spatial volume being bounded by surfaces; and at least two lifting spindles configured to move the tool in the vertical direction between the lowermost position and the uppermost position, each spindle having a vertical axis of rotation such that said at least two spindles are disposed in a parallel relationship to the vertical guides, the at least two lifting spindles, said vertical axes, and said vertical guides being located outside the collision region of the tool and outside said surfaces.
2. Deep-drawing packaging machine according to claim 1, further comprising a lifting rail wherein, said lifting rail is connected to the tool and the carriages.
3. Deep-drawing packaging machine according to claim 1, wherein the lifting spindles are thread rolling spindles.
4. Deep-drawing packaging machine according to claim 1, wherein the lifting spindles are covered by telescopic springs when said tool is positioned at one of an uppermost position, or a lowermost position.
5. Deep-drawing packaging machine according to claim 1, wherein the lifting gear further comprises brakes which may lock the lifting spindles.
6. Deep-drawing packaging machine according to claim 1, wherein the lifting spindles may be driven via a belt drive using an electric motor.
7. Deep-drawing packaging machine according to claim 6, wherein the electric motor is a servomotor.
8. Deep-drawing packaging machine according to claim 6, wherein the belt drive comprises a sprocket belt.
9. Deep-drawing packaging machine according to claim 1, wherein the lifting gear further comprises a fixed connection unit and a movable connection unit for external media.
10. Deep-drawing packaging machine according to claim 9, wherein the movable connection unit is attached to at least one of a lifting rail and the tool.
11. Deep-drawing packaging machine according to claim 9, wherein the fixed connection unit is attached to the lifting gear such that the fixed connection unit cooperates with the movable connection unit in a working position of the tool to connect a medium with the tool using both the fixed connection unit and the movable connection unit.
12. Deep-drawing packaging machine according to claim 9, wherein the fixed connection unit comprises a first contact surface and said moveable connection unit comprises a second contact surface, wherein each of said first and said second contact surfaces are inclined with respect to the vertical direction.
13. Deep-drawing packaging machine according to claim 1, wherein the lifting gear has a stroke of more than 300 mm.
14. Deep-drawing packaging machine according to claim 1, wherein the tool may be positioned, in addition to the upper and lower positions, in a tool change position.
15. Deep-drawing packaging machine according to claim 1, wherein the lifting spindles are each provided between two said guides adjacently in a production direction.
Description
DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING
(1) In the accompanying drawing, which forms a part of the specification and is to be read in conjunction therewith in which like reference numerals are used to indicate like or similar parts in the various views:
(2)
(3)
(4)
(5)
(6) Equal components are always provided with the same reference numerals in the figures.
DETAILED DESCRIPTION OF THE INVENTION
(7) The invention will now be described with reference to the drawing figures, in which like reference numerals refer to like parts throughout. For purposes of clarity in illustrating the characteristics of the present invention, proportional relationships of the elements have not necessarily been maintained in the drawing figures.
(8) The following detailed description of the invention references specific embodiments in which the invention can be practiced. The embodiments are intended to describe aspects of the invention in sufficient detail to enable those skilled in the art to practice the invention. Other embodiments can be utilized and changes can be made without departing from the scope of the present invention. The present invention is defined by the appended claims and the description is, therefore, not to be taken in a limiting sense and shall not limit the scope of equivalents to which such claims are entitled.
(9)
(10) In the shown embodiment, the forming station 2 is embodied as a deep-drawing station in which cavities 14 are formed in the film 8 by deep-drawing. The forming station 2 may be designed such that several cavities are formed next to each other in the direction perpendicular to the production direction R. The forming station 2 can comprise a lifting gear 30 to move a lower mould part or a tool 32 (see
(11) The sealing station 3 may also have a lifting gear 30 and a closable chamber 17 in which the atmosphere in the cavities 14 may be replaced, for example by evacuating or by gas flushing using a replacement gas or a gas mixture before sealing.
(12) The cross cutter 4 can also comprise a lifting gear 30 and may be designed as a punching machine which cuts through the film 8 and the lid film 10 between adjacent cavities 14 in a direction transverse to the production direction R. In the process, the cross cutter 4 may be designed to operate such that the film 8 is not cut through across its total width, and at least a portion of the film 8 proximate the edge region is left intact. The intact portion of the film 8 permits a controlled further transport of the film 8 by the feed apparatus. The cross cutter 4 can also include a lifting gear 30.
(13) In the shown embodiment, the longitudinal cutter 5 is designed as a knife arrangement by which the film 8 and the lid film 10 are cut through between adjacent cavities 14 and at the lateral edge of the film 8, so that separated packages are present downstream of the longitudinal cutter 5.
(14) The deep-drawing packaging machine 1 furthermore optionally comprises a control 18. The latter has the task of controlling and monitoring the processes running in the deep-drawing packaging machine 1. A display device 19 with operational controls 20 serves to visualize or influence the process operations in the packaging machine 1 for or by an operator.
(15) The general working manner of the packaging machine 1 will now be briefly described below.
(16) The film 8 may be reeled off from the feed roller 7 and transported into the forming station 2 by the feed device. In the forming station 2, cavities 14 can be formed in the film 8 by deep-drawing. In a main cycle, the cavities 14 are transported further, together with the surrounding area of the film 8, to the insertion section 15 where they are filled with products 16.
(17) Subsequently, the feed device may transport the filled cavities 14 further to the sealing station 3 in the main cycle, together with the surrounding area of the film 8. The lid film 10 can be transported further with the feed motion of the film 8 after a procedure of sealing it to the film 8. In the process, the lid film 10 may be reeled off from the material storage 9. By sealing the lid film 10 onto the cavities 14, closed packages are formed which are separated in subsequent cutting operations 4 and 5 and transported out of the deep-drawing packaging machine 1 by the discharge means 13.
(18)
(19) The lifting rail 36 serves to receive the tool 32 which is designed in three parts in this exemplary embodiment and has a drawing depth of 350 mm, for example. A fixed connection unit 42 can be attached to the cross struts 40, and a movable connection unit 43 may be attached to the lifting rail 36. The movable connection unit 43 can have a contact surface 44 that is inclined by 30 to 60 with respect to the lifting motion H of the lifting gear 30 and has a through opening 45, the through opening 45 being connected to the tool 32 by passages in the lifting rail 36, which are not shown in greater detail. The inclination of the contact surface 44a of the fixed connection unit 42 may be provided corresponding to the lifting motion H to the inclination of the contact surface 44 of the movable connection unit 43. Medium supply or discharge lines 46, for example for vacuum or exhaust air, are attached to the fixed connection unit 42.
(20) In the upper region of the lifting gear 30, an upper tool part 47, here in particular an upper mould part, can be arranged at the supports 34, and a servomotive die apparatus 48 with one or several dies may support the forming process for forming the cavities 14 in the film 8.
(21)
(22)
(23) In the deep-drawing packaging machine according to one embodiment of the invention, the lifting spindles 38 of the lifting gear 30 are, seen from above, arranged outside the collision region K of the tool 32. This means that the lifting spindles 38 are not disposed underneath the tool 32 but, seen with respect to the production direction R, in front of or behind the tool 32 and/or laterally next to the tool 32. The plan view onto the lifting gear 30 is shown in the same direction as the lifting motion of the lifting gear 30, i.e., usually in the vertical direction.
(24) As was already explained, the lifting gear 30 may be provided for the forming station 2, for the sealing station 3 or for the cutting station 4. At the forming station 3, the movable tool 32 would be a mould, usually a lower mould part. At the sealing station 3, the movable tool 32 would be a sealing tool, usually a lower sealing tool part. When the lifting gear 30 is used for the cutting station 4, the tool 32 would be a knife or a counter-knife which is usually held by a support, for example the lifting rail 36. In such a cutting station 4, the knife or the counter-knife to which, as upper tool part 47, a complementary counter-knife or knife is associated, usually has smaller spatial dimensions than the support or the lifting rail 36. Therefore, for the purposes of determining the collision region K, the knife and its support (for example the lifting rail 36) may be commonly considered as tool (32) at a cutting station. Thus, the collision region K is the total region which is passed over by the knife and the support during the motion of the lifting gear 30.
(25) At the sealing station 3, the upper tool part 47 may be designed as upper sealing tool part, and no servomotive die unit is provided there.
(26) Designs of the lifting gear 30 which comprise six, eight or more guides 33 and four, six or more lifting spindles are also possible. Moreover, a belt drive 49 is possible where the drive belt 50 runs outside the guides 33 and over four deflection rollers 52 at all four corners of the lifting gear 30 to be able to arrange the lifting rail 36 even closer to the ground.
(27) To permit even longer lifting motions H, the working height of the machine 1 (i.e., the level for the transport of the film 8) and thus the machine frame 6 may be increased.
(28) From the foregoing, it will be seen that this invention is one well adapted to attain all the ends and objects hereinabove set forth together with other advantages which are obvious and which are inherent to the structure. It will be understood that certain features and sub combinations are of utility and may be employed without reference to other features and sub combinations. This is contemplated by and is within the scope of the claims Since many possible embodiments of the invention may be made without departing from the scope thereof, it is also to be understood that all matters herein set forth or shown in the accompanying drawings are to be interpreted as illustrative and not limiting.
(29) The constructions and methods described above and illustrated in the drawings are presented by way of example only and are not intended to limit the concepts and principles of the present invention. Thus, there has been shown and described several embodiments of a novel invention. As is evident from the foregoing description, certain aspects of the present invention are not limited by the particular details of the examples illustrated herein, and it is therefore contemplated that other modifications and applications, or equivalents thereof, will occur to those skilled in the art. The terms having and including and similar terms as used in the foregoing specification are used in the sense of optional or may include and not as required. Many changes, modifications, variations and other uses and applications of the present construction will, however, become apparent to those skilled in the art after considering the specification and the accompanying drawings. All such changes, modifications, variations and other uses and applications which do not depart from the spirit and scope of the invention are deemed to be covered by the invention which is limited only by the claims which follow.