The present invention generally relates to a machine for automatically feeding flatwork articles, that is laminar cloth articles such a quadrangular bed sheet to a subsequent article cloth processing machine such as an ironer-dryer machine.
EP 3578702A1 (Purex) refers to a cloth spreading apparatus capable of lessening burden of the operators and reducing operation time, the apparatus comprising several cloth loading posts and for each of them a pair of feeding clamps, a moving device for moving the pair of feeding clamps between a feeding position where adjacent corners of a cloth are manually placed into the feeding clamps by an operator and a delivery position of the cloth and a spreading clamps for directly or indirectly receiving the cloth from the pair of feeding clamps and spreading the cloth in a direction of separating the adjacent corners from each other, wherein the moving device has a separate moving trajectory corresponding to each of the feeding clamps and the pair of feeding chucks are constructed so as to move independently of each other between the feeding position and the delivery position.
WO 9603540A2 (Chicago Dryer) discloses an apparatus for feeding flatwork articles to an outgoing feed conveyor, including a transfer mechanism to grip a leading-edge portion of a flatwork article between leading corner portions thereof and move the article from a loading station to a pickup station. A positioning device is provided to locate a trailing edge portion of the article at the pickup station for engagement with a moving mechanism, that grips said trailing edge portion of the article moving the article to a pickup station provided with spreading grippers, the outgoing feed conveyor having a front end located below the spreading grippers and a conveying surface movable in the feed direction to transfer the flatwork article to into an ironer.
Unlike the EP3578702 device, the solution described in the WO 9603540A2 by automatically locating the trailing corner portions of the sheet for pickup by a moving mechanism, an operator loading the flatwork article such as a bed sheet does not have to locate the side edge or the corner portions thereof. Moreover, the operator does not have to manually clamp the corner portions directly to a pair of clamps or locate and press a conventional button or the like to initiate processing of the sheet. Thus, a simple, compact loading and transferring apparatus is provided which increases the speed at which a single operator can load sheets for accurate placement onto a feed conveyor.
EP1683908 (Societe Jean Michel) describes a device for transferring laundry to server clamps where two loaders move around a horizontal axis to a transfer position in the area where the laundry is tensioned. The apparatus also includes a suction device having a suction mouth adjacent to a lower part of the reception end of a conveyor belt to attract the flat article of clothing by means of a suction jet towards said reception end of the conveyor belt and towards a longitudinal introducer roller located next to a lower edge of said suction mouth. Said longitudinal roller is driven to rotate so as to cooperate with the suction device and quickly drag the hanging part of the article of clothing into a box of the device from where the article of clothing is dragged by the conveyor belt while mobile brushes moving longitudinally in divergent directions next to the suction mouth remove any possible wrinkles from the article of clothing.
EP3301218A1 (Kannegiesser) describes a laundry engagement device and corner search based on a similar technical principle as WO 9603540.
During the feed process carried out by the feeding machines as the ones previously disclosed protruding corner portions of the flatwork textile articles are usually formed at one side of a clamping pinch of the spreading clamps. Said protruding corner portions primarily give rise to so-called ear formations when the front edge of the flatwork textile article is stretched by the spreading clamps. Said ear formations negatively impact the quality of the flatwork textile article once transferred to the outgoing feed conveyor.
In WO2018059730A1 (Kannegiesser) to avoid the problem of the ear formation proposes a mechanism of rollers included in the clamps of a positioning device as disclosed in WO 9603540 to move the respective corner region of the laundry within the clamp so that the flatwork article is gripped by points close to the corners.
Patent application EP3663458A1 (Girbau Robotics) discloses an alternative mechanism wherein the clamping members are a pair of clamp assemblies coupled to the transverse guides and arranged to grasp corner portions of two contiguous corners of the flatwork textile article delivered thereto, and driving elements operatively connected to move the clamp assemblies along the transverse guides in opposite directions to spread the flatwork textile article in order to deposit it on an outgoing feed conveyor. All the devices and apparatus of the referred antecedents where it is not necessary for an operator to manually arrange the corners into clamps at the loading posts have gripper systems that come to pick up the corners presented by the workstation once located and transfer the flatwork articles to the spreading grippers via the centre part of the machine where the flatwork articles are centred in relation to an outgoing feed conveyor, extended and smoothed by known unwrinkling brushes.
US20150071736 discloses a method of transferring a piece of cloth and a laundry apparatus for performing the method in which a vacuum boom being divided into two or more sections that are connected to each other by means of hinges and are carried and controlled by mechanisms configured therefor.
The present patent application proposes a machine with a plurality of loading posts each of them including a load conveyor configured to transfer a leading-edge portion of a flatwork article between leading corner portions thereof to a rear delivery unit including a location mechanism to locate trailing corner portions of the flatwork article according to the state of the art for example as disclosed in WO9603540A2, but simplifying the transfer of the flatwork articles to the spreading grippers and speeding up this transfer. To this aim each of the loading posts has one pair of transferring grippers associated to the respective rear delivery unit and therefore the spreading grippers receive the laundry in front of each loading station from the transferring grippers and then can expand it in the centre or in a lateral area with regard to an outgoing feed conveyor, i. e. they can operate in one or more lanes.
Moreover, to assist in the operation in a central o side area a suction mouth and introducer roller extends all along the outgoing feed conveyor and have associated at least two movable elements that temporally prevent the insertion of a spread piece of clothing hanging from the transferring grippers or from the spreading grippers into the suction mouth.
The present invention contributes to overcome the above and other drawbacks by providing a feeding machine for feeding quadrangular flatwork articles such a bed sheet to a subsequent article treatment machine, wherein the feeding machine includes in accordance with the state of the art, for example as disclosed by cited WO9603540, following elements:
In order to achieve this, it has been planned that the suction entrance of the vacuum chamber extends all along the outgoing feed conveyor and has associated thereof two or more movable separating blades that temporally prevent the insertion of a spread flatwork article such as piece of clothing, into the suction entrance, in correspondence with any of the above-mentioned several different zones, where the unloading of the flatwork articles can take place towards the conveying surface of the outgoing feed conveyor.
The machine includes a controller that coordinates the movements of the transferring grippers, spreading grippers and movable separating blades.
Further aspects of the invention concern to an introducer roller arranged parallel to the front end of the outgoing feed conveyor and adjacent the suction entrance of the vacuum chamber, the introducer roller extending all along the whole outgoing feed conveyor width and being rotated by a motor in a load direction by which an uncovered upper surface of the introducer roller moves towards the suction entrance so that when a portion of the flatwork article suspended in the spreading grippers contacts with upper surface of the introducer roller is dragged toward the suction entrance.
In an embodiment each separating blade is moved in a vertical direction upwardly to position itself between the flatwork article and the introducer roller in order to prevent contact between these two elements during a first step of transfer of the flatwork article towards the outgoing feed conveyor and that moves downward in a second step of the transfer when the flatwork article is to be transferred so that a free end portion of the spread flatwork article encounters the introducer roller and enters the vacuum chamber. An actuator provides these up and down movements of the separating blade.
In correspondence with each of the separating blades the vacuum chamber further includes a member driven by an actuator that temporally reduces the suction in the vacuum chamber obstructing substantially the vacuum chamber section.
The cited controller provides a synchronisation between movements of each separating blade and member to temporally reduce u obstruct the suction in the vacuum chamber, and further provides a coordination between the movement of the different separating blades to operate separately or to operate in conjunction depending on the zone where the flatwork article is centred.
In an embodiment the feeding machine of this invention is further equipped with an auxiliary device placed in superposition to the loading end of outgoing feed conveyor including a roof plate configured to be driven away from the surface of the feed conveyor or close to it allowing a controlled passage of the flat clothing article extended on said outgoing feed conveyor, as known by EP2977505A1 of the same applicant, but in this embodiment the auxiliary device extending transverse to the loading direction of the flatwork article on said outgoing feed conveyor and being divided in two independent parts, each of said parts having own driving means, in correspondence with the two movable separating blades.
Besides, the cited controller further provides a synchronisation between movements of each separate blade and independent parts of the auxiliary device, so that contributing to operate alternately in one or more lanes and allow to deposit the flatwork article on one half or the other half of the outgoing conveyor.
Also, to avoid wrinkles in the bed sheet before it being transferred onto the outgoing feed conveyor two side unwrinkling endless brush belts extending around vertical outer side pulleys and vertical inner side pulleys have been provided.
The transfer system of each loading station comprises one pair of transferring grippers wherein jaws of each transferring gripper are mounted on a pivot arm pivotable about a pivot axis, the pivot axes being parallel to each other determining that movement of both pivot arms are coplanar, and the transferring grippers describe circular arc paths in opposite directions when moving between a receiving position below corner-gripping nip rollers that retain end portions of a bed sheet and a transfer position. These circular arc paths determine that the gripped portions of the flatwork article are moved away, i.e., the piece of clothing is transversally extended a certain degree while it is transferred.
In a preferred embodiment the pivot axis of the jaws of each transferring gripper is oriented in a vertical direction and the circular arc paths described by the transferring grippers when moving between the receiving position and the transfer position are comprised in a horizontal plane.
In an embodiment of this invention the referred transfer system further comprises:
The machine further includes two corner-detecting sensors each arranged so as to detect the presence of a rear corner of a flatwork article in a space adjacent gripping nip rollers.
According to this invention the outgoing feed conveyor has a feed conveyor width greater than the load conveyor width of each loading post and the transverse horizontal guide has a guide length equal or greater than the outgoing feed conveyor width.
Further details of the invention will be exposed in the following.
The above features and advantages will be better understood from the following detailed description of a preferred embodiment with reference to the accompanying drawings, in which:
Firstly, with regard to
The front reception unit 2a comprises a lower reception endless belt 12 extending around a horizontal lower reception front pulley 16 and a horizontal lower reception rear pulley 17; and an upper reception shorter endless belt 13 extending around a horizontal upper reception front pulley 18 and a horizontal upper reception rear pulley 19. The leading edge of a bed sheet is conveyed clamped between the lower reception endless belt 12 and the upper reception endless belt 13
The rear delivery unit 2b comprises two lower delivery endless belts 14 extending around respective horizontal lower delivery front pulleys 20 and respective horizontal lower delivery rear pulleys 21, and two upper delivery endless belts 15 extending around respective horizontal upper delivery front pulleys 22 and respective horizontal upper delivery rear pulleys 23, the lower delivery rear pulleys 21 are at a higher level than the lower delivery front pulleys 20 and the upper delivery front pulleys 22.
Each lower delivery endless belt 14 is paired with one of the upper delivery endless belts 15 and both have respective drag sections which continue to clamp the leading edge of the bed sheet and said drag sections facing each other and move in the feed direction D.
The pairs of lower and upper delivery endless belts 14, 15 are located at either sides of the pair of lower and upper reception endless belts 12, 13; and the lower delivery front pulleys 20 are coaxial with the lower reception rear pulley 17 and the upper delivery front pulleys 22 are coaxial with the upper reception rear pulley 19.
The lower reception rear pulley 17 and the lower delivery front pulleys 20 are rigidly attached to a lower front shaft 27, the lower delivery rear pulleys 21 are rigidly attached to a lower rear shaft 28. The horizontal upper reception rear pulley 19 and the upper delivery front pulleys 22 are rigidly attached to an upper front shaft 29.
The upper delivery rear pulleys 23 are rigidly attached to an upper rear shaft 30.
Also shown in this
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In the disclosed embodiment the spring element 55 is embodied as a gas spring cylinder including the locking device therein, the locking device being manually operable by a lever 57.
In this
The third gripper or in other embodiments a four gripper will be movable arranged along one or more transverse horizontal guides 8.
An outgoing feed conveyor 9 having a front end is located below the spreading grippers 7 and has a conveying surface movable in the feed direction D.
The jaws of each transferring gripper 6 are mounted on a pivot arm 10 pivotable about a pivot axis 11 and arranged to describe circular arc paths in opposite directions when moving between the receiving position and the transfer position due to the action of pneumatic cylinder 51. This means that when the flatwork article or flatwork article 53 held by two of its corners by the transferring grippers is transferred, those corners move away from each other, and the sheet is presented to the spreading grippers in a partially extended form.
In a preferred embodiment the pivot axles 11 for the transferring grippers 6 are vertical and the movement of both pivot arms 10 occur in a common horizontal plane i.e., the circular arc paths described by the transferring grippers 6 when moving between the receiving position and the transfer position are comprised in a horizontal plane. As previously indicated, this determine that the gripped portions of the flatwork article 53 are moved away, i.e., the piece of clothing is transversally extended a certain degree while it is transferred and when it is delivered to the spreading grippers 7.
According to one preferred embodiment of this invention the spreading grippers 7, in this example in number of three, are independent of each other, and each of the spreading grippers 7 is attached to a continuous belt 61, 62, 70 rotatable around end pulleys 65, 66, 72 and each of the belts 61, 62, 70 being rotated by a respective motor M1, M2, M3, the continuous belts 61, 62, 70 extending parallel to the transversal guide 8.
In this
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According to the sequence illustrated in
The vacuum chamber 44 further includes a member 37, actuated by a piston 24, that temporally reduces the suction in the vacuum chamber 44 obstructing part of the vacuum chamber 44 section avoiding the entrance of a flatwork article 53 or facilitating the transfer of the flatwork articles 53 onto the conveying surface of the outgoing feed conveyor 9, once the flatwork article 53 has been suctioned into the vacuum chamber (see
Therefore, the position of the separating blades 59 and the position of the member 37 temporally prevent the insertion of a spread piece of clothing into the suction entrance 45, in correspondence with any of the above-mentioned several different zones, where the unloading of the flatwork articles 53 can take place towards the conveying surface of the outgoing feed conveyor 9.
Thus, the member 37 obstructs vacuum chamber 44 when the separating blade 59 is in an upper position (
A controller coordinates the movements of the transferring grippers 6, spreading grippers 7, separating blades 59 and members 37 in order to enable the handling of different flatwork articles 53 in a quicker way.
As previously indicated, in an embodiment the feeding machine further includes an auxiliary device 80 arranged in superposition to the loading end of the outgoing feed conveyor 9 including a roof plate 81 with a pivotable flap articulated to one edge and configured to be driven away from the surface of the feed conveyor 9 or close to it, whereby allowing a controlled passage of the flat clothing article 53 extended on said outgoing feed conveyor 9. In this embodiment the auxiliary device 80 extends transverse to the loading direction of the flatwork article on said outgoing feed conveyor and the articulated pivotable flap is divided in two independent flaps 82a, 82b, each with its own driving means 83a, 83b (that can be implemented by pistons or lineal actuators), in correspondence with the two movable separating blades 59. If the feeding machine is equipped with this auxiliary device the referred controller further provides a synchronisation between movements of each separate blade 59 and independent flaps 82a, 82b of the auxiliary device 80, allowing the machine to operate in two lanes arranged side by side.
Number | Date | Country | Kind |
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19383159.1 | Dec 2019 | EP | regional |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2020/087026 | 12/18/2020 | WO |