Plywood Panel Repair Solutions
A compact plywood panel repair system with scanning and repair devices on stationary panels addresses the high cost and space requirements of existing systems, achieving precise and efficient repairs.
Patent Information
- Application Number
- JP2024079179
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2018-09-12
- Filing Date
- 2024-05-15
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2039-06-07
AI Technical Summary
Existing plywood panel repair systems are expensive to acquire and install, requiring large floor space and are challenging to implement.
A compact system for repairing plywood panels comprising a detection device, repair device, conveyor device, and control device that allows for scanning and repair operations to be performed on stationary panels, utilizing actuators and sensors for precise positioning and control.
The system enables high-quality repairs with optimized material consumption by ensuring accurate scanning and repair operations on stationary panels, reducing the need for extensive space and installation complexity.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates generally to the technical field of manufacturing wood products. More specifically, the present invention relates to repairing plywood products. [Background technology]
[0002] The production of plywood is a multi-stage process. In the big picture, the main stages are preparing the veneer sheets from the logs, preparing the plywood from the veneer sheets, and finishing the plywood. Finishing the plywood consists of a repair phase, in which the quality of the plywood is inspected and any necessary steps are taken to repair any defects found during inspection. Some non-limiting examples of defects are knots, knotholes, cracks, splits, color misalignments, etc.
[0003] In prior art solutions, repair of plywood panels is performed in a production line type repair solution, where plywood panels are transported on a conveyor line to an inspection device. The inspection device, for example, scans the plywood panel in question, analyzes the scanned data, and generates repair commands directed to at least one repair tool. The repair tool performs repair operations applicable to defects in the plywood panel as the panel under repair advances on the production line, and once repairs have been performed, the plywood panels may be collected in a stack at the end of the production line, i.e., on the repair line. This type of approach is adopted in U.S. Pat. No. 6,275,999. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] U.S. Patent No. 4,984,172 Summary of the Invention [Problem to be solved by the invention]
[0005] A drawback of the above-described prior art solutions is that prior art repair lines are expensive to acquire, but also expensive to use, especially when all costs are taken into account. Part of the cost arises from the large floor space required for the repair line installation. Furthermore, installing the repair line is difficult and challenging. Therefore, there is a need to develop an alternative solution for establishing wood panel repair that at least partially mitigates the above-described drawbacks. [Means for solving the problem]
[0006] The following presents a simplified summary in order to provide a basic understanding of some aspects of various invention embodiments. The summary is not an extensive overview of the invention. It is not intended to identify key or critical elements of the invention or to delineate the scope of the invention. The following summary merely presents some concepts of the invention in a simplified form as a prelude to a more detailed description of example embodiments of the invention.
[0007] SUMMARY OF THE INVENTION It is an object of the present invention to provide a system and method for repairing at least one plywood panel.
[0008] The objects of the invention are achieved by a system and method defined by the respective independent patent claims.
[0009] According to a first aspect, there is provided a system for repairing plywood panels, the system comprising at least one detection device for scanning the plywood panels, at least one repair device for performing a repair operation on the plywood panels, a conveyor device for transporting the plywood panels, and a control device for generating at least one control signal to the conveyor device for stopping the plywood panels in the system for performing the scanning operation on the plywood panels with the at least one detection device and for stopping the plywood panels for performing the repair operation on the at least one repair device based on information obtained by the detection device.
[0010] The at least one detection device may be positioned to move at least partially over the plywood panel during scanning.
[0011] Additionally, the at least one repair device may be configured to perform a repair operation on the plywood panel at the same location as scanned by the at least one detection device.
[0012] The system may further include at least one holding device for holding the plywood panel. For example, the at least one holding device may be, for example, at least one actuator with a press foot or at least one actuator with a suction cup. Furthermore, the actuator with a suction cup may be positioned to actuate the at least one repair device on an opposite side of the plywood panel.
[0013] Additionally, the conveyor device may be arranged to at least one of transport the plywood panels into the system and remove the plywood panels from the system.
[0014] The system may further include at least one sensor for obtaining measurement data to determine a position of the plywood panel within the system, for example, the at least one sensor being one of a photocell, an ultrasonic sensor, or a capacitance sensor.
[0015] According to a second aspect, there is provided a method for repairing at least one plywood panel, the method comprising the steps of receiving a plywood panel; scanning the plywood panel at a first stop position by at least one detection device; and performing a repair operation on the plywood panel at a second stop position by at least one repair device in response to receiving a control signal from a control device, the control device being configured to generate the control signal to the at least one repair device in response to detecting a defect in the plywood panel based on information obtained by the at least one detection device.
[0016] The controller may be arranged to generate a control signal to a conveyor system to stop the plywood panels.
[0017] The first stop position and the second stop position may be the same.
[0018] The expression "number" as used herein refers to any positive integer starting from 1, e.g., 1, 2, or 3.
[0019] The term "plurality" as used herein refers to any positive integer starting from 2, for example, 2, 3, or 4.
[0020] In this document, the verbs "comprise" and "include" are used as open limitations that neither exclude nor require the presence of unrecited features. Features recited in dependent claims may be freely combined with one another, unless expressly stated otherwise. Furthermore, throughout this document, it is to be understood that the use of "a" or "an", i.e., the singular, does not exclude a plurality.
[0021] Various exemplary, non-limiting embodiments of the present invention, both as to structure and method of operation, together with additional objects and advantages thereof, will be best understood from the following description of specific exemplary, non-limiting embodiments when read in connection with the accompanying drawings.
[0022] Embodiments of the present invention are illustrated by way of example, and not by way of limitation, in the figures of the accompanying drawings. [Brief explanation of the drawings]
[0023] [Figure 1] 1 illustrates a schematic representation of a plywood panel repair system according to an embodiment of the present invention. [Figure 2] 1 illustrates a schematic diagram of a plywood panel repair system according to another embodiment of the present invention. [Figure 3] 10 illustrates a schematic diagram of a plywood panel repair system according to yet another embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION
[0024] The specific examples provided in the following description should not be construed as limiting the scope and / or applicability of the appended claims. The lists and groups of examples set forth in the following description are not exhaustive unless expressly stated otherwise.
[0025] FIG. 1 schematically illustrates a plywood panel 100 repair system according to an embodiment of the present invention. The plywood panel repair system may refer to entities including the equipment necessary to determine whether a plywood panel 100 input into the system contains predetermined defects and the equipment necessary to perform at least one repair operation on the plywood panel 100 if one or more predetermined defects are determined to exist. The system according to various embodiments may include a detection device 120 that scans the plywood panel 100 within the system. The detection device 120 may be used to scan the plywood panel 100 during processing, and by analyzing the data obtained from the scan, it may be determined whether a repair operation should be performed on the plywood panel 100 in question. Non-limiting examples of applicable detection devices 120 may be an image capture device such as a camera, or a laser scanner, also known as a laser profile sensor. The detection device 120 may be movably positioned within the frame structure 110, for example, by a shaft 140, and may thus be positioned to move at least partially over the plywood panel 100 during scanning to obtain necessary information about the plywood panel 100. Additionally, the system may include at least one repair device 130, i.e., a tool capable of repairing at least some of the detected defects. The non-limiting implementation shown schematically in FIG. 1 includes two repair devices 130. The repair device 130 may also be configured to move at least partially over the plywood panel 100 being repaired, for example, having a shaft 140 arrangement of a similar type to the detection device 120. The repair device 130 may include, for example, a tool for mechanically correcting the detected defects and a tool for applying material to the defects or the corrected defects. For example, the repair device 130 may be a putty filling device.
[0026] The repair system may be configured to operate such that the plywood panel 100 being repaired is scanned by the detection device 120 and data generated by the scan is analyzed. In response to detecting a predetermined defect in the plywood panel 100, a control signal may be generated to the repair device 130 to perform a repair operation. As previously described, the detection device 120 and the repair device may be mounted on one or more shafts 140 extending on the conveyor device, for example, transversely to the operation direction of the conveyor device 150. The shafts 140 may be positioned to move along one or more rails disposed on the conveyor device 150, and the motive force may be generated, for example, by respective linear motors. In some other embodiments, the shafts 140 may be positioned parallel to the operation direction of the conveyor device. That is, the scanning device 120 and the repair device 130 operate transversely to the operation direction of the conveyor device 150, i.e., relative to the direction of movement of the plywood panel 100. Furthermore, at least some of the respective devices, i.e., the detection device 120 and the repair device 130, may be movably mounted on the shaft 140 in question. For example, therefore, rails may be disposed within shaft 140 along which devices 120, 130 may be arranged to move in order to position themselves for operation. In such a configuration, devices 120, 130 and / or rails may be equipped with the necessary motion generating devices, such as applicable air engines or applicable linear motors. Furthermore, devices 120, 130 themselves may further comprise actuators that allow for vertical movement, for example, to reach plywood panels 100 for repair work.
[0027] Generally speaking, the system may include one or more shafts 140 arranged in the described manner. The detection device 120 and repair device 130 may be arranged on their own shafts 140, or the devices 120, 130 may be arranged on the same shaft 140, or a combination of the described shafts 140 may apply if the system includes at least one of the mentioned devices 120, 130. In one advantageous embodiment, the system is implemented such that two detection devices 120 are fixedly mounted on one shaft 140, and the same shaft 140 further includes a repair device 130 movably mounted on the shaft 140. Furthermore, another repair device 130 is movably mounted on another shaft 140. Such an implementation corresponds to that shown schematically in FIG. 1.
[0028] Overall control of the restoration system, and therefore at least control of the scanning operation, analysis, and control of the restoration device 130, as well as control of the conveyor device 150, may be performed by a controller 160, which may be communicatively and operably coupled to other entities belonging to the system. Communication between the entities and the controller 160 may be implemented either wired or wirelessly, for example, by applying known communication techniques. Furthermore, in some embodiments, the restoration system may include one or more holding devices capable of holding the plywood panel 100 in a predetermined position during restoration. This is important to ensure that the restoration device 130 performs the restoration operation at the correct position of the plywood panel 100 not only when the scanning operation is performed, but also when the control signal for the restoration device 130 is generated. Furthermore, during the restoration operation, it may be necessary to hold the plywood panel 100 in a predetermined position with one or more holding devices. Advantageously, both the scanning operation and the restoration operation are performed on the plywood panel 100, so that the panel remains in exactly the same position during both operations. Alternatively or additionally, the system may be configured to monitor whether the plywood panel 100 moves between the scanning operation and the repair operation and determine the amount of movement. In this way, the change in position can be taken into account to generate a control signal to the repair device 130. The measurement of the change in position can be performed using any applicable measuring device or system. A non-limiting example of an applicable holding device may be an actuator with a press foot, which may be arranged to hold the plywood panel 100 during repair under the control of the control device 160 and release the plywood panel 100 when it is ready for the repair operation, for example.
[0029] As noted in the above description, the present invention, according to various embodiments, may further include a conveyor apparatus 150 for transporting plywood panels 100 within the system. A controller 160 may be configured to control the operation of the conveyor apparatus 150, for example, in a manner to stop the conveyor apparatus so that scanning and repair operations can be performed on the stopped plywood panels 100. As noted above, in some embodiments, the positions of the plywood panels 100 within the system may differ from each other during scanning and repair operations. Accordingly, the controller 160 may be configured to generate control signals to the conveyor apparatus 150 to stop the plywood panels 100 within the system in order to perform scanning operations of the plywood panels 100 using the detection apparatus 120 and repair operations using the repair apparatus 130. The repair operations may be performed solely based on information obtained by the detection apparatus 120 in response to detection of defects in the plywood panels 100.
[0030] The conveyor device 150 itself can be a conveyor belt type solution, including one or more belts. The width of the belts can be selected to ensure the overall operation of the system. The belts can be arranged parallel to each other at an appropriate distance from each other.
[0031] In the non-limiting example shown schematically in FIG. 1, the system is implemented such that the shafts of the detection device 120 and the repair device 130 are located at different ends of the system in an idle state. Both devices can be arranged to move along one or more rails located above the conveyor device 150 within the frame, and the motive force for moving the shafts along the rails can be generated, for example, by respective linear motors. In such an embodiment, the operation of the detection device 120 and the repair device 130 is at least partially continuous with each other. In some other embodiments, the detection device 120 and the repair device 130 can be configured to remain at the same end in an idle state, i.e., both devices begin their operation from the same end of the system. Advantageously, in such an embodiment, dedicated rails can be located for both devices on the frame. The rails can be located at different vertical levels so that the devices can vertically pass each other during operation. In such an embodiment, the operation of the detection device 120 and the repair device 130 can also be continuous with each other, but simultaneous operation can also be configured. In a simultaneous operation mode, monitoring of the devices' mutual positions must be coordinated to avoid conflict situations.
[0032] FIG. 2 shows a schematic side view of an embodiment of the system, revealing further system aspects. That is, as described in various embodiments, the system can include one or more holding devices for holding the plywood panel 100 stationary during at least some phases of operation. As mentioned in the preceding description, a suitable holding device can be, for example, a press foot operating on the plywood panel, which can be controlled to press the plywood panel 100 against the conveyor device 150 as needed to hold the plywood panel 100 in place. Another implementation for holding the plywood panel 100 in place is shown in FIG. 2 , where holding is performed from the opposite side of the plywood panel on the conveyor device 150 than the repair device 130 operates. The holding device 210 in such an embodiment can be such that it can grip the plywood panel 100 in question. A suitable type of holding device 210 can be, for example, an actuator with a suction cup suitable for gripping the plywood panel 100. The number of actuators can be selected as needed. In some embodiments of the present invention, the holding device 210 including an actuator with a suction cup is controlled so that the repair device 130 first presses the plywood panel 100 against the conveyor device 150, and then uses the holding device 210 to grip the plywood panel 100 from the opposite side. In other words, the pressing by the repair device 130 generates a counterforce from a first side of the plywood panel 100, enabling gripping with the holding device 210 from the opposite side of the plywood panel 100. Gripping in the described manner can be adjusted prior to scanning and at least prior to the repair operation. One or more holding devices 210 can be movably arranged, for example, by applying an air engine as an actuator to enable movement of the holding device 210 at least in the vertical direction. In various embodiments of the present invention, multiple holding devices 210 with suction cups can be arranged in the same body, the vertical direction of which can be controlled, for example, by an air engine.If the holding device 210 needs to be moved in any horizontal direction, a rail implementation with a linear motor arrangement can be applied, as can the detection device 120 and the repair device 130. The described holding device 210 can also be based on vacuum suction using suction cups and other necessary equipment. Naturally, the control of one or more holding devices 210 can also be performed by the control device 160.
[0033] Generally speaking, the present invention does not limit the input of plywood panels 100 into the system. According to various embodiments, the conveyor device 150 can be positioned so that it exceeds the size of the cell itself. That is, the same conveyor device 150 positioned to transport plywood panels 100 within the system can extend to transport plywood panels 100 into the system and / or to transport them out of the system. Alternatively, the conveyor device 150 can operate solely within the system, with another conveyor device or transport device positioned to input plywood panels 100 into the conveyor device 150 of the system. A similar arrangement can be established at the output side of the system. Furthermore, plywood panels 100 can be input and output from the system using other transport devices applicable to the task of the present invention.
[0034] For example, FIG. 3 shows a schematic, non-limiting example of an embodiment in which plywood panels 100 are brought into a system according to the present invention from an input section. In this non-limiting example, the plywood panels 100 may be brought into the input section as a stack 320, and a transport device 310 may be arranged to pick up at least one top plywood panel 100 from the stack 320 and transport it to a system according to the present invention. More specifically, the transport device 310 may be arranged to transport the plywood panel 100 and place it on a conveyor device 150, such as a belt of the conveyor device 150. The system may be arranged to detect this with, for example, one or more sensors and transport the plywood panel 100 to a scanning position. The scanning may be performed using the detection device 120, and the repair operation may be performed using the repair device 130. As described above, the plywood panel 100 being scanned and repaired may be stopped during the respective operations by controlling the operation of the conveyor device 150. As discussed, systems according to various embodiments may include a holding device 210 for holding plywood panels 100, for example, during scanning and / or repair. In the embodiment shown in FIG. 3, the holding device 210 is a press foot. The non-limiting example of the present invention, as shown schematically in FIG. 3, is implemented such that a common framework 110 is located both in the input section, i.e., the stack side, and in the system according to the present invention. However, the framework 110 can be separated into separate entities as long as the transport of the plywood panels 100 is configured in some way. While the conveyor device 150 in the embodiment of FIG. 3 is implemented to transport the plywood panels 100 out of the system, other configurations can also be used.
[0035] For clarity, the transport device 310 may be implemented as a device with multiple gripping devices capable of gripping the plywood panels 100 to be transported. The gripper devices may be such that they can move vertically to reach the plywood panels and may have means such as vacuum suction or vacuum cups (see suction cups) for gripping the object in question. Furthermore, the transport device 160 may be implemented based on rails attached to the frame structure 110 along which the transport device 310 can move. The transport device 310 may include a motion generating device, such as a linear electric motor, to generate a force that causes the transport device 310 to move and thereby achieve the transport of the plywood panels. In other words, the transport device 310 may be controlled to transport the plywood panels 100 between the input section and the system, typically from input section A to the system, and then release the transported plywood panels 100 there.
[0036] The present invention, according to various embodiments, can include one or more sensors for monitoring the position of the plywood panel 100 within the system, and based on the sensor data, the control unit can generate one or more control signals to control the operation of the conveyor apparatus 150. In various embodiments of the present invention, the detection apparatus 120 can be used to derive the position data. Alternatively or additionally, additional sensors, such as photocells, such as infrared-based sensors, can be positioned to detect at least one edge of the plywood panel 100 as it is transported with the conveyor apparatus 150 and control the operation of the conveyor apparatus 150 based on the detection by the sensor data. Other applicable sensor types include ultrasonic sensors or capacitance sensors. The sensor operation can be implemented by detecting when a signal between a sensor transmitter and receiver is interrupted by the plywood panel 100 or any other predetermined element indicative of the position of the plywood panel 100, and based on the detection, a control signal can be generated to control the conveyor apparatus 150. As in the case of multiple sensors, various further implementations can be established to generate a common value (such as an average value) of the detections that represents the position and can be used to control the conveyor device 150.
[0037] Thus, such a system may be configured to perform a method for repairing at least one plywood panel 100, in which the at least one plywood panel 100 is received into the system. The plywood panel 100 may be received, for example, via a conveyor system. Furthermore, in this method, the at least one plywood panel 100, typically all plywood panels entering the system, may be scanned by a detection device 120 within the system, and a repair operation may be performed on the plywood panel 100 using a repair device 130 in response to receiving a control signal from a controller 160 configured to generate a control signal to the repair device 120 in response to detecting a defect in the plywood panel 100. The defect detection may be performed based on information obtained by the detection device 120 from a plywood panel 100 that is stopped during scanning, for example, by analyzing the obtained information. The method may also include the step of the controller 160 generating a control signal to stop the conveyor system 150 in response to detecting that the plywood panel 100 is in the scanning position. Alternatively, the controller 160 may be arranged to generate control signals to move the plywood panel 100 a predetermined distance within the system, and stop the plywood panel 100 at another location to perform a repair operation, as discussed in the preceding description. Further aspects related to this method have been described in the system description.
[0038] As is clear from the above description, the present invention relates to a system capable of repairing plywood panels. The repair includes at least a detection operation and a repair operation. The system comprises the necessary entities, such as devices and / or functions, for performing the repair. Even if an entity configured to perform the repair is referred to as a system in the description herein, it can be understood as a device comprising the necessary elements and entities, as has been described, for performing the repair of plywood panels.
[0039] In addition to the advantage of enabling a compact plywood panel repair system, the present invention provides additional benefits by utilizing the idea of stopping the plywood panel 100 for at least some operations. Stopping the plywood panel 100 for scanning can improve the quality of the captured image and, therefore, defect detection. In particular, if the plywood panel 100 remains stationary between scanning and repair operations, the accuracy of the repair can be significantly improved. As a result, the quality of the repaired plywood panel can be high, and the consumption of repair materials, such as putty, can be optimized. The same advantages can be achieved even if the plywood panel 100 is moved a manageable distance between scanning and repair operations. Compared to existing solutions in which the plywood panels move along a conveyor system, allowing the plywood panels to change position, the advantages of the present invention are noteworthy.
[0040] The specific examples provided in the above description should not be construed as limiting the applicability and / or interpretation of the appended claims. The lists and groupings of examples provided in the above description are not exhaustive unless expressly stated otherwise.
Claims
1. A system for repairing a plywood panel (100), said system comprising: at least one detection device (120) for scanning the plywood panel (100); at least one repair device (130) for performing a repair operation on said plywood panel (100); a conveyor device (150) for transporting the plywood panels (100); a transport device (310) arranged to pick up a plywood panel (100) from a stack (320) of plywood panels from an input section where the plywood panels are input as a stack (320) and to transport the plywood panel (100) on the conveyor device (150); a control device (160) for generating at least one control signal to the conveyor device (150) to stop the plywood panel (100) in the system performing a scanning operation of the plywood panel (100) with the at least one detection device (120) and to stop the plywood panel (100) performing a repair operation with the at least one repair device (130) based on information obtained by the detection device (120); A system comprising:
2. The system of claim 1 , wherein the at least one detection device (120) is positioned to move at least partially over the plywood panel (100) during scanning.
3. 3. The system of claim 1, wherein the at least one repair device is configured to perform a repair operation on the plywood panel at the same location scanned by the at least one detection device.
4. The system according to any one of claims 1 to 3, wherein the system further comprises at least one holding device (210) for holding the plywood panel (100).
5. The system of claim 4, wherein the at least one holding device (210) is either at least one actuator with a press foot or at least one actuator with a suction cup.
6. The system of claim 5 , wherein the actuator with a suction cup is positioned to act on the at least one repair device (130) on an opposite side of the plywood panel (100).
7. The system according to any one of claims 1 to 6, wherein the system further comprises at least one sensor for obtaining measurement data for determining the position of the plywood panel (100) within the system.
8. The system of claim 7 , wherein the at least one sensor is one of a photocell, an ultrasonic sensor, and a capacitance sensor.
9. A system described in any one of claims 1 to 8, wherein the transport device (310) is provided with a plurality of gripping devices that grip at least one of the plywood panels (100).
10. The system described in Claim 9, wherein the plurality of gripping devices are vertically movable.
11. A system as described in claim 9 or claim 10, wherein the plurality of gripping devices are provided with suction means for gripping at least one of the plywood panels (100).
12. A system described in any one of claims 1 to 11, wherein the transport device (310) is arranged to move along rails mounted on a frame structure (110).
13. The system described in claim 12, wherein the frame structure (110) has one or more rails arranged so that at least one of the detection devices (120) and at least one of the repair devices (130) move at least partially on the plywood panel (100).
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