Method of generating a controllable electrostatic attraction force between two objects and providing adhesion with this attraction force
11381179 ยท 2022-07-05
Assignee
Inventors
Cpc classification
H02N13/00
ELECTRICITY
B25J15/0085
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A method of generating an electrostatic attraction force includes an application of an insulating surface, wherein the insulating surface separates electrode arrays and the electrode arrays positioned in at least two different axes and providing an adhesion with an help of the electrostatic attraction force, wherein a matrix array is formed for an electrostatic attraction force region to provide gravity to at least one of objects, at a desired point and a number of electrodes is generated by feeding with a DC voltage and/or an AC voltage at desired points and at a desired force, wherein at least two objects adhere with the electrostatic attraction force.
Claims
1. A method of generating a controllable electrostatic attraction force and providing an adhesion with the controllable electrostatic attraction force, the method comprising: generating a multi-regional controllable electrostatic attraction force on objects, wherein adhesion properties of the objects are changed independently, positioning electrode arrays in a form of a matrix array in at least two axes to generate the controllable electrostatic attraction force at points where the electrode arrays intersect, by feeding the electrode arrays with a DC voltage and/or an AC voltage to ensure the electrode arrays have multi-regional adhesion surfaces, applying an insulating surface, wherein the insulating surface separates the electrode arrays from each other; determining a location, a number and an attraction force of attraction force regions to be generated for the objects, wherein the multi-regional controllable electrostatic attraction force is generated on the objects, applying the electrode arrays to the object on which electrostatic attraction force can be generated in at least two different axes so that an electrode matrix for the determined electrostatic attraction force regions is generated, applying the insulating surface to the objects, wherein the multi-regional controllable electrostatic attraction force is generated on the objects, wherein the electrode arrays in the at least two different axes are separated, feeding the electrode arrays corresponding to the determined electrostatic attraction force regions with the DC voltage and/or the AC voltage, and generating an electrostatic attraction at intersections of the electrode arrays fed with the DC voltage and/or the AC voltage.
2. The method of generating the controllable electrostatic attraction force and providing the adhesion with the controllable electrostatic attraction force according to claim 1, wherein the method comprises the object, on which electrostatic attraction force can be generated may also adapt to a shape of the object to be gripped by applying an elastomer coating to the object, on which electrostatic attraction force can be generated, increasing the surface area.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
REFERENCES IN THE DRAWINGS
(8) 1. Electrode array X. X axis electrode array Y. Y axis electrode array 2. Insulating surface 3. Electrostatic attraction force region 4. Undesired region 5. The object that can generate electrostatic attraction force 6. The object to be gripped v. Voltage t. Time
BRIEF DESCRIPTION OF THE EMBODIMENTS
(9) The method of the present invention relates to generating a multi-regional controllable electrostatic attraction force on the objects so that the adhesion properties of the objects can be changed independently, positioning electrode arrays (1) positioned in the form of a matrix array in at least two axes to generate a attraction force at the points where they intersect, by feeding them with DC and/or AC voltage to ensure that they have multi-regional adhesion surfaces and applying an insulating surface (2) that separates the electrode arrays (1) from each other.
(10) Electrode arrays (1) are positioned in the form of a matrix array on the surface where the electrostatic attraction force is desired to be provided. With this matrix array, an electrostatic attraction force can be generated at the desired points on the surface of the object (5), which can generate electrostatic attraction force.
(11) Therefore, electrodes arrays (1) are arranged on at least two axes to objects (5) that can generate electrostatic attraction force. The electrode arrays (1) are separated from each other by the insulating surface (2).
(12) In the figures, the shapes of the electrodes in the electrode arrays (1) are given as examples, and the electrode shapes and arrays may vary depending on the electrostatic attraction force to be generated.
(13) In objects (5) capable of generating gravity, the electrode arrays (1) corresponding to the regions where electrostatic attraction force is desired to be generated are fed with DC and/or AC voltage and electrostatic attraction force region (3) is generated at the intersections of electrode arrays (1) fed by DC and/or AC voltage.
(14) In
(15) For example, as shown in
(16) Thus, multi-regional controllable electrostatic attraction force is generated by expanding and/or increasing the number of the electrostatic attraction force regions (3) on the objects (5) that can generate electrostatic attraction force as desired. Also, it can be provided that the objects (6) to be gripped can adhere independently.
(17) Said object (5) on which electrostatic attraction force can be generated may be equipment such as robotic and mechanical grippers, conveyor belts, wheels, pallets, etc. The method of the present invention is also used on the surfaces of these vehicles, so that they can have adhesion properties depending on the electrostatic attraction force, whose location and strength can be controlled locally.
(18) The method of generating the electrostatic attraction force and providing adhesion with this attraction force of the invention comprises the following process steps; determining the location, number and attraction force of the attraction force regions (3) to be generated for the object (5) on which electrostatic attraction force can be generated, applying the electrode arrays (1) to the object (5) on which electrostatic attraction force can be generated in at least two different axes to the determined electrostatic attraction force region (3) so that the suitable electrode matrix is generated, applying an insulating surface (2) to the object (5), on which electrostatic attraction force can be generated so that the electrode arrays (1) in different axes are separated, feeding the electrode arrays (1) corresponding to the determined electrostatic attraction force region (3) with high DC and/or AC voltage, generating an electrostatic attraction at the intersections of electrode arrays (1) fed with high DC and/or AC voltage.
(19) The method of generating the electrostatic attraction force and providing adhesion with this attraction force may also comprise applying a suitable elastomer coating to the external structure of the object (5) on which electrostatic attraction force can be generated. Thus, the object (5), on which electrostatic attraction force can be generated, may also adapt to the shape of the object (6) to be gripped and cover it, and have the shape-based holding feature. The elastomer coating application also allows the generating more surface area to the object (5) on which electrostatic attraction force can be generated.
(20) In an example of the present invention, the X axis electrode array (X) is applied to the X axis and the Y axis electrode array (Y) is applied to the Y axis.
(21) As shown in
(22) Those determined from the X axis electrode arrays (X) and the Y axis electrode arrays (Y) are fed with high DC and/or AC voltage to generate an electrostatic attraction force region (3) at the desired point on the object (5) on which the electrostatic attraction force can be generated.
(23) In
(24) Thanks to the multiple electrostatic attraction force regions (3) generated by the method, it is provided that more than one objects to be gripped can adhere to the object (5), on which electrostatic attraction force can be generated, independently each other.
(25) However, in this case, undesired regions (4) may be formed. In order to prevent the said undesired region (4) from forming, the time shifting method included in the method of the present invention can be applied. In the time shifting method which will be carried out at high frequency, the formation of the undesired region (4) can be prevented by preventing the electrodes corresponding to the undesired region (4) to be active at the same time can be prevented by time shifting.
(26) It is possible to prevent the undesired regions (4) formed when the X1-Y1 and X5-Y2 electrode arrays are active, which are seen in
(27) With the method of the present invention, the tools having adhesion property depending on the electrostatic attraction force are provided the feature of multi-regional controllable electrostatic attraction force region (3). With this feature, these tools are provided with multi-regional adhesion surfaces that can be changed independently.