Vent hole cleaning apparatus and vent hole cleaning method
10933450 ยท 2021-03-02
Assignee
Inventors
Cpc classification
B08B2209/027
PERFORMING OPERATIONS; TRANSPORTING
B29D30/0662
PERFORMING OPERATIONS; TRANSPORTING
B29D2030/0663
PERFORMING OPERATIONS; TRANSPORTING
B08B9/027
PERFORMING OPERATIONS; TRANSPORTING
B29C33/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
B08B7/02
PERFORMING OPERATIONS; TRANSPORTING
B08B9/027
PERFORMING OPERATIONS; TRANSPORTING
B29C33/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A vent hole cleaning method for cleaning a vent hole provided on a molding surface of a mold for vulcanizing a rubber product includes a step of detecting a shape of the molding surface; a step of calculating a position of the vent hole by comparing the shape of the molding surface obtained in the step of detecting with molding surface information stored in a controlling device in advance and including a position of the vent hole; a step of moving a cleaning means to the vent hole based on the calculated position of the vent hole; and a step of cleaning the vent hole by the cleaning means.
Claims
1. A vent hole cleaning method for cleaning a vent hole provided on a molding surface of a mold for vulcanizing a rubber product comprising: a step of detecting a shape of the molding surface; a step of calculating a position of the vent hole by comparing the shape of the molding surface obtained in the step of detecting with molding surface information stored in a controlling device in advance and including a position of the vent hole; a step of moving a cleaning means to the vent hole based on the calculated position of the vent hole; and a step of cleaning the vent hole by the cleaning means.
2. The vent hole cleaning method according to claim 1, wherein in the step of detecting, a three-dimensional shape of the molding surface is measured by using a 3D laser sensor.
3. The vent hole cleaning method according to claim 1 further comprising: a step of imaging the molding surface including the position of the vent hole after the position of the vent hole is calculated; and a step of calculating a movement amount of the cleaning means by comparing an image obtained in the step of imaging with the molding surface information.
4. The vent hole cleaning method according to claim 1, wherein in the step of cleaning, the vent hole is cleaned by ultrasonic vibration.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
DESCRIPTION OF THE REFERENCE SIGNS
(7) 1 apparatus 3 mold 4 molding surface 5 vent hole 11 detecting means 12 cleaning means 13 controlling means 14 guiding means
BEST MODE FOR CARRYING OUT THE INVENTION
(8) An embodiment of the present invention will now be described in conjunction with accompanying drawings.
(9)
(10) As shown in
(11) The mold 3 used for vulcanization molding of the tire 2 is divided into a plurality of segments, for example.
(12) Each of the segments is provided with about 50 vent holes 5, for example.
(13) Note that only a part of the vent holes 5 provided in a tread segment 7 for forming a tread portion of the tire 2 is shown, in
(14) As shown in
(15) The cleaning apparatus 1 includes a detecting means 11 for detecting the shape of the molding surface, a cleaning means 12 for cleaning the vent holes 5, a controlling means 13 for calculating the positions of the vent holes 5 provided in the mold 3, and a guiding means 14 for moving the cleaning means 12.
(16) The detecting means 11 is supported freely movably by a robot arm (not shown), for example. The detecting means 11 can detect the shape of the molding surface 4 of the mold 3 and send the obtained information to the controlling means 13.
(17) The detecting means 11 may be anything as long as it can detect the shape of the molding surface, and a detecting method by using various kinds of sensors or by imaging with a camera can be used, for example. In the detecting means 11 in this embodiment, a 3D laser sensor 21 for measuring the three-dimensional shape of the molding surface 4 is suitably used, for example. The 3D laser sensor 21 is excellent in detecting coordinates in a height direction of the molding surface and is useful for accurately detecting the molding surface with many irregularities.
(18)
(19) As shown in
(20) In a second step of the cleaning method in this embodiment, the controlling means 13 compares the actual shape of the molding surface 4 obtained by the detecting means 11 with the molding surface information stored in advance and calculates the positions of the vent holes 5.
(21) The cleaning means 12 is for removing deposits in the vent holes 5. The cleaning means 12 includes various embodiments such as means for dissolving the deposits with liquid, means for blowing the deposits with high pressure gas, means for blowing powdery materials at high speed, or a method of inserting a metal wire into the vent holes 5 to remove the deposits, and the like, for example.
(22) With the cleaning means 12 in this embodiment, the interior of the vent hole 5 is cleaned by ultrasonic vibration generated by a probe 31 extending straight in a tapered manner, for example. The cleaning means 12 configured as such can effectively clean the vent holes 5 each provided with a spring vent 22 as shown in
(23) As shown in
(24) In a third step of the cleaning method in this embodiment, the guiding means 14 operates based on the positions of the vent holes 5 calculated by the controlling means 13, and moves the cleaning means 12 to the vent holes 5. Thereafter, in a fourth step, the cleaning means 12 cleans the vent holes 5. As described above, in this embodiment, by comparing the actual shape of the molding surface 4 obtained by the detecting means 11 with the molding surface information stored in advance, the positions of the vent holes 5 are accurately calculated. Therefore, in this embodiment, it is possible that the positions of the vent holes 5 are surely calculated, therefore, an oversight of the vent holes 5 is suppressed. Moreover, even in a situation where the vent holes 5 are easily overlooked, such as when the mold is very dirty, the vent holes 5 are surely cleaned.
(25) As a further preferred embodiment, the cleaning method in this embodiment includes a step of imaging the molding surface 4 including the positions of the vent holes 5 by an imaging means 15 (hereinafter may be referred to as imaging step) after the above-described second step.
(26)
(27) In this embodiment, it is preferred that, after the imaging step, the controlling means 13 calculates a movement amount of the cleaning means 12 by comparing the image obtained in this step with the molding surface information stored in advance.
(28) In the vent hole cleaning method in this embodiment including the imaging step configured as such, even when the vent holes 5 are provided with the spring vents 22, for example, the vent holes 5 are not overlooked, therefore, it is possible that the vent holes 5 are surely cleaned.
(29) In a further preferred embodiment, the cleaning means 12 (shown in
(30) In another embodiment of the present invention, the dual camera 25 may be used as the detecting means 11, for example, instead of the 3D laser sensor 21, for example. The dual camera 25 is capable of three-dimensionally imaging the molding surface 4 with the two lenses 26, 26. The dual camera 25 can detect the molding surface 4 in a shorter time than the above-mentioned 3D laser sensor, therefore, it is useful for improving the operational efficiency.
(31) While detailed description has been made of the vent hole cleaning apparatus and the vent hole cleaning method as an embodiment of the present invention, the present invention can be embodied in various forms without being limited to the illustrated embodiments.