This application claims priority to Japanese Patent Application No. 2021-077444 filed on Apr. 30, 2021. The entire content of Japanese Patent Application No. 2021-077444 is incorporated herein by reference.
The present invention relates to a pressurization device.
Conventionally, as a pressurization device, the item noted in Patent Document 1 incorporated in a badge manufacturing device is known. This pressurization device is for manufacturing a badge having a front cover and a back cover, and with the front cover and the back cover overlapped and set in a setting section inside a body, by operating a handle, a manufacturing unit (pressing part) is made to enter the setting part using a screw mechanism, and front cover processing is done by pressure-engaging with the front cover. With this kind of pressurization device, a torque limiter is provided inside the handle, and when excess load is applied, power transmission is blocked so as not to transmit the power of the handle to the manufacturing unit.
However, with this kind of pressurization device, when there is an object to be pressurized, if the manufacturing unit presses more than necessary on the object to be pressurized, the torque limiter operates, and the handle spins idly, thus preventing the object to be pressurized from being crushed more than necessary.
However, if there is no object to be pressurized in the setting section inside the body, when the handle is turned accidentally and the manufacturing unit is lowered, the handle contacts the body top surface and has forceful sliding contact, so there was the risk of damage to the handle or the body.
The present invention was created considering these points, and its purpose is to provide a pressurization device that can prevent sliding contact between the handle and the body outer surface.
A pressurization device includes a body, a shaft, and a stopper.
The body includes a setting section and an insertion section. The setting section is configured to accommodate an object to be pressurized. The insertion section includes a female thread part formed on a hole wall thereof.
The shaft has a first longitudinal end and a second longitudinal end being opposite to the first longitudinal end. The first longitudinal end is inserted in the setting section. The second longitudinal end is at outside of the body. The shaft has a male thread part being engaged with the female thread part. The shaft is configured to advance and retreat with respect to the setting section by rotation with a central axis as the center.
The stopper is configured on the shaft.
The pressing part is configured on the first longitudinal end to press the object in the setting section against a prescribed fixed part when the shaft advances.
The handle is configured on the second longitudinal end to rotate the shaft. The handle includes a torque limiter being configured to block transmission of power between the handle and the shaft when the power exceeds a prescribed amount.
When the female thread part is engaged with the male thread part and when the shaft enters deeper than a prescribed position, the stopper is configured to abut an outer surface of the body and to block the handle from abutting the outer surface of the body.
Hereafter, a mode for carrying out the invention is explained while referring to the attached drawings.
The molding die 50 is for molding a molding material. As molding material, paper such as toilet paper that is easy to mold when water is included is used, for example. Instead of paper, it is also possible to use paper clay or clay.
In specific terms, the molding die 50 of the embodiment is for creating a container half body 81 of the egg-shaped body 80 (see
A half egg-shaped hole (recess) 53 is formed on the top surface of the lower die 51. One oval-shaped hole 54a each is formed on two corner parts of one short side part of this lower die 51. Also, a circular hole 54b is formed on one corner part of the other short side part of the lower die 51. This lower die 51 is constituted from two parts 51a, 51b aligned in the long side direction, and the two parts 51a, 51b can be separated by a center part in the longitudinal direction of the hole 53. Also, with the lower die 51, the part 51b is detachable from above with respect to the part 51a, so it is easy to separate the molded article, and easy to do cleaning.
On the upper die 52 is formed a bulging part 56 of a prescribed thickness, that has a complementary shape with the hole 53 of the lower die 51, and that is fitted in that hole 53 with a prescribed gap. A large number of drain holes 57 are formed on the bulging part 56. Also, as shown in
As shown in
As shown in the drawing, a screw cylinder (insertion section) 15 having a central axis line extending in the vertical direction is provided on the ceiling part of the setting section 14 in the body 11, and a female thread part 16 (see
Also, inserted in the screw cylinder 15 is a shaft 17 that, though not particularly limited, is made of plastic. A male thread part 18 is partially formed on the shaft 17, and the male thread part 18 is screwed into the female thread part 16. On the bottom end part of the shaft 17, as shown in
The top end part of the shaft 17 facing the inside of the handle 20 has a small diameter, a male thread part (not illustrated) is formed on that small diameter part, and a nut 25 (see
As shown in
As shown in the drawing, a recess 27 is formed at the upper half center of the handle 20, a shaft part of the pin with a head 26 is inserted in a hole in the bottom center (not illustrated) of the recess 27, and is pressed into the hole 17a of the upper end center of the shaft 17 (see
As shown in the drawing, the handle 20 is linked with the shaft 17 with a torque limiter (clutch) 21 interposed. The torque limiter 21 is constituted from a first engaging part 21a fixed to the shaft 17, and a star-shaped second engaging part 21b having an internal gear-shaped inner peripheral surface that is formed on the lower half of the handle 20 and that surrounds the first engaging part 21a. The first engaging part 21a is constituted by a base 210a externally fitted to the nut 25, and a belt-shaped part 211a that has elasticity, is linked at both ends, and that swells in an arc shape on the base 210a. Also, under normal conditions, a projection 212a of the belt-shaped part 211a engages with the valley part of the inner surface of the second engaging part 21b, and the power of the handle 20 is transmitted to the shaft 17 via the torque limiter 21. Meanwhile, when excess load acts on the handle 20, the projection 212a of the belt-shaped part 211a is in sliding contact so as to follow the inner surface of the engaging part 21b, and power transmission of the handle 20 is blocked by the elastic deformation of the belt-shaped part 211a accompanying that.
Furthermore, as shown in
Also, as shown in
This results in the torque limiter 21 operating. Though the handle 20 is capable of a rotation operation thereafter as well, even if the handle 20 is rotated, it spins idly with respect to the shaft 17 and its power is not transmitted to the shaft 17. In contrast to this, when there is no stopper 29, even if the bottom surface of the handle 20 abuts the top surface of the raised part 11a, the torque limiter 21 does not work, so as long as the handle 20 is turned, the shaft 17 rotates, and there is the risk of damage occurring to the handle 20 or the body 11 by the bottom surface of the handle 20 being forcefully pressed against the top surface of the raised part 11a. That possibility is particularly high when at least one of the handle 20 and the body 11 is made of plastic. With the pressurization device 10 of the embodiment, though not particularly limited, the handle 20 and the body 11 are made of plastic.
Attachment of the stopper 29 to the shaft 17 needs to be set at a position at which the molding die 50 which is the object to be pressurized is suitably pressed, or at a position at which the shaft 17 enters more deeply than that, at a location at which it will be abutted on the top surface of the body 11. However, when there is a margin between the position at which the molding die 50 which is the object to be pressurized is suitably pressurized and the floor surface, it is preferable to be set in a location where fingers will not be pinched by the floor surface and the pressing part 19.
It is also possible for the stopper 29 to not be fixed to the shaft 17, and can be provided to be able to spin idly around the axis of the shaft 17 if not moving in the axial direction of the shaft 17.
First, paper which is the raw material is packed into the hole 53 of the lower die 51. Next, water is placed in the hole 53 and blended well with the paper. It is also possible to moisten the paper from the start, and pack the paper into the hole 53 after that. Thereafter, the upper die 52 is placed on the lower die 51, and the molding die 50 is set in the setting section 14 of the pressurization device 10.
Next, the handle 20 is operated in the direction that lowers the pressing part 19. By doing this, as shown in
Water squeezed out of the paper is collected in the removed molding die 50, so that extra water is discarded, and the molded paper is removed from the molding die 50 and dried. This removal of the molded paper from the molding die 50 may also be done after the paper has dried to some degree. This completes the container half body 81 of the egg-shaped container 80.
Working as described above, the container half body 81 of the egg-shaped container 80 is created, then one more container half body 81 is created, and the two container half bodies 81 are decorated. Then, a small item such as a doll 82, etc., is placed in the container half body 81, the edges of the two container half bodies 81 are glued together, etc., and this is used as a small item container.
The present invention is not limited to the embodiment noted above, and it goes without saying that various modifications are possible without straying from the gist.
For example, with the embodiment noted above, a case was explained in which the molding die 50 was used to create the container half bodies 81 of the egg-shaped container 80, but it can also be applied when using another molding die to produce dolls or flower shape items.
Furthermore, with the embodiment noted above, a case was explained of applying the pressurization device 10 to the molding device 100, but it is also possible to apply this broadly to badge manufacturing devices and other processing devices, etc.
Also, with the embodiment noted above, a case was explained of the shaft 17 operating in the vertical direction, but it is also possible to apply the invention of this application in cases of operating in a lateral direction or other direction.
With the first means, if the handle is rotated in one direction when there is no object to be pressurized in the setting section, for example, the handle approaches the outer surface of the body. In this case, first, the stopper contacts the outer surface of the body, and rotation of the shaft is blocked. Having done that, excess load acts on the handle, the torque limiter operates to make the handle spins idly with respect to the shaft, and abutting of the handle on the body is blocked. This makes it possible to prevent sliding contact between the handle and the body.
With the second means, the stopper is a ring-shaped flange part that protrudes radially outward from the outer circumference of the shaft, so the strength of the stopper increases, and the entire circumference of the shaft abuts the outer surface of the body, making it possible to reliably block lowering of the shaft.
With the third means and the fourth means, when lowering of the shaft is stopped, it is possible to create a gap between the outer periphery part of the handle and the outer surface of the body, and possible to prevent fingers from being forcefully pinched.
Number | Date | Country | Kind |
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2021-077444 | Apr 2021 | JP | national |