The present invention relates to a container capable of preventing a sideslip and jumping of a housed workpiece.
As this type of container, such a container is conventionally known that prevents a sideslip of a workpiece by bringing a plurality of projections projecting from a bottom face into contact with side faces of the workpiece and also prevents jumping of the workpiece by closing an upper face opening of the container with a cover and winding a band around the closed container from above the opening (see, for example, Patent Document 1).
Patent Document 1: Japanese Unexamined Patent Application Publication (Translation of POT Application) No. 2008-515730 (Paragraph [0026], FIG. 9, FIG. 10a)
However, the above-described conventional container is poor in usability, because the band and the cover are required to be detached every time it is desired to visually check a type, size or the like of the housed workpiece. Additionally, disadvantageously, a cover is required for every container in stacking a plurality of containers, and the stacking height increases.
The present invention has been made in view of the above problems, and it is an object thereof to provide a container which is more superior in usability to the conventional container and capable of suppressing the stacking height.
A container capable of preventing a slideslip and jumping of a housed workpiece according to the invention of claim 1 for achieving the above object is characterized in that a band insertion groove is formed in a bottomwall of the container, a bridging member is disposed between a pair of inner side faces of the band insertion groove, and a workpiece is arranged above the bridging member so that a band can be wound around the workpiece together with the bridging member.
In the invention of claim 2, the container of claim 1 is characterized in that the workpiece is annular and the band is made to pass inside and outside the annular workpiece and can be wound around the workpiece and the bridging member together.
In the invention of claim 3, the container of claim 1 or 2 is characterized in that the band insertion groove has an end part provided with a band guide part gradually rising upward from the bottom face of the band insertion groove with increasing distance from the bridging member.
In the invention of claim 4, the container of any one of claims 1 to 3 is characterized in that the band insertion groove is formed at the center in a width direction of a bottom face of a horizontal positioning groove formed in the bottom wall of the container, a plurality of horizontal positioning engaging parts are aligned at one side part of the horizontal positioning groove, and sideslip regulating components are provided, the regulating component being detachably received by the horizontal positioning groove and concavo-convexly engaged with any of the horizontal positioning engaging parts, part of the regulating component being covered with the workpiece from above and another part thereof being brought into contact with the workpiece from the side.
[Invention of Claim 1]
A container of claim 1 can prevent both a sideslip and jumping of a workpiece by arranging the workpiece above the bridging member disposed between a pair of inner side faces of the band insertion groove and bundling the bridging member and the workpiece with a band. Since the container of the present invention thus can prevent both a sideslip and jumping of the workpiece with no cover, the container is more superior in usability to a conventional container requiring a cover and the stacking height can be suppressed.
[Invention of Claim 2]
Since, in the container of claim 2, the band is made to pass through the inside and outside of an annular workpiece and can be wound around the workpiece and the bridging member together, the band is shortened and prevented from loosening as compared with the case where a band is wound so as to surround the whole of the workpiece or the case where, as conventionally, a band is wound around a container and a cover together.
[Invention of Claim 3]
According to the container of claim 3, when the band is made to pass through under the bridging member, a tip end of the band slide-contacts with a band guide part at an end part of the band insertion groove and is guided upward. Thus, the winding of the band around the workpiece is facilitated.
[Invention of Claim 4]
According to the container of claim 4, since the band insertion groove is formed in a bottom face of a horizontal positioning groove formed in the bottom wall of the container, either attaching a sideslip regulating component in the horizontal positioning groove for preventing a sideslip of the workpiece or inserting a band into the band insertion groove for preventing a sideslip and jumping of the workpiece can be selected appropriately, the degree of freedom of choice of usage of the container is increased.
Hereinafter, an embodiment of the present invention will be described with reference to
Specifically, as shown in
Upper face recess parts 13K are respectively formed at four corners of the upper face of the container 10 by recessing the upper face flanges 13X, and lower face leg parts 14A respectively project from four corners of a lower face of the container 10. When the containers 10 are stacked, each lower face leg part 14A is fitted in each upper face recess part 13K. A pair of upper face center recess parts 13N is formed at the centers of upper faces of the pair of side walls 13 not having the handle parts 13H, by recessing the upper face flanges 13X. On the other hand, as shown in
As shown in
As shown in
Moreover, as shown in
A sideslip regulating component 30 shown in
Moreover, at the other end part of the base plate 32A, between the engagement leg pieces 33 not connected by the gate-shaped wall 34 serves as a projection piece receiving gap 36. The projection piece receiving gap 36 has substantially the same width as the slit 35.
As shown in
The positioning projection part 31 is such that an upper end of a cylindrical body 31A erected from a position near one end in the longitudinal direction of the base part 32 is closed by a dome-shaped (semispherical) upper end wall 31B. As shown in
Moreover, as shown in
As shown in
A bridging member 21 is disposed between the pair of inner side faces 20S at a middle part in the longitudinal direction of the band insertion groove 20. As shown in FIG. 8, the bridging member 21 is composed of an upper face plate 21A having an upper face flush with the bottom face 15V of the horizontal positioning groove 15B, a lower face plate 21B having the same scale as the upper face plate 21A and facing the upper face plate 21A from just below at a substantially center in a depth direction of the band insertion groove 20, a closing plate 21D for closing an entire opening at a side away from the center recessed part 15C between the upper face plate 21A and the lower face plate 21B, and a vertical rib 21C connecting among the upper face plate 21A, the lower face plate 21B and the closing plate 21D at a width-direction center of the band insertion groove 20 as shown in
The constitution of the container 10 of the embodiment is described above. Next, operation and effects of the container 10 will be described. The rolling bearing W can be fixed to the container 10 in various forms. As one example of the forms, a case will be described below where the rolling bearing W is fixed by only two bands 40 as shown in
Then, as shown in
At this moment, the tip end of the band 40 is obliquely inserted between the bottom face 20C of the band insertion groove 20 and the bridging member 21, or is slide-contacted with the inclined face 20A at one end of the band insertion groove 20. The tip end of the band 40 then passes through between the bottom face 20C of the band insertion groove 20 and the bridging member 21 and advances to the other end side of the band insertion groove 20. Then, the tip end of the band 40 is brought into contact with the inclined face 20B positioned inside the rolling bearing W, of the other end part of the band insertion groove 2 and is guided upward. Then, the tip end of the band 40 is picked and inserted into the band insertion hole 40B of the buckle part 40A, and the bearing W and the bridging member 21 are put together and loosely fastened with the band 40.
Next, the other band 40 is inserted into the band insertion groove 20 aligning with the band insertion groove 20 in which the band 40 has been inserted in the same manner, and the rolling bearing W and the bridging member 21 are loosely fastened. Then, the bands 40 are evenly and tightly fastened (see
Thus, in the container 10 of the embodiment, the rolling bearing W is arranged above the bridging members 21 disposed between the respective paired inner side faces 20S of the band insertion grooves 20 and the bridging members 21 and the rolling bearing W are put together and fastened with the bands 40, whereby both a sideslip and jumping of the rolling bearing W can be prevented. That is, since both the sideslip and jumping of the rolling bearing W can be prevented without a cover for the container 10, the container 10 is more superior in usability to a conventional container requiring a cover, and stacking height can be suppressed.
Additionally, the band 40 can be passed through the inside and outside of the rolling bearing W and wound around the rolling bearing W and the bridging member 21 together. Therefore, the band 40 is further shortened and prevented from loosening as compared with the case where the band 40 is wound so as to surround the entire rolling bearing W or the case where, as conventionally, the band is wound around the whole of the container and the cover.
Additionally, since the tip end of the band 40 is brought into slide-contact with the inclined face 208 (or 20A) at the end part of the band insertion groove 20 and guided upward when the band 40 is made to pass through under the bridging member 21, the winding of the band 40 is easy. Further, when the rolling bearing W is taken out from the container 10, a part of the band 40 stretched between the bridging member 21 and the rolling bearing W can be cut off by inserting scissors or a cutter into the horizontal positioning groove 15. Thus, the removal of the band 40 is also easy.
Additionally, in the container 10 of the embodiment, the band insertion groove 20 is formed in the bottom face 15V of the horizontal positioning groove 15B formed in the bottom wall 12, so that either attaching the sideslip regulating component 30 to the horizontal positioning groove 15B for preventing a sideslip of the rolling bearing W or inserting the band 40 into the band insertion groove 20 for preventing a sideslip and jumping of the rolling bearing W can be selected appropriately, and the degree of freedom of choice of usage of the container 10 is raised.
Specifically, the rolling bearing W may be fixed by two bands 40 and two sideslip regulating components 30, as shown in
W.
Next, the rolling bearing W is housed between both the positioning projection parts 31 with the bearing lying down. Then, part of the base part 32 of each sideslip regulating component 30 is covered with the rolling bearing W from above, the base part 32 is retained by the horizontal positioning groove 15B, and both the positioning projection parts 31 abut on an outer circumferential face of the rolling bearing W. In this state, similar to the above-described case where the rolling bearing W is fixed by only the two bands 40, the bands 40 each are inserted under each bridging member 21 in each of the band insertion grooves 20 in the other horizontal positioning grooves 153 to which no sideslip regulating components 30 are attached, and the rolling bearing W is fastened with the bands 40. Thus, fixing the rolling bearing W to the container 10 is finished. If the band 40 and the sideslip regulating component 30 are thus used together, the rolling bearing W can be further stabilized in the container 10 and the outer diameter of the rolling bearing W can be easily recognized from the display of the outer diameter displaying part 90, which is indicated by the positioning mark 32M of the sideslip regulating component 30.
Moreover, when there is no possibility that the rolling bearing W jumps, the rolling bearing W can be conveyed by the container 10 in a state where only a sideslip is prevented by attaching the sideslip regulating components 30 to all the horizontal positioning grooves 15B without use of the band 40.
The present invention should not be limited to the above embodiment, and can be modified in various ways and carried out without departing from the gist thereof.
(1) In the container 10 of the above embodiment, the band insertion groove 20 is formed in the bottom face 15V of the horizontal positioning groove 15B. However, a horizontal positioning groove and a band insertion groove may be separately provided, or only a band insertion groove may be provided without a horizontal positioning groove. Specifically, for example, the bridging member according to the present invention may be disposed between both inner side faces of each bearing taking-out groove 15A of the above embodiment and each bearing taking-out groove 15A may serve as the band insertion groove according to the present invention. Additionally, as a container 10V shown in
(2) Although the container 10 of the above embodiment is square in the plan view, the shape of the container is not limited to the square. The present invention may be applied to a container which is in the shape of, for example, a rectangle, a polygon other than a rectangle, or a circle in a plan view.
(3) Although the rolling bearing Was the workpiece housed in the container 10 of the above embodiment is in the shape of a ring, the shape of the workpiece is not limited to the ring, and may be, for example, a shaft or a block. Also, when a workpiece is in the shape of a shaft, for example, a plurality of band insertion grooves each having a bridging member are juxtaposed parallelly on a bottom wall of a container, the shaft-shaped workpiece is mounted so as to cross over the band insertion grooves, and bands having been inserted through under the bridging members at a plurality of positions in a longitudinal direction of the workpiece may be wound around the workpiece.
10, 10V Container
12 Bottom wall
15A Bearing taking-out groove
15B Horizontal positioning groove
16 Positioning projection piece (Horizontal
16 positioning engaging part)
20, 20V Band insertion groove
20A, 20B Inclined face (Band guide part)
21 Bridging member
30 Sideslip regulating component
40 Band
W Rolling bearing (Workpiece)
Number | Date | Country | Kind |
---|---|---|---|
2010-262214 | Nov 2010 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/JP2011/071194 | 9/16/2011 | WO | 00 | 5/7/2013 |