The application claims the benefit of Taiwan Patent Application No. 108115780, filed on May 7, 2019, at the Taiwan Intellectual Property Office, the disclosures of which are incorporated herein in their entirety by reference.
The present invention is related to a transportation apparatus, and more particularly to an apparatus for transporting metal bars with cylindrical shape.
The manufacturing industry of metal products is composed of industrial chains formed by upstream, middle stream and downstream manufacturers. The metal plants will buy carbon steel, stainless steel or brass bars from upstream suppliers and store them on the iron frames. Downstream manufacturers will go to metal plants to buy metal bars of different lengths (ranging from 1 cm to 1 m) and bring them back to their own factories for machining. Traditionally, metal plant workers must carry the bars from the iron frames to the cutting machine by manpower or using a crane, and then clean the finished items before shipping them to downstream manufacturers. This transporting and processing method is time-consuming and low-capacity.
Handling of metal bars in storage environments is usually a no-easy task. Due to the high density of metals, heavy duty handling devices are often required. The quantity control during the transportation process requires timely and reliable on-site data to accurately meet the shipping requirements. These are all requirements that are currently not easily achievable in a manual operation process. In order to overcome the drawbacks set forth above in the prior art, a new design for the transporting apparatus is required.
Thus, there is a need to develop a novel apparatus for transporting cylindrical bars with high efficiency and good quantity control.
In accordance with one aspect of the present invention, an apparatus for transporting a plurality of bars having an axial direction is disclosed. The apparatus includes a storage device and a conveying device. The storage device includes an accommodating area configured to accommodate the plurality of bars side by side along a first direction substantially perpendicular to the axial direction; a first ramp having a front end and a rear end, wherein the front end is adjacent to the accommodating area and receives the plurality of bars sequentially, and the received plurality of bars roll from the front end to the rear end on the first ramp in a second direction; and a counting device adjacent to the rear end and operable to allow a predetermined quantity of the plurality of bars to exit the storage device in the second direction from the rear end of the first ramp. The conveying device includes a receiving end adjacent to the rear end, and configured to sequentially receive the predetermined quantity of the plurality of bars; an output end receiving the predetermined quantity of the plurality of bars from the receiving end, and transporting the received predetermined quantity of the plurality of bars in a third direction; and a second ramp connecting the receiving end and the output end, and allowing the plurality of bars to move from the receiving end to the output end due to a gravity.
In accordance with another aspect of the present invention, a transporting apparatus for transporting cylinders having an axial direction is disclosed. The transporting apparatus comprises a storage and a conveying device. The transporting apparatus includes an accommodating area configured to accommodate the cylinders side by side along a first direction substantially perpendicular to the axial direction; a first ramp having a front end and a rear end, wherein the front end is adjacent to the accommodating area and receives the cylinders sequentially, and the received cylinders roll from the front end to the rear end on the first ramp in a second direction; and a counting device adjacent to the rear end and operable to allow a predetermined quantity of the cylinders to exit the storage in the second direction from the rear end of the first ramp.
The apparatus for transporting cylindrical bars according to the present invention can avoid manual operation while providing reliable on-site data, which can be used in automated storage systems and production lines. Thus, the present invention has utility for industry.
The objectives and advantages of the present invention will become more readily apparent to those ordinarily skilled in the art after reviewing the following detailed descriptions and accompanying drawings, in which:
The present invention will now be described more specifically with reference to the following embodiments. It is to be noted that the following descriptions of preferred embodiments of this invention are presented herein for the purposes of illustration and description only; they are not intended to be exhaustive or to be limited to the precise form disclosed.
Please refer to
Due to the fact that the density of metals is much higher than that of non-metal materials, the bars 1 is preferably made of metallic material such as iron or copper, and thus the bars 1 can easily roll and stay side by side to each other along the directions A or D perpendicular to the axial direction 11 with the aid of gravity. However, in some embodiments, non-metallic bars 1 with cylindrical shape can also roll and stay side by side on the first and the second storage ramps 110, 120 due to gravity. In this respect, the present invention is also applicable for metal bars having a shape which is easy to roll such as hexagonal or octagonal columns. For the sake of convenient explanation, metal bars 1 having a cylindrical outer shape is used as examples hereinafter, and those skilled in the art can understand that the present invention can be applied to the storage and transportation methods for solid or hollow column materials with similar shape of cylinders.
Refer again to
The conveying device 150 includes a receiving end 151, an output end 153 and a transporting ramp 155. The receiving end 151 is adjacent to the rear end 114 of the first storage ramp 110 and configured to sequentially receive the predetermined quantity (such as 3 as illustrated in
It is appreciated from
According to one embodiment of the present invention, a control device 157 is further disposed on the output end 153 of the conveying device 150. In an embodiment, the control device 157 is equipped with appropriate sensing element (not shown) for identifying the quantity of the bars 1 arrived at the output end 153, and the conveying device 150 moves along the direction C to a position near the tooling machine 170 so as to allow the bars 1 be processed for shipping when the number of the bars 1 at the output end 153 achieves a predetermined quantity. In one another embodiment, the number of the bars 1 on the conveying device can be controlled by the counting device 130 alone. When the number of the bars 1 having left the rear end 114 of the first storage ramp 110 has achieved the predetermined number, the counting device 130 no longer release the bars 1, and the conveying device 150 moves along the direction C afterwards.
Please refer to
According to
The controller 190 can be disposed on a remote end and communicate with the counting device 130 via either wired or wireless means to control a parameter (the quantity or total weight for examples) of the cylinders 2. The output device 159 ships out the cylinders 2 along the direction C when the parameter complies with a predeteimined value (for example, the quantity of cylinders 2 is 3 or the total weight achieves 200 kilograms). The direction C is substantially parallel to the axis direction 11″. The controller 190 in
Based on the device configuration as shown in
According to
The difference between the embodiments in
Please refer to
According to
The accommodating area 100 of the storage device 10 includes the first and the second storage ramps 110, 120 for accommodating the plurality of bars 1 which are placed side by side respectively along the directions A and D. The first storage ramp 110 and the second storage ramp 120 is arranged to constitute a zigzag configuration, so the directions A and D are different. When necessary, the concept of zigzagging ramps can be continued upwards, i.e., at least one of the first and the second storage ramps 110, 120 can be composed of a plurality of sub ramps (not shown) which constitute a further zigzag configuration.
The present invention can fully satisfy the need of high-speed automation, and reduce the burden of manual operation, which is a technology breakthrough.
While the invention has been described in terms of what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention needs not be limited to the disclosed embodiments. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all such modifications and similar structures.
Number | Date | Country | Kind |
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108115780 | May 2019 | TW | national |