CONVEYANCE MECHANISM AND COMBINATION WEIGHING APPARATUS
20210284463 · 2021-09-16
Assignee
Inventors
Cpc classification
G01G23/14
PHYSICS
B65G43/08
PERFORMING OPERATIONS; TRANSPORTING
B65G47/44
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65G43/08
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A conveyance mechanism (1) includes: a conveyance face (10) for conveyance of a plurality of articles having adhesion. The conveyance face includes: a first conveyance face (11); a second conveyance face (12) disposed downstream (D2) of the first conveyance face (11) in a conveyance direction (MD); and a protrusion (15) disposed between the first conveyance face and the second conveyance face, the protrusion protruding to space in which the plurality of articles glides. The protrusion protrudes beyond a first extension line (FL1) extending downstream in the conveyance direction along the first conveyance face, and protrudes beyond a second extension line (FL2) extending upstream in the conveyance direction along the second conveyance face.
Claims
1. A conveyance mechanism comprising: a conveyance face for conveyance of a plurality of articles having adhesion, wherein the conveyance face includes: a first conveyance face; a second conveyance face disposed downstream of the first conveyance face in a conveyance direction; and a protrusion disposed between the first conveyance face and the second conveyance face, the protrusion protruding to space in which the plurality of articles glides, and the protrusion protrudes beyond a first extension line extending downstream in the conveyance direction along the first conveyance face, and protrudes beyond a second extension line extending upstream in the conveyance direction along the second conveyance face.
2. The conveyance mechanism according to claim 1, wherein a plurality of the protrusions is disposed at intervals in the conveyance direction.
3. The conveyance mechanism according to claim 1, wherein the protrusion extends in an orthogonal direction orthogonal to the conveyance direction.
4. The conveyance mechanism according to claim 3, wherein a height of the protrusion to the first conveyance face varies, and a peak highest in the height of the protrusion is periodic in the orthogonal direction and a plurality of the peaks is disposed at intervals in the orthogonal direction.
5. The conveyance mechanism according to claim 1, wherein the conveyance face is provided with a through portion passing through the conveyance face.
6. The conveyance mechanism according to claim 5, further comprising a supplier that supplies air onto the conveyance face through the through portion.
7. A combination weighing apparatus including the conveyance mechanism according to claim 1, comprising: a supply mechanism of supplying articles; a plurality of weighing hoppers that is provided downstream of the supply mechanism and each temporarily stores an article in order to measure a weight of the article; and a gathering chute that gathers the articles discharged from the plurality of weighing hoppers, wherein the conveyance mechanism is included in at least either the plurality of weighing hoppers or the gathering chute.
8. The combination weighing apparatus according to claim 7, wherein the conveyance mechanism is included in the plurality of weighing hoppers, the conveyance face includes an upstream region upstream of a center in the conveyance direction of the conveyance face and a downstream region downstream of the center in the conveyance direction of the conveyance face, and the protrusion is provided at least in the downstream region.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0014]
[0015]
[0016]
[0017]
[0018]
DESCRIPTION OF EMBODIMENTS
[0019] A conveyance mechanism 1 according to a first embodiment will be described below with reference to the drawings. Note that, in the following drawings, the same or similar parts are denoted with the same or similar reference signs. It should be noted that the drawings are schematic and, for example, the ratio between each dimension is different from the actual ones in some cases. Therefore, for example, specific dimensions should be understood in consideration of the following descriptions. In addition, in some cases, parts are different in the dimensional relationship or ratio among drawings. The conveyance mechanism 1 may be used in a combination weighing apparatus 100.
[0020] The combination weighing apparatus 100 weighs and conveys an article X as a target to be weighed (refer to
[0021] The article supplied to each pool hopper 104 may be received by the weighing hopper 105 disposed below the corresponding pool hopper 104. Each weighing hopper 105 is disposed on the downstream side D2 of a supply mechanism and temporarily stores the article in order to measure the weight of the article. On the basis of the weight value of the article weighed by each weighing hopper 105, a combination weighing operation may be performed. A combination of articles may be selected such that the result of the combination weighing operation is in a predetermined allowable range and is closest to a target value. The articles in the weighing hoppers 105 included in the selected combination may be discharged to the gathering chute 106. The gathering chute 106 gathers the articles discharged from the plurality of weighing hoppers 105. The articles discharged to the gathering chute 106 may be supplied to the timing hopper 107. The timing hopper 107 may supply the articles to, for example, a packing apparatus provided at the post-stage of the conveyance mechanism 1. Note that the weighing hopper 105 has the “conveyance mechanism 1” of the present invention. Note that the “conveyance mechanism” of the present invention is not limited to a weighing hopper and may be adopted to at least any of the pool hopper 104, the gathering chute 106, and the timing hopper 107. In addition, the “supply mechanism” of the present invention may be adopted to at least either a supply chute 101 or a distribution table.
[0022] Next, the conveyance mechanism 1 will be described in detail on the basis of
[0023] The conveyance face 10 is a face for conveyance of an article X, and may cause an article X to be conveyed by free fall from the upstream side D1 to the downstream side D2 in the conveyance direction MD or may cause an article X to be conveyed by vibration from the upstream side D1 to the downstream side D2 in the conveyance direction MD. The conveyance face 10 includes a first conveyance face 11, a second conveyance face 12 disposed on the downstream side D2 in the conveyance direction MD of the first conveyance face 11, and a protrusion 15 disposed between the first conveyance face 11 and the second conveyance face 12, the protrusion 15 protruding to space S in which an article X glides. The first conveyance face 11 and the second conveyance face 12 may be connected or disconnected in the conveyance direction MD. The boundary between the first conveyance face 11 and the second conveyance face 12 may be formed of the protrusion 15. The protrusion 15 protrudes, to the space S, beyond a first extension line FL1 extending to the downstream side D2 in the conveyance direction along the first conveyance face 11, and protrudes, to the space S, beyond a second extension line FL2 extending to the upstream side D1 in the conveyance direction along the second conveyance face 12. The protrusion 15 protrudes above the first extension line FL1. Preferably, the first extension line FL1 and the second extension line FL2 overlap each other in the side view illustrated in
[0024]
[0025] A plurality of protrusions 15 may be disposed at intervals in the conveyance direction MD. Such a configuration enables an article X to be raised from the conveyance face 10 a plurality of times on the conveyance path along the conveyance direction MD, so that the occurrence of fault due to the article X remaining adhering to the conveyance face 10 can be further prevented. The protrusion 15 according to the present embodiment includes a first protrusion 151 and a second protrusion 152 disposed on the downstream side D2 in the conveyance direction MD of the first protrusion 151. In such a mode in which a plurality of protrusions 15 is provided, provided may be the first conveyance face 11 on the upstream side D1 of the first protrusion 151 as a boundary and the second conveyance face 12 on the downstream side D2 thereof, and provided may be the first conveyance face 11 on the upstream side D1 of the second protrusion 152 as a boundary and the second conveyance face 12 on the downstream side D2 thereof. The distance G10 in the conveyance direction MD between the peaks 15P of the plurality of protrusions 15 may be shorter than the maximum dimension of each article X (regarding an elongate article X, the length in the longitudinal direction). As illustrated in
[0026] As illustrated in
[0027]
[0028] The conveyance face 10 may be provided with a through portion 18 passing through the conveyance face 10. The through portion 18 passing through the conveyance face 10 enables verification of the state of conveyance of an article X, for example, from the side which is the face opposite to the conveyance face 10 (face opposite to the face on which an article X is conveyed). Thus, articles X having been built up or an article X remaining adhering to the conveyance face can be grasped. Note that the through portion 18 may be provided adjacently to the protrusion 15 or may be provided apart from the protrusion 15. The through portion 18 according to the present embodiment is achieved by space behind the protrusion 15 protruding from the conveyance face 10. According to the configuration, formation of the protrusion 15 by incision to the conveyance face 10 enables formation of both of the protrusion 15 and the through portion 18.
[0029] The conveyance mechanism 1 may include a supplier (not illustrated) that supplies air onto the conveyance face through the through portion 18. In a case where an article X has adhered to the conveyance face 10, the supplier supplies air, so that the article X can be detached from the conveyance face. Therefore, built-up of the articles X due to the article X remaining adhering to the conveyance face can be prevented. The supplier may be disposed on the side which is the back face to the conveyance face 10 (face opposite to the face with which an article comes in contact).
[0030] As described above, the conveyance mechanism 1 for use in the combination weighing apparatus 100 may be adopted to at least either the plurality of weighing hoppers 105 or the gathering chute 106. Thus, in at least either the plurality of weighing hoppers 105 or the gathering chute 106, an article X can be prevented from adhering to the conveyance face 10, resulting in suppressing deviation in weight between the articles X weighed in the plurality of weighing hoppers 105 and an aggregate of articles X. In a mode in which the conveyance mechanism 1 is adopted to the plurality of weighing hoppers 105, the conveyance face 10 may include an upstream region 10M1 on the upstream side D1 of the center 10M in the conveyance direction of the conveyance face 10 and a downstream region 10M2 on the downstream side D2 of the center 10M in the conveyance direction of the conveyance face 10. The protrusion 15 may be provided at least in the downstream region 10M2. Note that at least part of the protrusion 15 is required to be provided in the downstream region 10M2, and the protrusion 15 may be provided in the upstream region 10M1 in addition to the downstream region 10M2. Articles X are conveyed from the plurality of weighing hoppers 105 to the downstream side D2 and then are gathered in the gathering chute 106. Because articles X are gathered from the plurality of weighing hoppers 105, if a lag occurs in the timing at which an article X is conveyed to the gathering chute 106, a variation is likely to occur in the weight of an aggregate of articles X. The protrusion 15 is provided in the downstream region 10M2 of the conveyance face 10 close to the gathering chute 106, so that an article X is guided easily and smoothly from the conveyance face 10 to the gathering chute 106. Thus, an error can be reduced in the weight of an aggregate of articles X.
[0031] The embodiment of the present invention has been described in detail above. It is obvious to a person skilled in the art that the present invention is not limited to the embodiment in the present specification. The present invention can be carried out in aspects corrected and altered without departing from the gist and scope of the present invention in the claims. Therefore, the present specification is intended for exemplificative description and thus does not have any limitative meanings to the present invention.
REFERENCE SIGNS LIST
[0032] 1 conveyance mechanism [0033] 10 conveyance face [0034] 10M1 upstream region [0035] 10M2 downstream region [0036] 11 first conveyance face [0037] 12 second conveyance face [0038] 15 protrusion [0039] 15P peak [0040] 18 through portion [0041] 100 combination weighing apparatus [0042] 101 supply chute (supply mechanism) [0043] 102 distribution table (supply mechanism) [0044] 105 weighing hopper (conveyance mechanism) [0045] 106 gathering chute [0046] CD orthogonal direction [0047] D1 upstream side [0048] D2 downstream side [0049] FL1 first extension line [0050] FL2 second extension line [0051] MD conveyance direction [0052] X article