Abstract:
A combinational weighing apparatus includes a distributing apparatus for distributing articles fed from above, a plurality of conveyance apparatuses disposed radially below and around the distributing apparatus and a plurality of weighing apparatuses disposed below the respective plurality of conveyance apparatuses, the distributing apparatus including a conical distributing table, a stirring member having one end attached to a rotation shaft arranged at an apex portion of the distributing table and the other end extending slantwise downward to the vicinity of a peripheral edge of the distributing table, and a drive unit for rotating the rotation shaft, in which a gap is provided between a lower side of the stirring member and an upper surface of the distributing table so as to be increased downwards.
Abstract:
A sorting device in which a nozzle (31) having a flat tip portion (31a) for blowing air to a predetermined article X transported by a pair of transport belts (23, 23) is covered with a nozzle cover (32) whose forward-oriented and rearward-oriented end portions in the direction of air blowing are open and whose forward opening (32a) is located forward of the tip portion (31a) of the nozzle (31). Then, by covering above the transport belts (23, 23) with an upper cover (8), as well as providing a sorting cover (33) whose upper forward and lower rear end portions are open at a position opposed to the nozzle cover (32) with these transport belts (23, 23) provided therebetween, a continuous air path from the nozzle cover (32) to the sorting cover(33) is formed.
Abstract:
A product diverting mechanism used in a packaging system, which is effective to increase the speed at which the products are successively diverted, includes a force applicator 20 for applying a force, containing a force component acting in a horizontal direction, to the products M transported from a preceding station, in a direction transverse to a direction of transport of the products, a suppressor 10 disposed above a transport means 30 for suppressing an upward shift of the products M which occurs when the force applicator 29 applies the force to the products M, and an elevator 15 for moving the suppressor 10 up and down. The suppressor 10 is lowered during an operation to divert the products M so as to contact an upper surface of the products M.
Abstract:
An X-ray inspection apparatus includes a conveying unit configured to convey an article, an irradiation unit configured to irradiate the article conveyed by the conveying unit with X-rays, a sensor unit in which detecting elements are arranged in a planar shape, an image generation unit configured to read detection results output from at least some of the detecting elements and generate an image, and a mode switching unit configured to switch an operation mode between a first mode in which a first electric power is supplied to the irradiation unit and a second mode in which a second electric power less than the first electric power is supplied to the irradiation unit, where the mode switching unit changes, when switching the operation mode from the first mode to the second mode, a read frequency at which the image generation unit reads the detection results.
Abstract:
A combination weighing device includes: a storage unit that stores time-series measurement values sequentially acquired by the measurement hoppers; a time measurement unit that measures an elapsed time from a timing corresponding to supply of the products to the measurement hoppers until a timing at which the time-series measurement values enter a region considered to be stabilized when the time-series measurement values stored in the storage unit converge to the region considered to be stabilized as a stabilization time until the measurement values become stabilized; and a selection unit that acquires the stabilization times by the time measurement unit over a plurality of cycles and can select a recommended stabilization time that is the stabilization time in which a predetermined measurement accuracy can be maintained based on a standard deviation of the acquired stabilization times for the plurality of cycles.
Abstract:
An X-ray inspection apparatus includes: a conveying unit; an irradiation unit configured to irradiate the article with an electromagnetic wave; a detection unit configured to detect the electromagnetic wave transmitted through the article; a housing configured to accommodate the detection unit; and an inspection unit configured to inspect the article. The conveying unit includes a pair of conveying units, a plate member is provided between the passing region and the detection unit, and the plate member is attached to a wall portion that is a part of the housing, and a surface of the plate member is located lower than an upper surface of the wall portion.
Abstract:
An X-ray inspection apparatus includes a conveying unit configured to convey an article, an X-ray source configured to irradiate the article with X-rays, a detection unit configured to detect the X-rays by photon counting, a threshold value setting unit configured to set a threshold value for discriminating the X-rays, an inspection unit configured to inspect the article on the basis of the X-rays transmitted through the article, the X-rays being detected by the detection unit, and a sensitivity correction unit configured to perform sensitivity correction of the detection unit on the basis of the X-rays not transmitted through the article, the detection unit is configured to discriminate and detect the X-rays into the two or more energy regions by using the threshold value, and the sensitivity correction unit is configured to perform the sensitivity correction when the threshold value setting unit changes the threshold value.
Abstract:
A conveyance mechanism (1) includes: a trough (10) that conveys an article; a support member (20) to which the trough is detachably coupled, the support member including a vibrator that vibrates the trough; and a coupling member (30) that couples the trough and the support member. The trough includes a first abutting member (11) that is located on a back side of a conveyance face for conveyance of the article and abuts on the support member. The support member includes a second abutting member (21) that is plate-shaped and has a second circumferential edge (22) vertically identical to a first circumferential edge (12) that is a circumferential edge of the first abutting member. The coupling member couples the trough and the support member by fastening the first abutting member and the second abutting member with the first circumferential edge and the second circumferential edge in superposition. The second abutting member (21) is provided with a through hole (23) passing through the second abutting member.
Abstract:
Problem To improve the efficiency of a combination weighing operation. An article conveyance device 110 includes an article discharge container 10, an article conveyance mechanism 30, an article detection mechanism 60, and a control unit 90. The container 10 has outlets 20 to discharge articles A. The article conveyance mechanism 30 has feeders 40 including a first feeder 41 to an n-th feeder 4n configured to convey the articles A. The article detection mechanism 60 has sensors 70 including a first sensor 71 to an n-th sensor 7n configured to detect the articles A in the first feeder 41 to the n-th feeder 4n, respectively. The control unit 90 judges whether jamming of the articles A is occurring in the outlets 20 based on output of the article detection mechanism 60. The control unit 90 increases a conveyance intensity of some feeders receiving the articles A from places where the jamming is occurring in the outlets 20.
Abstract:
A bagmaking and packaging apparatus includes a film supply unit that conveys a film, a printing unit, a speed detector, and a control unit. The printing unit applies laser light to the film to print the film. The speed detector acquires data relating to the conveyance speed of the film. The control unit links the operation of the printing unit when printing the film to the conveyance speed of the film based on the data from the speed detector.