Combination weigher

The combination weigher uses a rotating blade and guide to disperse and loosen clumped objects, addressing the challenge of precise weighing for tangled or sticky items, thereby improving accuracy and efficiency.

JP2025139108APending Publication Date: 2025-09-26YAMATO SCALE CO LTD
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Patent Information

Application Number
JP2024037872
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-03-12
Publication Date
2025-09-26

AI Technical Summary

Technical Problem

Existing combination weighers struggle with accurately weighing objects that tend to tangle or stick together, such as boiled noodles or pasta, as they form large clumps that disrupt precise weighing processes.

Method used

A combination weigher equipped with a rotating blade-shaped loosening member and a downward-flowing guide is used to disperse and loosen objects between linear feeders, ensuring uniform distribution and preventing large clumps from entering the weighing process.

Benefits of technology

Enables highly accurate combination weighing of objects prone to tangling or clumping by uniformly distributing them, enhancing the precision and efficiency of the weighing process.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a combination weigher that is configured so that objects to be weighed supplied to the dispersion feeder are dispersed and transported to a straight feeder group arranged radially around the dispersion feeder, and the objects to be weighed conveyed by each straight feeder are sent to the weighing hopper via the supply hoppers, the combination weigher being capable of sending objects that tend to clump together evenly to the supply hoppers.SOLUTION: The combination weigher has a long, thin, feather-shaped loosening member 23 that is driven to rotate around the axis q along the longitudinal direction of the boundary area above the border of the adjacent straight feeder 6.SELECTED DRAWING: Figure 2
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Description

[Technical Field]

[0001] The present invention relates to a combination weigher that weighs and discharges predetermined weights of items to be weighed, such as food or confectionery. [Background technology]

[0002] As an example of a combination weigher, as shown in Patent Document 1, a known device is configured to drop and supply weighed objects into the center of the device, which are then dispersed and transported radially by dispersion feeders, and then supplied to a number of straight feeders arranged around the dispersion feeders, measure the weight of the weighed objects transported by each straight feeder, calculate and select a combination from a group of weighing values ​​that results in a predetermined weight, and discharge the weighed objects of the selected multiple weighing values.

[0003] In this combination weigher, a roller that can be driven forward and backward is provided on the boundary between adjacent linear feeders to prevent the objects to be weighed sent out from the dispersion feeder from becoming stuck across adjacent linear feeders. [Prior art documents] [Patent documents]

[0004] [Patent Document 1] Japanese Utility Model Application Publication No. 5-36324 Summary of the Invention [Problem to be solved by the invention]

[0005] A structure in which a roller that is driven forward and reverse is arranged on the boundary between adjacent linear feeders, such as the combination weigher in Patent Document 1, works well for long and soft objects to be weighed (such as string-like jelly sweets or broilers), but for objects that tend to become tangled or stick together and form clumps (such as boiled noodles or pasta), the large clumps of objects to be weighed end up being sent straight into the linear feeder, making it difficult to perform highly accurate combination weighing.

[0006] The present invention has been made with attention to these points in mind, and aims to provide a combination weigher that can uniformly feed objects to be weighed, which tend to become tangled or stick together and form clumps, into a group of linear feeders, thereby enabling highly accurate combination weighing. [Means for solving the problem]

[0007] In order to achieve the above object, the present invention is configured as follows.

[0008] (1) The combination weigher according to the present invention is In a combination weighing scale configured to distribute and transport the objects to be weighed supplied to a dispersion feeder to a group of linear feeders arranged radially around the dispersion feeder, and to send the objects to be weighed transported by each linear feeder to a weighing hopper via a supply hopper, a thin, blade-shaped loosening member is provided above the boundary between adjacent linear feeders, which is driven to rotate around an axis along the longitudinal direction of the boundary.

[0009] With this configuration, even if objects to be weighed that tend to tangle or stick together are sent out in large lumps from the dispersion feeder to the boundary area of ​​the adjacent straight feeder, they are loosened by the rotating loosening member and sent out in a dispersed manner to the straight feeder, preventing the objects from being transported by the straight feeder in large lumps that are unsuitable for combination weighing from being sent to the supply hopper.

[0010] (2) In another embodiment of the present invention, A downward flow guide having a cross-sectional shape that widens downward is provided between the loosening member and the linear feeder.

[0011] According to this configuration, the objects to be weighed that have been loosened and sent out by the loosening member flow down along the flow guide to the linear feeder, and the impact of the fall at this time also promotes loosening of the objects to be weighed.

[0012] (3) In another embodiment of the present invention, The loosening member and the flow-down guide are assembled into a unit.

[0013] According to this configuration, the loosening member and the flow-down guide can be detached as a unit, making it easy to perform cleaning and maintenance work.

[0014] (4) In another embodiment of the present invention, A motor interlocked with the inner end of the loosening member is installed inside the center base body on which the dispersion feeder and the linear feeder are mounted.

[0015] According to this configuration, the motor is installed inside the center base body, which is isolated from debris and liquid loosened from the objects to be weighed and from the wash water, and the loosening member can be rotated safely.

[0016] (5) In another embodiment of the present invention, All of the loosening members are operatively connected to the single motor.

[0017] According to this configuration, the electrical wiring for driving the numerous loosening members by the motor is simplified, and waterproofing of the electrical system is also facilitated.

[0018] (6) In another embodiment of the present invention, The top cone of the dispersion feeder is configured to be driven to rotate about a central vertical axis, and the single motor is configured to drive the top cone and the refining member.

[0019] According to this configuration, the drive structure for the rotary type dispersion feeder and the loosening member can be constructed inexpensively. [Effects of the Invention]

[0020] In this way, the combination weigher according to the present invention can uniformly feed objects to be weighed, which tend to become tangled or stick together and form clumps, to the group of linear feeders, thereby enabling highly accurate combination weighing. [Brief explanation of the drawings]

[0021] [Figure 1] 1 is a vertical cross-sectional view showing a schematic configuration of a combination weigher according to an embodiment of the present invention. [Figure 2] FIG. [Figure 3] FIG. [Figure 4] FIG. [Figure 5] FIG. [Figure 6] FIG. 10 is a vertical cross-sectional side view showing the shutter mechanism in the process of being disassembled. [Figure 7] FIG. [Figure 8] FIG. [Figure 9] FIG. [Figure 10] FIG. 10 is a perspective view showing another embodiment of the loosening member. [Figure 11] FIG. 10 is a schematic perspective view showing another embodiment of the loosening member drive structure. DETAILED DESCRIPTION OF THE INVENTION

[0022] FIG. 1 is a vertical cross-sectional view showing a schematic configuration of a combination weigher according to one embodiment of the present invention.

[0023] The combination weigher of this embodiment is configured to weigh and discharge predetermined weights of items to be weighed that tend to tangle or stick together and form clumps, such as boiled noodles or pasta, and is installed on the upper floor F of a frame assembled like a tower that workers can climb up and down.The weighed items of a predetermined weight are discharged below the center of the device and then fed into a packaging device (not shown) installed on the floor below for bagging, and is used in packaging lines, etc.

[0024] A hollow base 1 with a large opening in the center from top to bottom is installed on the frame floor F, and a hollow center base 2 is supported above the center of the base 1 via multiple legs 3.

[0025] A supply funnel 4 is provided above the center of the center base 2 to collect the objects to be weighed dropped and discharged from a supply conveyor (not shown), and a dispersion feeder 5 is provided to distribute the objects to be weighed collected by the supply funnel 4 circumferentially and send them outward.

[0026] The dispersion feeder 5 is configured with a rotation dispersion specification in which the objects to be weighed from the supply funnel 4 are placed on a top cone 5a that is driven to rotate around a vertical axis p, and the objects are dispersed and transported radially by the weight of the objects to be weighed and centrifugal force.

[0027] Around the dispersion feeder 5, a number of linear feeders 6 (16 in this example) are arranged radially, which place the dispersed and transported objects to be weighed on vibration-driven troughs 6a and transport them in a straight line outward.

[0028] The outer wall of the center base 2 is equipped with a number of supply hoppers 7 (16 in this example) that temporarily store and discharge the objects to be weighed transported by each straight feeder 6, and a number of weighing hoppers 8 that receive the objects to be weighed discharged from each supply hopper 7, measure their weight, and discharge a fixed amount.

[0029] Below the group of weighing hoppers 8, there is provided a collecting chute 9 which guides the objects to be weighed of a predetermined weight discharged from a selected number of weighing hoppers 8 downward toward the center of the device, and at the center below the group of collecting chutes 9, there is provided a collecting funnel 10 which collects the objects to be weighed which flow down along the collecting chute 9 toward the center of the device.

[0030] As shown in Fig. 2, a motor 11 for driving the dispersion feeder is provided inside the center base body 2. The motor 11 is installed in the form of a vertical shaft, and a revolving drive shaft 12 that is rotationally driven by the motor 11 extends upward and protrudes from the central upper surface of the center base body 2. The top cone 5a of the dispersion feeder 5 is detachably connected to the upper end of this revolving drive shaft 12, so that the top cone 5a is revolved around the vertical axis p.

[0031] Inside the center base 2, a number of electromagnetically driven linear vibration mechanisms 13 are arranged to surround the motor 11. The vibration heads 13a of these linear vibration mechanisms 13 protrude from the upper surface of the center base 2, and the troughs 6a of the linear feeder 6 are detachably linked to these vibration heads 13a, so that each trough 6a is vibrated inward and outward at a predetermined amplitude and frequency.

[0032] A number of hopper drive units 14 are attached to the outer peripheral wall of the center base 2, and a supply hopper 7 and a weighing hopper 8 are detachably attached to the top and bottom of the outer part of each hopper drive unit 14, respectively.

[0033] Although the detailed structure is not shown, each of the hoppers 7 and 8 is detachably linked to a gate drive mechanism of a hopper drive unit 14, so that the opening and closing of the gates is controlled.

[0034] The weight of the entire weighing hopper 8 is applied to a load sensor incorporated in the hopper drive unit 14, and the weight value of the objects to be weighed stored in the weighing hopper 8 is measured.

[0035] The basic configuration of the combination weigher is as described above, and the well-known combination weighing and discharge are carried out as follows.

[0036] That is, first, the linear feeder 6 is driven and controlled in response to the operation of the corresponding supply hopper 7, and a small amount of the objects to be weighed, approximately a fraction of the target predetermined weight, is fed into the empty supply hopper 7 and temporarily stored therein.

[0037] The supply hopper 7 is controlled to open when the corresponding weighing hopper 8 becomes empty, and the reserved objects to be weighed are discharged into the weighing hopper 8.

[0038] Each weighing hopper 8 measures the weight of the objects to be weighed supplied, and a combination that results in a predetermined weight value is calculated from the group of weight values ​​of each weighing hopper 8, and multiple weighing hoppers 8 to be discharged are selected. When a discharge request is made from a downstream device such as a packaging machine, the selected multiple weighing hoppers 8 are controlled to open, and objects of the predetermined weight are discharged toward the collecting chute 9.

[0039] The above configuration is basically the same as that of conventional combination weighers, but in the present invention, the following configuration is provided to enable objects to be weighed that tend to become tangled or stick together and form clumps to be weighed with high accuracy and then discharged.

[0040] The top cone 5a of the dispersion feeder 5 is formed in a two-stage tapered cone shape, and multiple (3 to 4) stirring rods 21 are attached in a cantilevered radial pattern close to the upper surface of the lower tapered section. The objects to be weighed are dropped from above the center and placed on the rotating top cone 5a, and while being stirred by the stirring rods 21, they are dispersed circumferentially by their own weight and centrifugal force and transported outward.

[0041] Above the straight feeders 6 arranged in parallel in the circumferential direction, a flow-down guide plate 22 having a mountain-shaped vertical cross section as seen from the front is arranged across the boundary between adjacent troughs 6a, and along the top of this flow-down guide plate 22, a loosening member 23 is arranged so as to be rotatable around an axis q extending inward and outward.

[0042] The loosening member 23 is configured as a thin blade shaft elongated in the direction of the rotation axis, with four blades arranged radially. The objects to be weighed that are sent out from the dispersion feeder 5 across the boundary between adjacent troughs 6a are loosened by the rotating loosening member 23 and dispersed and transported to the straight feeder 6.

[0043] The objects to be weighed loosened by the loosening member 23 are dropped onto the trough 6a of the linear feeder 6 with a large drop, and the impact of the drop at this time also promotes loosening of the objects to be weighed.

[0044] 2, 7 and 8 show the drive structure of the dispersion feeder 5 and the delivery member 23.

[0045] That is, gear cases 24 are attached to the inside of the peripheral wall of the center base body 2 in correspondence with the respective loosening members 23 .

[0046] Each gear case 24 is provided with a vertically oriented input shaft 25, an outwardly oriented output shaft 26, and a pair of bevel gears 27, 28 that mesh with and connect these.

[0047] An input pulley 29 attached to the input shaft 25 of each gear case 24 and a drive pulley 30 provided at the middle portion of the revolving drive shaft 12 are connected together by a belt.

[0048] That is, the input pulleys 29 are divided into two groups, and the eight input pulleys 29 in one group are wound around and linked to the drive pulley 30 via an upper transmission belt 31, while the eight input pulleys 29 in the other group are wound around and linked to the drive pulley 30 via a lower transmission belt 32.

[0049] In addition, the inner ends of the loosening members 23 are concentrically connected to the output shaft 25 of each gear case 24, and as the swivel drive shaft 12 rotates, the top cone 5a of the dispersion feeder 5 is driven to rotate, and all of the loosening members 23 are driven to rotate in the same direction.

[0050] A ring frame 33 is fixedly disposed above the dispersion feeder 5, and this ring frame 33 is equipped with a shutter mechanism 34 for controlling the delivery of the objects to be weighed from the dispersion feeder 5 to the linear feeder 6.

[0051] One shutter mechanism 34 is provided for each two adjacent linear feeders 6, and in this embodiment equipped with 16 linear feeders 6, eight shutter mechanisms 34 are installed facing each other on the upper surface near the outer periphery of the top cone 5a.

[0052] As shown in Figures 3 to 8, the shutter mechanism 34 is composed of an air cylinder 35 as a shutter drive mechanism that is connected and fixed vertically to the ring frame 33, a movable bracket 36 connected to the lower end of a piston rod 35a that extends and retracts from the underside of the air cylinder 35, and a shutter main body 37 that is detachably supported on the movable bracket 36.

[0053] A pair of guide shafts 38 extend upward from the lower edge of the movable bracket 36 and are inserted and supported in a slidable manner in the casing of the air cylinder 35, so that the movable bracket 36 moves up and down while maintaining a constant posture as the piston rod 35a extends and retracts.

[0054] The side plates at the left and right ends of the movable bracket 36 are formed with engagement recesses 40 and step portions 41 at the top and bottom for attaching the shutter body, while the shutter body 37 has a pair of upper and lower connecting rods 42, 43 supported horizontally via support fittings 44. By inserting the upper connecting rod 42 into the engagement recess 40 and engaging the lower connecting rod 43 with the step portion 41, the shutter body 37 is supported on the movable bracket 36 in a predetermined vertical position.

[0055] In addition, the lower end of the movable bracket 36 is provided with a catcher 46 that elastically engages with a hook 45 provided at the lower end of the support bracket 44, preventing the shutter body 37, which is engaged and supported at two points above and below the movable bracket 36, from floating up and falling off.

[0056] The shutter body 37 is composed of a shutter base 37a made of a metal plate that is integrally connected to the support bracket 44, and a shutter action part 37b made of a rubber sheet or rubber plate that is detachably connected to the shutter base 37a and can be adjusted in position up and down using a long hole adjustment structure.

[0057] In this way, by constructing the shutter action part 37b as a separate part from the shutter base 37a, the position of the lower end of the shutter when the shutter main body 37 is lowered to the closed position can be changed and adjusted as desired depending on the properties of the object to be weighed, and worn shutter action part 37b can be easily replaced.

[0058] When cleaning the shutter mechanism 34 or replacing a worn shutter operating part 37b, the catcher 46 is levered to release the engagement of the hook 45, and then the shutter body can be swung up and removed from the lifting bracket 36 as shown in Figure 6.

[0059] In addition, a ring frame 48 is installed near the outer end of the feed member 23 and is connected and fixed to the center base 2 via a support frame 47, and the outer end of the loosening member 23 is rotatably supported by a bearing bracket 49 attached to this ring frame 48.

[0060] As shown in Figure 9, the loosening member 23 and the flow-down guide plate 22 are assembled into a unit and are detachably attached across the center base 2 and the limb frame 48, so that they can be easily removed for cleaning.

[0061] Support columns 50 are erected at appropriate positions on the ring frame 48, and these support columns 50 are equipped with volume detection sensors 51 that detect the volume of the objects to be weighed near the end of the trough 6a in the linear feeder 6. The volume detection sensor 51 is configured to irradiate a laser beam toward the end of the trough and measure the volume of the objects to be conveyed from the reflected light.

[0062] The combination weigher of the present invention is configured as described above, and like well-known combination weighers of this type, a combination calculation is used to select multiple weighing hoppers 8 that will have a predetermined weight, and the selected weighing hoppers 8 are controlled to open, thereby sending the predetermined weight of objects to be weighed to the collecting funnel 10. However, if an excessive amount of objects to be weighed is sent from the dispersion feeder 5 to the straight feeder 6, there is a risk of a decrease in weighing accuracy. To prevent this, the supply of objects to be weighed from the dispersion feeder 5 to the straight feeder 6 is controlled as follows.

[0063] In other words, normally, the shutter bodies 37 of all shutter mechanisms 34 are in an open position where they have been raised and retracted, and the objects to be weighed on the top cone 5a can be freely moved outward, but when the volume detection sensor 51 detects that the volume of the objects to be weighed near the end of a certain straight feeder 6 is greater than the set value, the shutter body 37 of the shutter mechanism 34 corresponding to this straight feeder 6 is controlled to descend to a closed position close to the top surface of the top cone 5a, restricting the objects to be weighed from the dispersion feeder 5.

[0064] This temporarily restricts the supply of subsequent objects to be weighed in the linear feeder 6 when the objects to be weighed have become bulky, thereby preventing a large number of objects from being continuously supplied to the linear feeder 6 and forming a large mass on the trough, and preventing an excessive amount of objects unsuitable for combination weighing from being sent to the supply hopper 7.

[0065] In the straight feeder 6 in which the supply of subsequent weighed objects is restricted, the volume on the trough gradually decreases due to continued vibration discharge, and when the volume detection sensor 51 detects that the volume has reached a return setting value that is lower than the setting value that starts the shutter closing control, the shutter body 37 of the shutter mechanism 34 is controlled to rise and return to its original open position, restoring the normal supply state in which discharge from the dispersion feeder 5 is possible.

[0066] Furthermore, if the shutter mechanism 34 is closed in multiple locations (for example, three locations), it is determined that the amount of objects to be weighed in the dispersion feeder 5 is excessive, the supply conveyor, which is the upper device of the dispersion feeder 5, is controlled to stop, the supply of objects to be weighed to the dispersion feeder 5 is temporarily suspended, and when the number of locations where the shutter mechanism 34 is closed decreases, the supply of objects to be weighed to the dispersion feeder 5 is resumed.

[0067] Other Embodiments of the Invention The present invention can also be implemented in the following forms.

[0068] (1) As shown in FIG. 10, depending on the objects to be weighed, the outer edge of each blade of the loosening member 23 may be made wavy, so that the objects to be weighed can be loosened more effectively.

[0069] (2) As shown in Figure 11, a large-diameter ring gear 52 that rotates concentrically with the rotation axis p is provided inside the center base 2, and the ring gear 52 is driven by a motor 53 separate from the motor 11 that drives the dispersion feeder 5 to rotate, and the inner shaft ends of each loosening member 23 are gear-linked to this ring gear 52, so that the dispersion feeder 5 and the loosening member 23 are individually motor-driven. In this way, the dispersion feeder 5 and the loosening member 23 can be driven and controlled at speeds and rotation directions appropriate for dispersion and loosening, depending on the properties of the objects to be weighed.

[0070] (3) The inner shaft end of each loosening member 23 may be interlocked with a small motor so that the loosening members 23 can be individually controlled to rotate forward and backward.

[0071] (4) In the above embodiment, the dispersion feeder 5 is of a rotary drive type, but depending on the type of objects to be weighed, a vibration drive type may also be used. [Explanation of symbols]

[0072] 2 Center base 5. Dispersion feeder 5a Top Cone 6 Straight feeder 7 Supply hopper 8 Weighing hopper 11 Motor 22 Flow guide plate 23 Loosening member

Claims

1. A combination weigher is configured so that objects to be weighed, which are supplied to a dispersion feeder, are dispersed and conveyed to a group of linear feeders arranged radially around the dispersion feeder, and the objects to be weighed conveyed by each linear feeder are sent to a weighing hopper via a supply hopper, A thin, elongated, blade-shaft-shaped loosening member is provided above the boundary between adjacent linear feeders and is driven to rotate around an axis along the longitudinal direction of the boundary. A combination weigher characterized by:

2. A downward flow guide plate having a cross-sectional shape that widens downward is provided between the loosening member and the linear feeder. The combination weigher according to claim 1 .

3. The loosening member and the flow-down guide plate are assembled into a unit. The combination weigher according to claim 2.

4. A motor interlocked with the inner end of the loosening member is installed inside the center base body on which the dispersion feeder and the linear feeder are mounted. The combination weigher according to claim 2 or 3.

5. All of the loosening members are operatively connected to the single motor. The combination weigher according to claim 4.

6. The top cone of the dispersion feeder is configured to be driven to rotate around a central vertical axis, and the top cone and the disintegrating member are driven by a single motor. The combination weigher according to claim 5.

Citation Information

Patent Citations

  • Commodity supply device for combination weigher

    JP1993036324U