CN105772901A - Manufacturing method and system for energy-saving boiler - Google Patents

Manufacturing method and system for energy-saving boiler Download PDF

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Publication number
CN105772901A
CN105772901A CN201410821079.4A CN201410821079A CN105772901A CN 105772901 A CN105772901 A CN 105772901A CN 201410821079 A CN201410821079 A CN 201410821079A CN 105772901 A CN105772901 A CN 105772901A
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CN
China
Prior art keywords
discharging mechanism
heat
face
conducting piece
pot
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201410821079.4A
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Chinese (zh)
Inventor
杨复成
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Yuding Energy Conservation Science And Technology Co Ltd
Original Assignee
Yuding Energy Conservation Science And Technology Co Ltd
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Publication date
Application filed by Yuding Energy Conservation Science And Technology Co Ltd filed Critical Yuding Energy Conservation Science And Technology Co Ltd
Priority to CN201410821079.4A priority Critical patent/CN105772901A/en
Publication of CN105772901A publication Critical patent/CN105772901A/en
Pending legal-status Critical Current

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Abstract

The invention relates to a manufacturing method and system for an energy-saving boiler. The manufacturing method for the energy-saving boiler is conducted through the manufacturing system for the energy-saving boiler. The manufacturing method includes the following steps that a platform is provided; an arrangement face of a boiler body is back on to the platform, the boiler body is positioned on the platform, and the boiler body can be electrically connected to an electrode; an automatic conveying device is provided, and the automatic conveying device is used for conveying multiple heat conduction pieces to a discharging mechanism in sequence; the heat conduction piece located at the most front end of the discharging mechanism is electrically connected to the other electrode; the discharging mechanism is detected and adjusted to the arrangement face by a preset distance; the discharging mechanism is used for driving the heat conduction piece at the most front end to make contact with the arrangement face, and the heat conduction piece in contact with the arrangement face is connected to the arrangement face in an arc welding manner; and relative position between the discharging mechanism and the arrangement face is adjusted according to a preset connecting distribution position. The above steps are repeated, and therefore the energy-saving boiler high in heating efficiency can be manufactured.

Description

Energy saving pot manufacture method and system
Technical field
The present invention is relevant with energy saving pot, in particular to a kind of energy saving pot manufacture method and system.
Background technology
Press, it is take up food to be boiled by food in pan heating during cooked food, and in order to promote the efficiency of heating surface, generally can install one layer of conductive structure bottom pan to form an energy saving pot, this conductive structure is had the heat conducting element of high-termal conductivity by majority and is welded in the bottom of a pan with being spaced and is formed, pan can be made to increase heating surface area, to reach save the energy and shorten the purpose of heat time heating time.
But, the manufacture method of known energy saving pot is, with manpower, heat conducting element is welded in the bottom of a pan one by one, it is thus desirable to expend substantial amounts of time and manpower, and need to by highly skilled human users, in welding process, otherwise it is susceptible to danger, and manpower welding easily makes that such heat conducting element is misaligned causes perception not good, and then reduce consumer's desire to purchase, really very not convenient.
Therefore, it is necessary to provide a kind of novelty and there is energy saving pot manufacture method and the system of progressive, to solve above-mentioned problem.
Summary of the invention
It is an object of the invention to provide a kind of energy saving pot manufacture method and system, the manufacture method of energy saving pot of the present invention and system, efficient can produce the energy saving pot with high heating power and plenty of time and manpower can be saved, manpower welding is avoided to cause danger, and such heat-conducting piece marshalling can be made attractive in appearance, to increase consumer's desire to purchase.
For achieving the above object, the present invention takes techniques below scheme:
A kind of energy saving pot manufacture method, it comprises the following steps:
A () provides a platform;
B one pot is arranged face this platform dorsad with one and is positioned this platform by (), and make this pot be electrically connected to an electrode;
C () provides an automatic conveying device, majority heat-conducting piece is sequentially delivered to a discharging mechanism by this automatic conveying device;
D () makes to be positioned at this discharging mechanism this heat-conducting piece foremost and is electrically connected to another electrode;
E () is detected and is adjusted this discharging mechanism and arrange face to this to a preset distance;
F () utilizes this discharging mechanism to drive this heat-conducting piece of foremost to arranging face with this and contact, and make to arrange with this, by arc welding, the heat-conducting piece joint that face contacts and arrange face to this;
G () adjusts this discharging mechanism and arranges the relative position in face according to a predetermined distributing position that engages with this;
H () repeats step (d) to step (g).
Described step (c) comprises the following steps:
(c1) the Shai Song mechanism screening utilizing described automatic conveying device arranges described heat-conducting piece;
(c2) conveying mechanism utilizing described automatic conveying device is sequentially mobile to described discharging mechanism by described heat-conducting piece.
Described step (e) comprises the following steps:
(e1) described discharging mechanism and the described relative position information arranged between face are detected;
(e2) described discharging mechanism and the described relative position that face is set are adjusted according to described relative position information.
Described step (f) will be located in described discharging mechanism foremost one described in heat-conducting piece quickly rush to be incident upon described face be set.
Described step (g) rotates described pot to adjust described discharging mechanism and the described relative position arranging face.
The present invention separately provides a kind of energy saving pot to manufacture system, and it includes platform one displacement mechanism, a discharging mechanism, an automatic conveying device, two electrodes, a detector and a control unit.This platform is for location and transfers a pot.This discharging mechanism connects this displacement mechanism.This automatic conveying device is connected to this discharging mechanism and most heat-conducting pieces can be sequentially delivered to this discharging mechanism.This two electrode respectively with this pot and be positioned at this discharging mechanism foremost one this heat-conducting piece be electrically connected.This detector is located at this discharging mechanism, and this detector arranges the location information in face for detecting this discharging mechanism to the one of this pot.This control unit is electrically connected this platform, this displacement mechanism and this discharging mechanism, this pot is positioned according to the predetermined distributing position that engages of this location information and, control this displacement mechanism move this discharging mechanism to this arrange face at a distance of a preset distance time, drive this discharging mechanism to will be located in this heat-conducting piece discharging foremost of this discharging mechanism and contact and electric arc solder joints to arranging face with this.
Described platform includes a tumbler and and is located at this tumbler and for the fastening assembly positioning described pot.
Described automatic conveying device includes a Shai Song mechanism being screened for arranging described heat-conducting piece and for described heat-conducting piece is sequentially moved the conveying mechanism to described discharging mechanism.
Described conveying mechanism includes an air transporting arrangement and a pipe fitting being connected with this air transporting arrangement and described discharging mechanism, and described heat-conducting piece is driven by this air transporting arrangement and is delivered to this discharging mechanism along described pipe fitting.
Institute's displacement mechanism includes a pedestal, a power packages and being located at this pedestal connects this pedestal and described discharging mechanism and the displacement component driven by described power packages.
The invention has the beneficial effects as follows: the present invention efficient can produce the energy saving pot with high heating power, pot only need to be fixed on this fastening assembly by operator at the beginning, namely such heat-conducting piece is welded in this arranges face to the present invention automatically afterwards, waste plenty of time and manpower can be avoided, manpower welding is avoided to cause danger, and such heat-conducting piece marshalling can be made attractive in appearance, to increase consumer's desire to purchase.And, such heat-conducting piece can be arranged in equidirectional by this Shai Song mechanism of this automatic conveying device, and via this conveying mechanism, such heat-conducting piece is sequentially moved to this discharging mechanism, may replace the complicated processes sending such heat-conducting piece with manpower sieve, improve the efficiency carrying such heat-conducting piece.In addition, such sensing element of this detector can detect this discharging mechanism and this relative position information arranging between face, and adjust this discharging mechanism according to a predetermined distributing position that engages the relative position in face is set with this, face is set so that such heat-conducting piece is engaged in this with being spaced, improves such heat-conducting piece and be incorporated into this speed that face is set.
Accompanying drawing explanation
Fig. 1 is the schematic diagram of a preferred embodiment of the present invention.
Fig. 2 is another schematic diagram of a preferred embodiment of the present invention.
Fig. 3 is the operation partial schematic diagram of a preferred embodiment of the present invention.
Fig. 4 is the another operation partial schematic diagram of a preferred embodiment of the present invention.
Fig. 5 is the energy saving pot axonometric chart of a preferred embodiment of the present invention.
Drawing reference numeral: 1: platform;2: displacement mechanism;3: discharging mechanism;4: automatic conveying device;5: detector;6: control unit;7: pot;8: heat-conducting piece;9: energy saving pot;11: tumbler;12: fastening assembly;21: pedestal;22: power packages;23: displacement component;41: Shai Song mechanism;411: vibrations feed table;42: conveying mechanism;421: air transporting arrangement;422: pipe fitting;51: sensing element;71: face is set;81: annulus;91: bearer bar.
Detailed description of the invention
Hereinafter only with embodiment, the enforcement aspect that the present invention is possible being described, so and be not used to the restriction present invention and be intended to the category of protection, conjunction is first chatted bright.
Refer to Fig. 1 and Fig. 2, one preferred embodiment of its display present invention, the present invention provides a kind of energy saving pot to manufacture system, and it includes platform 1, displacement mechanism 2, discharging mechanism 3, automatic conveying device 4, two electrode, detector 5 and a control unit 6.
This platform 1 is for location and transfers a pot 7, and this platform 1 includes a tumbler 11 and and is located at this tumbler 11 and for the fastening assembly 12 positioning this pot 7, and this pot 7 being immobilizated in this fastening assembly 12 can be rotated by this tumbler 11.
This displacement mechanism 2 connects this discharging mechanism 3, this displacement mechanism 2 includes a pedestal 21, and is located at the power packages 22 and of this pedestal 21 and connects this pedestal 21 and this discharging mechanism 3 and the displacement component 23 driven by this power packages 22, and this displacement mechanism 2 is for the position of this discharging mechanism 3 mobile.
This automatic conveying device 4 includes a Shai Song mechanism 41 and being screened for arranging most heat-conducting piece 8 and supplies such heat-conducting piece 8 is sequentially moved the conveying mechanism 42 to this discharging mechanism 3, and this automatic conveying device 4 is connected to this discharging mechanism 3 and such heat-conducting piece 8 can be sequentially delivered to this discharging mechanism 3.Specifically, one end that such heat-conducting piece 8 is column and preferably such heat-conducting piece 8 has an annulus 81, this annulus 81 is provided with being welded in the one of this pot 7 and arranges face 71, this Shai Song mechanism 41 screening of this automatic conveying device 4 arranges such heat-conducting piece 8, this Shai Song mechanism 41 is a vibrations feed table 411 in the present embodiment, this Shai Song mechanism 41 can send device for the sieve of other kind in other embodiments, and this vibrations feed table 411 can by such heat-conducting piece 8 sequentially with equidirectional arrangement.Specifically, respectively this heat-conducting piece 8 has one end of this annulus 81 towards the direction that respectively this heat-conducting piece 8 moves, and then sequentially moves such heat-conducting piece 8 of equidirectional arrangement to this discharging mechanism 3 via this conveying mechanism 42 of this automatic conveying device 4.Additionally, air transporting arrangement 421 and the pipe fitting 422 being connected with this air transporting arrangement 421 and this discharging mechanism 3 is included at this conveying mechanism 42 of the present embodiment, such heat-conducting piece 8 is driven by this air transporting arrangement 421 and is delivered to this discharging mechanism 3 along this pipe fitting 422, and direction when respectively this heat-conducting piece 8 has one end of this annulus 81 towards this discharging mechanism 3 discharging, to illustrate that, this conveying mechanism 42 may not include this air transporting arrangement 421 in other embodiments, and is the conveyer device of other mode of movement (such as conveyer belt).
This two electrode respectively with this pot 7 and be positioned at this discharging mechanism 3 this heat-conducting piece 8 foremost and be electrically connected, to reach the condition of electric arc welding.
This detector 5 is located at this discharging mechanism 3, and this detector 5 arranges the location information in face 71 for this discharging mechanism of detecting 3 to this.Wherein, this detector 5 includes at least one sensing element 51, and the quantity of this sensing element 51 is two in the present embodiment, and this sensing element 51 can be other quantity in other embodiments.
This control unit 6 is electrically connected this platform 1, this displacement mechanism 2 and this discharging mechanism 3, this pot 7 is positioned according to the predetermined distributing position that engages of this location information and, control this displacement mechanism 2 move this discharging mechanism 3 to this arrange face 71 at a distance of a preset distance time, drive this discharging mechanism 3 to will be located in this discharging mechanism 3 and foremost and be electrically connected this heat-conducting piece 8 discharging of an electrode and contact and electric arc solder joints to arranging face 71 with this of this pot 7 being electrically connected another electrode.
Please coordinating further with reference to Fig. 3 and Fig. 4, the energy saving pot manufacture method of the present invention comprises the following steps, and wherein, is manufacture system for this energy saving pot as above to illustrate in this following energy saving pot manufacture method.
A () provides this platform 1.
B this pot 7 is arranged face 71 this platform 1 dorsad with this and is positioned this platform 1 by (), and make this pot 7 be electrically connected to an electrode.Being noted that this arranges face in the present embodiment is a plane, and in other embodiments, this arranges face 71 can be nonplanar shape (as having the pan of an arc-shaped bottom surface), such heat-conducting piece 8 can be welded in this equally and arrange face 71.
C () provides this automatic conveying device 4 that such heat-conducting piece 8 is sequentially delivered to this discharging mechanism 3, this Shai Song mechanism 41 screening of this automatic conveying device 4 arranges such heat-conducting piece 8, such heat-conducting piece 8 is arranged in this conveying mechanism 42 equidirectional and via this automatic conveying device 4 sequentially moved to this discharging mechanism 3, direction when respectively this heat-conducting piece 8 has one end of this annulus 81 towards this discharging mechanism 3 discharging by such heat-conducting piece 8 of equidirectional arrangement.
D () makes to be positioned at this discharging mechanism 3 this heat-conducting piece 8 foremost and is electrically connected to another electrode.
E () is detected and is adjusted this discharging mechanism 3 and arrange face 71 to this to this preset distance.Specifically, the such sensing element 51 utilizing this detector 5 can detect this discharging mechanism 3 and this relative position information arranging between face 71, and adjust this discharging mechanism 3 according to this relative position information the relative position in face 71 is set with this, to guarantee that this discharging mechanism 3 is positioned at a bonding station.
F () utilizes this discharging mechanism 3 to be driven by this heat-conducting piece 8 of foremost to arranging face 71 with this and contacts, and make to arrange with this, by the mode of electric arc welding, this heat-conducting piece 8 that face 71 contacts and engage and arrange face 71 to this.Further, the present invention will be located in this discharging mechanism 3 this heat-conducting piece 8 foremost and quickly rushes and be incident upon this and arrange face 71, when be electrically connected this heat-conducting piece 8 of an electrode be electrically connected another electrode this arrange face 71 contact time, the contact surface of this heat-conducting piece 8 and this metal of contact surface arranging face 71 produce that electric arc can produce heat effect and moment sends high heat, the contact surface and this contact surface arranging face 71 that cause this heat-conducting piece 8 melt, together with this heat-conducting piece 8 can being arranged face 71 solder joints with this, will be understood that, this discharging mechanism 3 utilizes electric capacity to accumulate certain capacity and once release, its process completed welding at 3/1000 second, therefore electricity needed for different solder side sizes and voltage are also different.It is noted that the method for this kind of electric arc welding to have efficiency of energy utilization higher, workpiece deformation is little, and speed of welding is fast, and without solder, is highly suitable for automatic welding.
G () adjusts this discharging mechanism 3 and arranges the relative position in face 71 according to this predetermined distributing position that engages with this, arrange face 71 so that such heat-conducting piece 8 is engaged in this with being sequentially spaced.Rotate the mode of this pot 7 for this tumbler 11 in the present embodiment and the relative position in face 71 is set adjusting this discharging mechanism 3 and this, to illustrate that, can not rotate the mode of this pot 7 in other embodiments for the position of this discharging mechanism 3 mobile, equally possible reach to adjust this discharging mechanism 3 relative position in face 71 is set with this.
H () repeats above step (d) to step (g), such heat-conducting piece 8 is respectively welded to this predetermined joint distributing position, as it is shown in figure 5, namely this energy saving pot 9 has manufactured.
The present invention avoids this energy saving pot 9 to cause such heat-conducting piece 8 to damage the efficiency of heating surface reducing this energy saving pot 9 in use procedure or handling process; preferably the peripheral installing in face 71 one bearer bar 91 can be set at this; such heat-conducting piece 8 and extraneous collision can be avoided, so that this energy saving pot 9 can be more sturdy and durable.
To sum up, the present invention efficient can produce the energy saving pot with high heating power, pot only need to be fixed on this fastening assembly by operator at the beginning, namely such heat-conducting piece is welded in this arranges face to the present invention automatically afterwards, waste plenty of time and manpower can be avoided, avoid manpower welding to cause danger, and such heat-conducting piece marshalling can be made attractive in appearance, to increase consumer's desire to purchase.
And, such heat-conducting piece can be arranged in equidirectional by this Shai Song mechanism of this automatic conveying device, and via this conveying mechanism, such heat-conducting piece is sequentially moved to this discharging mechanism, may replace the complicated processes sending such heat-conducting piece with manpower sieve, improve the efficiency carrying such heat-conducting piece.
In addition, such sensing element of this detector can detect this discharging mechanism and this relative position information arranging between face, and adjust this discharging mechanism according to a predetermined distributing position that engages the relative position in face is set with this, face is set so that such heat-conducting piece is engaged in this with being spaced, improves such heat-conducting piece and be incorporated into this speed that face is set.
In sum, in the overall construction design of the present invention, practicality and benefit, it is strictly in the industry of complying fully with needed for development, and disclosed architecture invention is also have unprecedented innovative structure, so its there is novelty should without doubt, the present invention than the enhancement of known structure more effect, therefore can also have progressive again.

Claims (10)

1. an energy saving pot manufacture method, it is characterised in that it comprises the following steps:
A () provides a platform;
B one pot is arranged face this platform dorsad with one and is positioned this platform by (), and make this pot be electrically connected to an electrode;
C () provides an automatic conveying device, majority heat-conducting piece is sequentially delivered to a discharging mechanism by this automatic conveying device;
D () makes to be positioned at this discharging mechanism this heat-conducting piece foremost and is electrically connected to another electrode;
E () is detected and is adjusted this discharging mechanism and arrange face to this to a preset distance;
F () utilizes this discharging mechanism to drive this heat-conducting piece of foremost to arranging face with this and contact, and make to arrange with this, by arc welding, the heat-conducting piece joint that face contacts and arrange face to this;
G () adjusts this discharging mechanism and arranges the relative position in face according to a predetermined distributing position that engages with this;
H () repeats step (d) to step (g).
2. energy saving pot manufacture method as claimed in claim 1, it is characterised in that described step (c) comprises the following steps:
(c1) the Shai Song mechanism screening utilizing described automatic conveying device arranges described heat-conducting piece;
(c2) conveying mechanism utilizing described automatic conveying device is sequentially mobile to described discharging mechanism by described heat-conducting piece.
3. energy saving pot manufacture method as claimed in claim 1, it is characterised in that described step (e) comprises the following steps:
(e1) described discharging mechanism and the described relative position information arranged between face are detected;
(e2) described discharging mechanism and the described relative position that face is set are adjusted according to described relative position information.
4. energy saving pot manufacture method as claimed in claim 1, it is characterised in that will be located in described step (f) described discharging mechanism foremost one described in heat-conducting piece quickly rush to be incident upon described face be set.
5. energy saving pot manufacture method as claimed in claim 1, it is characterised in that rotate described pot in described step (g) to adjust described discharging mechanism and the described relative position arranging face.
6. an energy saving pot manufactures system, it is characterised in that it includes:
One platform, for location and transfer one pot;
One displacement mechanism;
One discharging mechanism, connects this displacement mechanism;
One automatic conveying device, is connected to this discharging mechanism and most heat-conducting pieces can be sequentially delivered to this discharging mechanism;
Two electrodes, respectively with this pot and be positioned at this discharging mechanism foremost one this heat-conducting piece be electrically connected;
One detector, is located at this discharging mechanism, arranges the location information in face to the one of this pot for this discharging mechanism of detecting;
One control unit, it is electrically connected this platform, this displacement mechanism and this discharging mechanism, this pot is positioned according to the predetermined distributing position that engages of this location information and, control this displacement mechanism move this discharging mechanism to this arrange face at a distance of a preset distance time, drive this discharging mechanism to will be located in this heat-conducting piece discharging foremost of this discharging mechanism and contact and electric arc solder joints to arranging face with this.
7. energy saving pot as claimed in claim 6 manufactures system, it is characterised in that described platform includes a tumbler and and is located at this tumbler and for the fastening assembly positioning described pot.
8. energy saving pot as claimed in claim 6 manufactures system, it is characterised in that described automatic conveying device includes a Shai Song mechanism being screened for arranging described heat-conducting piece and for described heat-conducting piece is sequentially moved the conveying mechanism to described discharging mechanism.
9. energy saving pot as claimed in claim 8 manufactures system, it is characterized in that, described conveying mechanism includes an air transporting arrangement and a pipe fitting being connected with this air transporting arrangement and described discharging mechanism, and described heat-conducting piece is driven by this air transporting arrangement and is delivered to this discharging mechanism along described pipe fitting.
10. energy saving pot as claimed in claim 6 manufactures system, it is characterised in that institute's displacement mechanism includes a pedestal, a power packages and being located at this pedestal connects this pedestal and described discharging mechanism and the displacement component driven by described power packages.
CN201410821079.4A 2014-12-25 2014-12-25 Manufacturing method and system for energy-saving boiler Pending CN105772901A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410821079.4A CN105772901A (en) 2014-12-25 2014-12-25 Manufacturing method and system for energy-saving boiler

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410821079.4A CN105772901A (en) 2014-12-25 2014-12-25 Manufacturing method and system for energy-saving boiler

Publications (1)

Publication Number Publication Date
CN105772901A true CN105772901A (en) 2016-07-20

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201410821079.4A Pending CN105772901A (en) 2014-12-25 2014-12-25 Manufacturing method and system for energy-saving boiler

Country Status (1)

Country Link
CN (1) CN105772901A (en)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060070985A1 (en) * 2004-10-05 2006-04-06 Fanuc Ltd Arc welding device and arc welding robot system
CN201446338U (en) * 2009-03-16 2010-05-05 金宝电子(中国)有限公司 Welding machine station
US20100242282A1 (en) * 2009-03-27 2010-09-30 Lee Lisheng Huang Methods of making energy efficient cookware
CN202162523U (en) * 2011-06-30 2012-03-14 秦文隆 Material injecting pipe welding equipment of vapor chamber
CN103170706A (en) * 2013-03-21 2013-06-26 浙江湖州新京昌电子有限公司 Liquid level sensor contact welding machine

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060070985A1 (en) * 2004-10-05 2006-04-06 Fanuc Ltd Arc welding device and arc welding robot system
CN201446338U (en) * 2009-03-16 2010-05-05 金宝电子(中国)有限公司 Welding machine station
US20100242282A1 (en) * 2009-03-27 2010-09-30 Lee Lisheng Huang Methods of making energy efficient cookware
CN202162523U (en) * 2011-06-30 2012-03-14 秦文隆 Material injecting pipe welding equipment of vapor chamber
CN103170706A (en) * 2013-03-21 2013-06-26 浙江湖州新京昌电子有限公司 Liquid level sensor contact welding machine

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Effective date of abandoning: 20180608