CN205199657U - Crushing assembly and contain this crushing assembly's breaker - Google Patents

Crushing assembly and contain this crushing assembly's breaker Download PDF

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Publication number
CN205199657U
CN205199657U CN201520987744.7U CN201520987744U CN205199657U CN 205199657 U CN205199657 U CN 205199657U CN 201520987744 U CN201520987744 U CN 201520987744U CN 205199657 U CN205199657 U CN 205199657U
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CN
China
Prior art keywords
cutter
turning cylinder
disruption elements
crusher chamber
cutterhead
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Withdrawn - After Issue
Application number
CN201520987744.7U
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Chinese (zh)
Inventor
龙柏安
王红霞
王琳
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.)
Gree Electric Appliances Inc of Zhuhai
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Gree Electric Appliances Inc of Zhuhai
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Priority to CN201520987744.7U priority Critical patent/CN205199657U/en
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Publication of CN205199657U publication Critical patent/CN205199657U/en
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Abstract

The utility model relates to a crushing assembly, including first cutter, second cutter and axis of rotation, first cutter with the second cutter is located in the axis of rotation, first cutter is relative the axis of rotation is fixed, the second cutter is relative the axis of rotation can be swung. Above -mentioned crushing assembly, first cutter rotates under the drive of axis of rotation and tears materials such as plastic casing to shreds, and the material is broken into pieces to relative axis of rotation wobbling second cutter. The mode that adopts first cutter and second cutter to combine has reduced the wearing and tearing of cutter, has realized having the quick breakage of metallic impurity's such as screw complicated plastics, has reduced metal separation preliminary treatment process, has practiced thrift manufacturing cost, has improved production efficiency. The utility model discloses still relate to a breaker that contains this crushing assembly.

Description

Disruption elements and comprise the disintegrating machine of this disruption elements
Technical field
The utility model relates to refuse breaking process field, particularly relates to a kind of disruption elements and comprises the disintegrating machine of this disruption elements.
Background technology
Along with plastics extensive use in daily life, the amount of plastic garbage is increasing, and the recycling of plastic garbage becomes more and more important, and wherein the recovery of household electrical appliances plastic casing is particularly important.The disintegrating apparatus of current household electrical appliances plastic casing mainly contains two classes.One class is blade cuts formula disintegrating machine, blade is fixed on main shaft and body, by spindle operation, plastics are cut, such equipment price is low, be mainly used in the pure plastic crushing process such as beverage bottle, and for the appliance shell with metals such as screws such as broken television set, easily cause cutting edge roundness to wear and tear, reduce production efficiency.Another kind of is four axle disintegrating machines, by four axle running attrition crushings, can carry out Integral-crushing to the material that refrigerator complete machine etc. contains metal and other unlike materials, but such equipment price is high, energy consumption is large, for broken household electrical appliances plastic casing, broken cost can be increased undoubtedly, reduce productivity effect.
Utility model content
Based on this, be necessary to provide a kind of and enhance productivity, reduce the disruption elements of production cost and comprise the disintegrating machine of this disruption elements.
A kind of disruption elements, comprise the first cutter, the second cutter and turning cylinder, described first cutter and described second cutter are located on described turning cylinder, and the relatively described turning cylinder of described first cutter is fixed, and the relatively described turning cylinder of described second cutter is swingable.
Above-mentioned disruption elements, the first cutter rotates and is torn up by the materials such as plastic casing under the drive of turning cylinder, and material is broken into pieces by the second cutter relatively rotating axle swing.The mode adopting the first cutter and the second cutter to combine reduces the wearing and tearing of cutter, achieves the quick crashing of the complicated plastics with metal impurities such as screws, decreases metal separation pretreatment process, saved production cost, improve production efficiency.
Wherein in an embodiment, at described turning cylinder axially, multiple described first cutter and multiple described second cutter are staggered is intervally arranged.
Wherein in an embodiment, in the circumference of described turning cylinder, multiple described first cutter and multiple described second cutter interlock and are intervally arranged.
Wherein in an embodiment, described first cutter is billhook, and described second cutter is hammer cutter, and described first cutter is greater than described second cutter in the radially-protruding length of described turning cylinder in the radially-protruding length of described turning cylinder.
Wherein in an embodiment, described disruption elements also comprises cutterhead, and described cutterhead is fixed on described turning cylinder, and multiple described first cutter is located on described cutterhead along the radial direction of described cutterhead.
Wherein in an embodiment, described cutterhead is multiple, multiple described cutterhead in the axial direction successively spacer sleeve be located on described turning cylinder.
Wherein in an embodiment, described disruption elements also comprises the back shaft being connected to described cutterhead, and described second cutter is connected to described back shaft rotationally.
A kind of disintegrating machine, comprises above-mentioned disruption elements.
Wherein in an embodiment, described disintegrating machine also comprises body and driving mechanism, described body is provided with charging aperture and discharging opening, the inside of described body is provided with crusher chamber, described disruption elements is located in described crusher chamber and described driving mechanism and described turning cylinder are in transmission connection, and described crusher chamber is communicated with respectively with described charging aperture, described discharging opening.
Wherein in an embodiment, the inside of described body is also provided with feed cavity, described charging aperture is communicated with described crusher chamber by described feed cavity, multiple striker plate is provided with in described feed cavity, along material from described feed cavity to the direction of described crusher chamber, on the inwall that described feed cavity is located at multiple described striker plate interval and adjacent two described striker plates be located in the opposed inner walls of described feed cavity.
Wherein in an embodiment, one end of described striker plate is fixedly connected on described feed cavity, and the other end of described striker plate stretches into described feed cavity and arranges towards described crusher chamber.
Wherein in an embodiment, described disintegrating machine also comprises thermostat, and described thermostat is for regulating the temperature in described crusher chamber.
Wherein in an embodiment, described thermostat comprises attemperating unit and spray equipment, and described attemperating unit is for controlling unlatching or the closedown of spray equipment, and described spray equipment is used for lowering the temperature to described crusher chamber.
Wherein in an embodiment, described disintegrating machine also comprises screen cloth, and described screen cloth to be located in described crusher chamber and to be positioned at the below of described disruption elements.
Wherein in an embodiment, described disintegrating machine also comprises dust removal port, cleaning shaft and dust arrester, and described dust removal port is communicated with described crusher chamber, and the two ends of described cleaning shaft are communicated in described dust removal port and described dust arrester respectively.
Accompanying drawing explanation
Fig. 1 is the structure chart of the disruption elements of an embodiment;
Fig. 2 is the front view of the disruption elements shown in Fig. 1;
Fig. 3 is the side view of the disruption elements shown in Fig. 1;
Fig. 4 is the structure chart of the disintegrating machine of an embodiment.
Detailed description of the invention
For the ease of understanding the utility model, below with reference to relevant drawings, the utility model is described more fully.Preferred embodiment of the present utility model is given in accompanying drawing.But the utility model can realize in many different forms, is not limited to embodiment described herein.On the contrary, provide the object of these embodiments be make the understanding of disclosure of the present utility model more comprehensively thorough.
It should be noted that, when element is called as " being fixed on " another element, directly can there is element placed in the middle in it on another element or also.When an element is considered to " connection " another element, it can be directly connected to another element or may there is centering elements simultaneously.Term as used herein " vertical ", " level ", "left", "right" and similar statement are just for illustrative purposes.
With reference to Fig. 1, the disruption elements 110 of an embodiment, comprises the first cutter 111, second cutter 112 and turning cylinder 113.First cutter 111 and the second cutter 112 are located on turning cylinder 113, and the first cutter 111 relatively rotates axle 113 and fixes, and it is swingable that the second cutter 112 relatively rotates axle 113.
Above-mentioned disruption elements 110, first cutter 111 rotates and is torn up by the materials such as plastic casing under the drive of turning cylinder 113, and material is broken into pieces by the second cutter 112 relatively rotating axle 113 swing.The mode adopting the first cutter 111 and the second cutter 112 to combine reduces the wearing and tearing of cutter, achieves the quick crashing of the complicated plastics with metal impurities such as screws, decreases metal separation pretreatment process, saved production cost, improve production efficiency.
Reference Fig. 2, wherein in an embodiment, at turning cylinder 113 axially, multiple first cutter 111 and multiple second cutter 112 interlock and are intervally arranged.First cutter 111 and the second cutter 112 alternating expression are arranged, and can further improve crushing efficiency.
With reference to Fig. 3, wherein in an embodiment, in the circumference of turning cylinder 113, multiple first cutter 111 and multiple second cutter 112 interlock and are intervally arranged.First cutter 111 and the second cutter 112 alternating expression are arranged, and can further improve crushing efficiency.
Continue with reference to Fig. 1, concrete, the first cutter 111 is billhook, and the second cutter 112 is hammer cutter.First cutter 111 is greater than the second cutter 112 in the radially-protruding length of turning cylinder 113 in the radially-protruding length of turning cylinder 113.When disruption elements 110 like this works, material first tentatively tears up by the first cutter 111, second cutter 112 is broken into pieces to less particle by tentatively tearing up with the material fragment of the metals such as screw again, the material further reducing band metal impurities, to the damage of cutter, improves the production efficiency of disruption elements 110.
Concrete, the end of the first cutter 111 is provided with the hook portion outstanding towards side.More specifically, the two ends of the first cutter 111 are equipped with this hook portion.
Concrete, the end of the second cutter 112 is provided with the hammer portion in cuboid.Be appreciated that the hammer portion of the second cutter 112 also can be set to other shapes such as spheroid.
Wherein in an embodiment, disruption elements also comprises cutterhead 114, and cutterhead 114 is fixed on turning cylinder 113, and multiple first cutter 111 is located on cutterhead 114 along the radial direction of cutterhead 114.
Concrete, cutterhead 114 is multiple, multiple cutterhead 114 in the axial direction successively spacer sleeve be located on turning cylinder 113.
Wherein in an embodiment, disruption elements 100 also comprises back shaft 115, second cutter 112 being connected to cutterhead 114 and is connected to back shaft 115 rotationally, thus it is swingable to make the second cutter 112 relatively rotate axle 113.
Concrete, the axis of back shaft 115 and the axis being parallel of turning cylinder 113.
Concrete, back shaft 115 is connected to multiple cutterhead 114, second cutter 112 successively and is located on back shaft 115 and between adjacent two cutterheads 114.
Concrete, the end of the second cutter 112 outwardly time can be exposed to cutterhead 114.Be appreciated that because the second cutter 112 is connected to back shaft 115 rotationally, when therefore disruption elements 110 does not work, the end of the second cutter 112 is subject to gravity vertically down.When disruption elements 110 works, the second cutter 112 is subject to the centrifugal force that turning cylinder 113 rotates, and the end of the second cutter 112 is exposed to cutterhead 114 outwardly, thus makes the second cutter 112 act on material.
Concrete, each cutterhead 114 is provided with multiple first cutter 111, and back shaft 115 is connected to the interval location of adjacent two first cutters 111 of connected cutterhead 114.Concrete, multiple first cutter 111 circumferences of each cutterhead 114 are evenly arranged.Back shaft 115 is evenly connected to the interval location of adjacent two first cutters 111 of connected cutterhead 114.
Concrete, the first cutter 111 of multiple cutterhead 114 is corresponding and establish.
Concrete, in the present embodiment, each cutterhead 114 is provided with three the first cutters, 111, three back shafts 115 and is connected to multiple cutterhead 114 successively.
Concrete, the second cutter 112 is relative in the axial direction with back shaft 115 to be fixedly connected with.
Concrete, cutterhead 114 relatively rotates axle 113 and fixes.Concrete, cutterhead 114 is connected with turning cylinder 113 key.Concrete, in the present embodiment, cutterhead 114 is provided with sleeve, and sleeve is connected by key with turning cylinder 113.Concrete, disintegrating machine 100 also comprises bolt 116, and the first cutter 111 is fixed on cutterhead 114 by bolt 116.
With reference to Fig. 4, the utility model additionally provides the disintegrating machine 100 of an embodiment, comprises disruption elements 110.
Disruption elements 110, first cutter 111 of above-mentioned disintegrating machine 100 rotates and is torn up by the materials such as plastic casing under the drive of turning cylinder 113, and material is broken into pieces by the second cutter 112 relatively rotating axle 113 swing.The mode adopting the first cutter 111 and the second cutter 112 to combine reduces the wearing and tearing of cutter, achieves the quick crashing of the complicated plastics with metal impurities such as screws, decreases metal separation pretreatment process, saved production cost, improve production efficiency.Concrete, adopt above-mentioned disintegrating machine 100, crushing efficiency can improve more than 80%.
Wherein in an embodiment, disintegrating machine 100 also comprises body 120 and driving mechanism 130.Body 120 is provided with charging aperture 121 and discharging opening 122, and the inside of body 120 is provided with crusher chamber 123, and disruption elements 110 is located in crusher chamber 123 and driving mechanism 130 and turning cylinder 113 are in transmission connection, and crusher chamber 123 is communicated with respectively with charging aperture 121, discharging opening 122.
Concrete, in the present embodiment, driving mechanism 130 is motor.More specifically, disintegrating machine 100 also comprises driving belt 140, and driving mechanism 130 is connected by driving belt 140 with turning cylinder 113.
Wherein in an embodiment, the inside of body 120 is also provided with feed cavity 124, and charging aperture 121 is communicated with crusher chamber 123 by feed cavity 124.
Concrete, be provided with multiple striker plate 1240 in feed cavity 124, the direction along material from feed cavity 124 to crusher chamber 123, on the inwall that feed cavity 124 is located at multiple striker plate 1240 interval and adjacent two striker plates 1240 be located in the opposed inner walls of feed cavity 124.Wherein adjacent two striker plates 1240 refer to two striker plates 1240 that position is adjacent on the direction of material from feed cavity 124 to crusher chamber 123.Material like this enters feed cavity 124 from charging aperture 121, and the effect material through striker plate 1240 enters crusher chamber 123 successively, avoids solid accumulation to be suspended in feed cavity 124, causes disruption elements 110 cannot the idle running phenomenon of cutter material, increases energy consumption.
Concrete, one end of striker plate 1240 is fixedly connected on feed cavity 124, and the other end of striker plate 1240 stretches into feed cavity 124 and arranges towards crusher chamber 123, to make material can better from striker plate 1240 landing to crusher chamber 123.Wherein in an embodiment, disintegrating machine 100 also comprises thermostat 150, and thermostat 150 is for regulating the temperature in crusher chamber 123.After disintegrating machine 100 works a period of time, the too high disintegrating machine 100 that makes of the temperature in crusher chamber 123 cannot proceed work, and therefore employing thermostat 150 regulates the temperature in crusher chamber 123, ensures the normal work of disintegrating machine 100.
Concrete, thermostat 150 comprises attemperating unit 151 and spray equipment 152, and attemperating unit 151 is for controlling unlatching or the closedown of spray equipment 152, and spray equipment 152 is for lowering the temperature to crusher chamber 123.When the temperature in crusher chamber 123 is too high, attemperating unit 151 controls spray equipment 152 and starts thus lower the temperature to crusher chamber 123.More specifically, also can comprise can the temperature-sensing device (not shown) of temperature in Real-Time Monitoring crusher chamber 123 for thermostat 150.Be appreciated that spray equipment 152 can discharge cooling medium, be sprayed to crusher chamber 123 and lower the temperature.
More specifically, spray equipment 152 is provided with mouth spray 1520, and mouth spray 1520 is communicated in the top of crusher chamber 123.
Wherein in an embodiment, disintegrating machine 100 also comprises screen cloth 160, and screen cloth 160 to be located in crusher chamber 123 and to be positioned at the below of disruption elements 110.Material after disruption elements 110 fragmentation obtains through screen cloth 160 particle meeting size, to carry out recycling.
Wherein in an embodiment, disintegrating machine 100 also comprises dust removal port 171, cleaning shaft 172 and dust arrester 173, and dust removal port 171 is communicated with crusher chamber 123, and the two ends of cleaning shaft 172 are communicated in dust removal port 171 and dust arrester 173 respectively.Dust arrester 173 can remove the dust produced in disintegrating machine 100 in time, reduces dust to the impact of disintegrating machine 100 operating efficiency.Concrete, dust removal port 171 is positioned at the below of screen cloth 160.
Wherein in an embodiment, disintegrating machine 100 also comprises frame 180, and body 120 and driving mechanism 130 are all located in frame 180.
Each technical characteristic of the above embodiment can combine arbitrarily, for making description succinct, the all possible combination of each technical characteristic in above-described embodiment is not all described, but, as long as the combination of these technical characteristics does not exist contradiction, be all considered to be the scope that this description is recorded.
The above embodiment only have expressed several embodiment of the present utility model, and it describes comparatively concrete and detailed, but therefore can not be interpreted as the restriction to utility model patent scope.It should be pointed out that for the person of ordinary skill of the art, without departing from the concept of the premise utility, can also make some distortion and improvement, these all belong to protection domain of the present utility model.Therefore, the protection domain of the utility model patent should be as the criterion with claims.

Claims (15)

1. a disruption elements, it is characterized in that, comprise the first cutter (111), the second cutter (112) and turning cylinder (113), described first cutter (111) and described second cutter (112) are located on described turning cylinder (113), the relatively described turning cylinder (113) of described first cutter (111) is fixed, and the described relatively described turning cylinder of second cutter (112) (113) is swingable.
2. disruption elements according to claim 1, is characterized in that, at described turning cylinder (113) axially, multiple described first cutter (111) and multiple described second cutter (112) interlocking are intervally arranged.
3. disruption elements according to claim 1 and 2, is characterized in that, in the circumference of described turning cylinder (113), multiple described first cutter (111) and multiple described second cutter (112) interlocking are intervally arranged.
4. disruption elements according to claim 1, it is characterized in that, described first cutter (111) is billhook, described second cutter (112) is hammer cutter, and described first cutter (111) is greater than described second cutter (112) in described turning cylinder (113) radially-protruding length in described turning cylinder (113) radially-protruding length.
5. disruption elements according to claim 1, it is characterized in that, described disruption elements also comprises cutterhead (114), described cutterhead (114) is fixed on described turning cylinder (113), and multiple described first cutter (111) is located on described cutterhead (114) along the radial direction of described cutterhead (114).
6. disruption elements according to claim 5, is characterized in that, described cutterhead (114) for multiple, multiple described cutterhead (114) in the axial direction successively spacer sleeve be located on described turning cylinder (113).
7. disruption elements according to claim 5, it is characterized in that, described disruption elements also comprises the back shaft (115) being connected to described cutterhead (114), and described second cutter (112) is connected to described back shaft (115) rotationally.
8. a disintegrating machine, is characterized in that, comprises the disruption elements described in any one of claim 1 ~ 7.
9. disintegrating machine according to claim 8, it is characterized in that, described disintegrating machine also comprises body (120) and driving mechanism (130), described body (120) is provided with charging aperture (121) and discharging opening (122), the inside of described body (120) is provided with crusher chamber (123), described disruption elements is located in described crusher chamber (123) and described driving mechanism (130) and described turning cylinder (113) are in transmission connection, described crusher chamber (123) and described charging aperture (121), described discharging opening (122) is communicated with respectively.
10. disintegrating machine according to claim 9, it is characterized in that, the inside of described body (120) is also provided with feed cavity (124), described charging aperture (121) is communicated with described crusher chamber (123) by described feed cavity (124), multiple striker plate (1240) is provided with in described feed cavity (124), along material from described feed cavity (124) to the direction of described crusher chamber (123), on the inwall that described feed cavity (124) are located at multiple described striker plate (1240) interval and adjacent two described striker plates (1240) be located in the opposed inner walls of described feed cavity (124).
11. disintegrating machines according to claim 10, it is characterized in that, one end of described striker plate (1240) is fixedly connected on described feed cavity (124), and the other end of described striker plate (1240) stretches into described feed cavity (124) and arranges towards described crusher chamber (123).
12. disintegrating machines according to claim 9, is characterized in that, described disintegrating machine also comprises thermostat (150), and described thermostat (150) is for regulating the temperature in described crusher chamber (123).
13. disintegrating machines according to claim 12, it is characterized in that, described thermostat (150) comprises attemperating unit (151) and spray equipment (152), described attemperating unit (151) is for controlling unlatching or the closedown of spray equipment (152), and described spray equipment (152) is for lowering the temperature to described crusher chamber (123).
14. disintegrating machines according to claim 9, it is characterized in that, described disintegrating machine also comprises screen cloth (160), and described screen cloth (160) to be located in described crusher chamber (123) and to be positioned at the below of disruption elements (110).
15. disintegrating machines according to claim 9, it is characterized in that, described disintegrating machine also comprises dust removal port (171), cleaning shaft (172) and dust arrester (173), described dust removal port (171) is communicated with described crusher chamber (123), and the two ends of described cleaning shaft (172) are communicated in described dust removal port (171) and described dust arrester (173) respectively.
CN201520987744.7U 2015-12-01 2015-12-01 Crushing assembly and contain this crushing assembly's breaker Withdrawn - After Issue CN205199657U (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106807519A (en) * 2015-12-01 2017-06-09 珠海格力电器股份有限公司 Disruption elements and the disintegrating machine comprising the disruption elements
CN108465528A (en) * 2018-02-07 2018-08-31 杭州市育才外国语学校 A kind of construction waste crushing device and method with dust-absorbing function
CN109290029A (en) * 2018-09-11 2019-02-01 长兴鑫鼎耐火材料厂(普通合伙) A kind of raw material for refractory processing crushing device
CN109401809A (en) * 2018-12-21 2019-03-01 中山斯瑞德环保科技有限公司 Device and method for preparing RDF-5 from household garbage

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106807519A (en) * 2015-12-01 2017-06-09 珠海格力电器股份有限公司 Disruption elements and the disintegrating machine comprising the disruption elements
CN106807519B (en) * 2015-12-01 2019-01-22 珠海格力电器股份有限公司 Disruption elements and crusher comprising the disruption elements
CN108465528A (en) * 2018-02-07 2018-08-31 杭州市育才外国语学校 A kind of construction waste crushing device and method with dust-absorbing function
CN108465528B (en) * 2018-02-07 2020-07-03 杭州市育才外国语学校 Construction waste crushing device and method with dust collection function
CN109290029A (en) * 2018-09-11 2019-02-01 长兴鑫鼎耐火材料厂(普通合伙) A kind of raw material for refractory processing crushing device
CN109401809A (en) * 2018-12-21 2019-03-01 中山斯瑞德环保科技有限公司 Device and method for preparing RDF-5 from household garbage

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AV01 Patent right actively abandoned

Granted publication date: 20160504

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AV01 Patent right actively abandoned