CN202608013U - Hopper of moulding extruder of sensor for observing material conveyance - Google Patents

Hopper of moulding extruder of sensor for observing material conveyance Download PDF

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Publication number
CN202608013U
CN202608013U CN 201220309061 CN201220309061U CN202608013U CN 202608013 U CN202608013 U CN 202608013U CN 201220309061 CN201220309061 CN 201220309061 CN 201220309061 U CN201220309061 U CN 201220309061U CN 202608013 U CN202608013 U CN 202608013U
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CN
China
Prior art keywords
hopper
hopper body
chute
top shoe
sliding block
Prior art date
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.)
Expired - Fee Related
Application number
CN 201220309061
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Chinese (zh)
Inventor
杨和荣
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.)
Chengdu Chang Di Sensotech Ltd
Original Assignee
Chengdu Chang Di Sensotech Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Chengdu Chang Di Sensotech Ltd filed Critical Chengdu Chang Di Sensotech Ltd
Priority to CN 201220309061 priority Critical patent/CN202608013U/en
Application granted granted Critical
Publication of CN202608013U publication Critical patent/CN202608013U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses a hopper of a moulding extruder of a sensor for observing material conveyance, which comprises a hopper body. The hopper body comprises a cylindrical material storage barrel. A hopper-like unloading structure is connected at the bottom end of the cylindrical material storage barrel. The hopper body further comprises a sliding groove on the extruder. The inner width of the sliding groove is greater than the opening width. A feed inlet communicated with the extruder is arranged at the bottom of the sliding groove. An upper sliding block and a lower sliding block are installed below the hopper body. The upper and the lower sliding blocks are respectively located inside and outside the sliding groove. The upper and the lower sliding blocks are connected through a pipeline which communicates an inner cavity of the hopper body with the feed inlet. The unloading structure is provided with a transparent observing window and a vibrating motor, so that inner materials in the hopper body can be observed at any time, and the stress among materials can be effectively removed, therefore, materials fall for normal production.

Description

Be used to observe the sensor moulding extruder hopper of mass transport situation
Technical field
The utility model relates to the hopper of extruding machine in the sensor manufacturing, specifically is meant the sensor moulding extruder hopper that is used to observe the mass transport situation.
Background technology
Automobile wheel speed sensor mainly is made up of inductive head, wire harness and annex etc.The effect of inductive head is exactly and the target gear matched that is contained on the automobile chassis that the rotating speed of measured automobiles wheel partly is made up of coil, magnetic pole etc.On this basis, guarantee normal operation of sensor, sensor can reasonably be installed on the automobile chassis, its mounting means has a lot.Existing normally used a kind of wheel speed sensors is arranged is steel shell and a part that relies on inductive head outside, i.e. resilient bushing cooperation is in the chassis the corresponding mounting hole of packing into.During sensor designs, in the middle of need magnet steel, magnetic conductor being combined in, magnetic conductor is an iron core, and coil forms the magnetic conduction coil around magnet steel and iron core.The variation of the coil-induced surrounding magnetic field of magnetic conduction produces the signal of telecommunication, and this signal of telecommunication outputs to external device (ED) through capillary.The supporting mass of magnet steel, iron core, coil is called skeleton.Existing skeleton is split type skeleton, at first needs injection moulding one skeleton body, reinstalls iron core, magnet steel, reinstalls stopper at last, forms skeleton; The technical process that forms sensing head is following: 1, processing parts: skeleton body, magnetic conductor, magnet steel, capillary, stopper, coil, cotton thread; 2, assembling process: pack into skeleton body-coiling-twine cotton thread-dress magnet steel-stopper gluing assembling-coil the end of a thread line tail to be wound on the capillary of iron core gluing.
The installation of skeleton body adopts extruding machine to accomplish usually, part to be packaged is accomplished formalizing through extruding machine with the plastics of molten condition, different according to model and product requirement; Need change different types of material probably in process of production; Traditional extruder hopper is fixed on the extruding machine, when needing to change the material of different cultivars, normally stops production earlier; Manual work is drawn out leftover materials from hopper then; Put into required material after cleaning out again, this process is very complicated, and is difficult to thorough cleaning.
The utility model content
The purpose of the utility model is to be provided for observing the sensor moulding extruder hopper of mass transport situation; Solve present extruding machine and change material trouble, workman's the big problem of workload; Reach simultaneously and be convenient to operation, thoroughly change material, reduce the purpose that material is residual, prevent the material caking.
The purpose of the utility model realizes through following technical proposals:
Be used to observe the sensor moulding extruder hopper of mass transport situation, comprise the hopper body, the hopper body comprises columniform material stock tube; Be connected with funnelform blowing structure in the bottom of material stock tube, also comprise the chute that is fixedly mounted on the extruding machine, the inner width of chute is greater than its A/F; The chute bottom is provided with the charging aperture that is communicated with extruding machine; Below said hopper body, top shoe and sliding block are installed, top shoe and sliding block lay respectively at the outside and inner of chute, and top shoe is connected through pipeline with sliding block; Pipeline is communicated with hopper body interior cavity with charging aperture; The blowing structure is provided with transparent observation window, simultaneously, on the blowing structure, also is provided with vibrating motor.Chute integral body is cuboid, and its surface has opening, and inside is cavity, and the inner width of chute is greater than its A/F, and the cross section of chute is " recessed " font, and through below the hopper body, installing slide block and sliding block, wherein, sliding block is positioned at chute inside; Top shoe is positioned at the sliding block top, and is positioned at the chute outside, and top shoe is connected through pipeline with sliding block, and chute is provided with the charging aperture of extruding machine; This charging aperture is positioned at the chute bottom, and top shoe and sliding block are all passed by pipeline, and pipeline is communicated with charging aperture and hopper, so; During material kind in needs are changed hopper, the hopper body is outwards moved along chute from the position of charging aperture, make the through hole of sliding block be communicated with and get final product with dumping pit; Need not the hopper body be taken off, avoid the higher work of intensity, also without the Turnover bunker body; Be fixed on the version on the extruding machine with respect to traditional hopper, solved and changed the problem that the material kind is relatively more difficult, material is residual and labor strength is big, realized quick-replaceable purpose; Through transparent observation window is set on the blowing structure, can observe the situation of hopper body interior material at any time, on the blowing structure, also be provided with vibrating motor; When material does not use for a long time, the situation of material extruding usually occurs, even material occurs and can't fall; Powder particularly forms extruding each other especially easily and does not fall, at this moment; Through connecting vibrating motor, thereby can effectively the stress between the material be got rid of material is fallen, produce normally; When having only the blowing structure just material to be arranged, the workman should add materials, and has the directiveness effect for workman's operation.
Said chute stretches out and is provided with dumping pit in its bottom, and the passage that is communicated with dumping pit is installed below chute.Further say, through chute stretch out and its bottom be provided with dumping pit, the passage that is communicated with dumping pit is installed below chute; Hopper is outwards moved from the position of charging aperture along chute, make the through hole of sliding block be communicated with and get final product, just can clear up the hopper body well with dumping pit; Material is discharged from dumping pit, load required material and get final product, need not the hopper body be taken off; Avoided the higher work of intensity, also without Turnover bunker body, collection material easily; Avoid material spilling, when reaching material and do not waste, safe and reliable, operation bidirectional is few.
Junction at described hopper body and top shoe is equipped with block board, and block board has the through hole that is complementary with hopper body bottom, and block board is fixedly connected with top shoe through bolt.Through block board being set in hopper body bottom; Has the through hole that is complementary with hopper body bottom on the block board; After hopper body bottom put into this through hole; With bolt block board is fixed on the top shoe, has avoided hopper body and pipeline out-of-alignment problem, make hopper body and pipeline be in connected state completely all the time.
Said top shoe is provided with handle.So, during material kind in needs are changed hopper, utilize handle that the hopper body is outwards moved along chute from the position of charging aperture, make the through hole of sliding block be communicated with and get final product, be very easy to mobile, the taking-up and the replacing of hopper body with dumping pit.
Be provided with the lock(ing) bolt of sliding block in the said chute charging aperture position corresponding with dumping pit.Further say, as the further improvement of the utility model, through the form of lock(ing) bolt is installed on chute; When the hopper body is positioned at charging aperture or dumping pit; Can be with the hopper body-fixed, in the time of need the hopper body being taken off, it is removable hopper body that lock(ing) bolt is unclamped.
The utility model compared with prior art has following advantage and beneficial effect:
1 the utility model is used to observe the sensor moulding extruder hopper of mass transport situation, through transparent observation window is set on the blowing structure, can observe the situation of hopper body interior material at any time; On the blowing structure, also be provided with vibrating motor, when material does not use for a long time, the situation of material extruding usually occur; Even material occurs and can't fall, powder particularly forms extruding each other especially easily and does not fall; At this moment, through connecting vibrating motor, material is fallen thereby can effectively the stress between the material be got rid of; Produce normally; When having only the blowing structure just material to be arranged, the workman should add materials, and has the directiveness effect for workman's operation;
2 the utility model are used to observe the sensor moulding extruder hopper of mass transport situation; Through block board being set in hopper body bottom; Have the through hole that is complementary with hopper body bottom on the block board, this through hole is put in hopper body bottom after, with bolt block board is fixed on the top shoe; Avoid hopper body and pipeline out-of-alignment problem, made hopper body and pipeline be in connected state completely all the time;
3 the utility model are used to observe the sensor moulding extruder hopper of mass transport situation; Through the form of lock(ing) bolt is installed on chute; When the hopper body is positioned at charging aperture or dumping pit; Can be with the hopper body-fixed, in the time of need the hopper body being taken off, it is removable hopper body that lock(ing) bolt is unclamped.
Description of drawings
Fig. 1 is the utility model structural representation.
Mark and corresponding parts title in the accompanying drawing:
1-hopper body, 2-chute, 3-top shoe, 4-sliding block, 5-pipeline, 6-block board, 7-lock(ing) bolt, 8-dumping pit, 9-passage, 10-handle, 11-observation window, 12-vibrating motor.
The specific embodiment
Below in conjunction with embodiment the utility model is done further to specify, but the embodiment of the utility model is not limited thereto.
Embodiment
As shown in Figure 1; The utility model is used to observe the sensor moulding extruder hopper of mass transport situation; Comprise hopper body 1, hopper body 1 comprises columniform material stock tube, is connected with funnelform blowing structure in the bottom of material stock tube; The blowing structure is provided with observation window 11 and vibrating motor 12, and observation window 11 adopts transparent material commonly used to process; Also comprise the chute 2 that is fixedly mounted on the extruding machine, chute integral body is cuboid, and its surface has opening; Inside is cavity, and the inner width of chute 2 is greater than its A/F, and the cross section of chute 2 is " recessed " font; Chute 2 bottoms are provided with the charging aperture that is communicated with extruding machine, and sliding block 4 is installed in chute 2, are provided with two lock(ing) bolts 7 in chute 2 sides; Two lock(ing) bolts 7 are corresponding with charging aperture and dumping pit 8 respectively, and top shoe 3 is installed above sliding block 4, and top shoe 3 is positioned on the chute 2; Handle 10 is installed on top shoe 3, and top shoe 3 is communicated with through pipeline 5 with sliding block 4, and chute extends outward extruding machine; And its bottom be provided with dumping pit 8, the passage 9 that is communicated with dumping pit 8 is installed below chute 2; Block board 6 is installed on top shoe 3, has through hole on the block board 6, the blowing structure of through hole and hopper body 1 is complementary, and the blowing structure is inserted in the through hole, and block board 6 is through being bolted on the top shoe 3.
The above; It only is the preferred embodiment of the utility model; Be not that the utility model is done any pro forma restriction, every according on the technical spirit of the utility model to any simple modification, equivalent variations that above embodiment did, all fall within the protection domain of the utility model.

Claims (5)

1. be used to observe the sensor moulding extruder hopper of mass transport situation; Comprise hopper body (1), hopper body (1) comprises columniform material stock tube, is connected with funnelform blowing structure in the bottom of material stock tube; It is characterized in that: also comprise the chute (2) that is fixedly mounted on the extruding machine; The inner width of chute (2) is greater than its A/F, and chute (2) bottom is provided with the charging aperture that is communicated with extruding machine, in said hopper body (1) below top shoe (3) and sliding block (4) is installed; Top shoe (3) and sliding block (4) lay respectively at the outside and inner of chute (2); Top shoe (3) is connected through pipeline (5) with sliding block (4), and pipeline (5) is communicated with hopper body interior cavity with charging aperture, and the blowing structure is provided with transparent observation window (11); Simultaneously, on the blowing structure, also be provided with vibrating motor (12).
2. the sensor moulding extruder hopper that is used to observe the mass transport situation according to claim 1; It is characterized in that: said chute (2) stretches out and is provided with dumping pit (8) in its bottom, in chute (2) below the passage (9) that is communicated with dumping pit (8) is installed.
3. the sensor moulding extruder hopper that is used to observe the mass transport situation according to claim 1; It is characterized in that: the junction at described hopper body (1) and top shoe (3) is equipped with block board (6); Block board (6) has the through hole that is complementary with hopper body (1) bottom, and block board (6) is fixedly connected with top shoe (3) through bolt.
4. the sensor moulding extruder hopper that is used to observe the mass transport situation according to claim 1, it is characterized in that: said top shoe (3) is provided with handle (10).
5. the sensor moulding extruder hopper that is used to observe the mass transport situation according to claim 2 is characterized in that: the lock(ing) bolt (7) that is provided with sliding block (4) in said chute (2) charging aperture and the corresponding position of dumping pit (8).
CN 201220309061 2012-06-29 2012-06-29 Hopper of moulding extruder of sensor for observing material conveyance Expired - Fee Related CN202608013U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201220309061 CN202608013U (en) 2012-06-29 2012-06-29 Hopper of moulding extruder of sensor for observing material conveyance

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201220309061 CN202608013U (en) 2012-06-29 2012-06-29 Hopper of moulding extruder of sensor for observing material conveyance

Publications (1)

Publication Number Publication Date
CN202608013U true CN202608013U (en) 2012-12-19

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105058737A (en) * 2015-07-31 2015-11-18 成都亨通兆业精密机械有限公司 Application method of molding plastic extruding machine recognizing material varieties
CN105109001A (en) * 2015-07-31 2015-12-02 成都亨通兆业精密机械有限公司 Method for changing material accumulation of forming extruder
CN105109003A (en) * 2015-07-31 2015-12-02 成都亨通兆业精密机械有限公司 Method for observing material conveying conditions of extrusion molding machine

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105058737A (en) * 2015-07-31 2015-11-18 成都亨通兆业精密机械有限公司 Application method of molding plastic extruding machine recognizing material varieties
CN105109001A (en) * 2015-07-31 2015-12-02 成都亨通兆业精密机械有限公司 Method for changing material accumulation of forming extruder
CN105109003A (en) * 2015-07-31 2015-12-02 成都亨通兆业精密机械有限公司 Method for observing material conveying conditions of extrusion molding machine

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C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20121219

Termination date: 20130629