CN209465366U - A kind of ECRV by-passing valve Optimum Design device - Google Patents

A kind of ECRV by-passing valve Optimum Design device Download PDF

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Publication number
CN209465366U
CN209465366U CN201822088869.2U CN201822088869U CN209465366U CN 209465366 U CN209465366 U CN 209465366U CN 201822088869 U CN201822088869 U CN 201822088869U CN 209465366 U CN209465366 U CN 209465366U
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China
Prior art keywords
splicing groove
guide plate
sliding
ecrv
passing valve
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CN201822088869.2U
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Chinese (zh)
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马晓蓓
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TAICANG YUANKAI AUTO PARTS Co Ltd
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TAICANG YUANKAI AUTO PARTS Co Ltd
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Abstract

The utility model discloses a kind of ECRV by-passing valve Optimum Design devices, including rack, turntable and testing agency, it is characterized by: the bottom of the frame is additionally provided with a material-receiving device, the material-receiving device includes sliding rail, splicing groove and push-and-pull cylinder, the sliding rail is two, one sliding block of bottom of the splicing groove is slideably positioned on two sliding rails, and the push-and-pull cylinder is set to the bottom of the frame, and the output shaft of the push-and-pull cylinder is connected with the right side of the sliding block;The top of the sliding rail is equipped with a sliding slot, the two sides of the bottom of the sliding block are respectively equipped with a plurality of back-up roller wheels, the back-up roller wheel is installed on the bottom surface of the sliding block through bracket, the back-up roller wheel rotational installation is on the bracket, the slider bottom is slideably positioned in the sliding slot at the top of two sliding rails through the back-up roller wheel, and the splicing groove is open-topped hollow structure.The utility model reduces labor intensity of operating staff.

Description

A kind of ECRV by-passing valve Optimum Design device
Technical field
The utility model relates to a kind of waste gas regulating valve more particularly to a kind of ECRV by-passing valve Optimum Design devices.
Background technique
ECRV is waste gas regulating valve, is mainly used on automobile turbocharger.Wherein, by-passing valve Assembling Production when It waits, whether ordinary circumstance needs to detect its performance qualified, and after detection is completed, underproof product is rejected.In the prior art, After detection is completed, generally by manually splicing, low efficiency, labor intensity of operating staff is big.
Summary of the invention
The utility model aim is to provide a kind of ECRV by-passing valve Optimum Design device, by using the structure, guarantees The detection efficiency of product, reduces labor intensity of operating staff.
In order to achieve the above objectives, the technical solution adopted in the utility model is: a kind of ECRV by-passing valve Optimum Design dress It sets, including rack, the turntable being set in rack and testing agency, annular is evenly equipped with 6 products at outer rim at the top of the turntable Block is placed, the testing agency is 6 groups, and testing agency's annular described in 6 groups is distributed in the outside of the turntable;The turntable bottom Through shaft rotational installation in the rack, the bottom of the rack is equipped with a motor, and the output shaft of the motor is through a skin Band is connected with the bottom of the shaft;The bottom of the frame is additionally provided with a material-receiving device, and the material-receiving device includes sliding rail, splicing Slot and push-and-pull cylinder, the sliding rail are two, two sliding rail interval settings, one sliding block of the bottom sliding of the splicing groove It is set on two sliding rails, the push-and-pull cylinder is set to the bottom of the frame, the output shaft of the push-and-pull cylinder and institute The right side for stating sliding block is connected, and the push-and-pull cylinder, which drives, to be exposed on the left of the sliding block and splicing groove outside on the left of the rack Portion;The top of the sliding rail is equipped with a sliding slot, and the two sides of the bottom of the sliding block are respectively equipped with a plurality of back-up roller wheels, the support Idler wheel is installed on the bottom surface of the sliding block through bracket, and the back-up roller wheel rotational installation is on the bracket, the sliding block Bottom is slideably positioned in the sliding slot at the top of two sliding rails through the back-up roller wheel, and the splicing groove is in open-topped Hollow structure.
In above-mentioned technical proposal, the slider top is equipped with a limiting slot, and the bottom of the splicing groove is placed in the limit In the slot of position.
In above-mentioned technical proposal, the top of the splicing groove is equipped with a cavity, and a guide plate is equipped in the cavity, described The top of guide plate and the left side top of the splicing groove are rotatedly connected, and the bottom setting of the guide plate is in the cavity.
In above-mentioned technical proposal, the guide plate left side is equipped with two springs, and the right side of the spring is led with described It is connected to the left side of plate, the left side of the spring is connected with the splicing groove inner left wall, and the spring pushes the guiding Plate and the left side wall of the splicing groove are obliquely installed.
In above-mentioned technical proposal, the left side wall of the splicing groove is equipped with a vertical through slot, the left side of the guide plate It is equipped with a connecting rod, the connecting rod is arranged perpendicular to the guide plate, the right side of the connecting rod and the guide plate phase Even, the left side of the connecting rod passes through the left hand external that the vertical through slot is set to the splicing groove, the connecting rod it is outer A stop nut is bolted on edge face, the right side of the stop nut is butted on the left side of the splicing groove.
In above-mentioned technical proposal, the right side of the guide plate is equipped with buffer protection layer.
In above-mentioned technical proposal, the bottom of the guide plate is arranged close to the bottom surface of the cavity.
Since above-mentioned technical proposal is used, the utility model has the advantage that compared with prior art
1. pushing sliding block and splicing groove using push-and-pull cylinder by the way that material-receiving device is arranged in bottom of the frame in the utility model Face is mobile on the slide rail, and splicing groove is made to be moved to the outside of turntable for splicing, every time can be into this way when splicing It is about to product to catch, is not necessarily to artificial splicing, high-efficient, labor intensity of operating staff is low;
2. splicing groove is placed directly in the limiting slot of slider top in the utility model, in this way convenient for product in splicing groove Cleaning, meanwhile, guide plate is set in the left side of splicing groove, guide plate is oriented to by spring and connecting rod, is convenient in this way The splicing of product guarantees splicing quality, prevents the damage of product.
Detailed description of the invention
Fig. 1 is the structural schematic diagram in the utility model embodiment one;
Fig. 2 is the schematic cross-sectional view in the utility model embodiment one (testing agency is not drawn into).
Wherein: 1, rack;2, turntable;3, product places block;4, shaft;5, motor;6, belt;7, sliding rail;8, splicing groove; 9, push-and-pull cylinder;10, sliding block;11, back-up roller wheel;12, bracket;13, feed mechanism;14, resistance detection mechanism;15, stroke is examined Survey mechanism;16, air tightness detection mechanism;17, laser marking mechanism;18, discharge tag scan mechanism;19, material grabbing mechanism;20, Limiting slot;21, cavity;22, guide plate;23, spring;24, vertical through slot;25, connecting rod;26, stop nut;27, buffering is protected Sheath.
Specific embodiment
The utility model is further described with reference to the accompanying drawings and embodiments:
Embodiment one: ginseng as shown in FIGS. 1 and 2, a kind of ECRV by-passing valve Optimum Design device, including rack 1, be set to Turntable 2 and testing agency in rack 1, annular is evenly equipped with 6 products and places blocks 3, the detection at the 2 top outer rim of turntable Mechanism is 6 groups, and testing agency's annular described in 6 groups is distributed in the outside of the turntable;2 bottom of turntable, one shaft 4 rotation Be installed in the rack 1, the bottom of the rack 1 is equipped with a motor 5, the output shaft of the motor 5 through a belt 6 with it is described The bottom of shaft 4 is connected;1 bottom of rack is additionally provided with a material-receiving device, the material-receiving device include sliding rail 7, splicing groove 8 and Push-and-pull cylinder 9, the sliding rail 7 are two, two sliding rail interval settings, and one sliding block 10 of bottom of the splicing groove 8 is sliding Dynamic to be set on two sliding rails, the push-and-pull cylinder is set to the bottom of the frame, the output shaft of the push-and-pull cylinder with The right side of the sliding block is connected, and the push-and-pull cylinder, which drives, to be exposed on the left of the sliding block and splicing groove outside on the left of the rack Portion;The top of the sliding rail is equipped with a sliding slot, and the two sides of the bottom of the sliding block 10 are respectively equipped with a plurality of back-up roller wheels 11, described Back-up roller wheel 11 is installed on the bottom surface of the sliding block 10 through bracket 12, and the back-up roller wheel rotational installation is on the bracket, institute It states in the sliding slot that the slider bottom is slideably positioned at the top of two sliding rails through the back-up roller wheel, the splicing groove is top The hollow structure of portion's opening.
In the present embodiment, testing agency includes the feed mechanism 13 set gradually, resistance detection mechanism 14, stroke detection Mechanism 15, air tightness detection mechanism 16, laser marking mechanism 17 and discharging tag scan mechanism 18, can carry out successively product Detection.Wherein, a material grabbing mechanism 19 can be arranged in the top of rack, and the product that will test completion, which is grabbed, places block, splicing from product Slot can be used for the splicing of qualified products, can be used for the splicing of substandard product.If be the splicing to qualified products, Turntable one angle of every rotation, the output shaft of push-and-pull cylinder will stretch out, and splicing groove is driven to be moved to the left hand external of turntable, benefit It is caught with the product that material grabbing mechanism will test completion.If underproof product splicing can be arranged in the side of rack Product is grabbed from after product placement block, if being qualified product, will directly be produced by conveyer belt and material grabbing mechanism, material grabbing mechanism Product are caught on conveyer belt, are conveyed using conveyer belt, if being qualified product, then the output shaft of push-and-pull cylinder stretches out, It is moved to splicing groove between turntable and conveyer belt, underproof product is caught.Wherein, material grabbing mechanism includes bracket, installation Sucker, horizontal slide rail, driving motor and vertical cylinder on bracket, the top slide of vertical cylinder are driven in horizontal slide rail Dynamic motor drives vertical cylinder to move above in horizontal slide rail by belt, and sucker is mounted on the bottom of vertical cylinder, utilizes suction Product is sucked in disk, drives sucker and product mobile using driving motor.
It is shown in Figure 2, a limiting slot 20 is equipped at the top of the sliding block 10, the bottom of the splicing groove 8 is placed in described In limiting slot 20.By the setting of limiting slot, such splicing groove is placed directly in limiting slot, can be taken out, will be in splicing groove Product cleaning.
Shown in Figure 2, the top of the splicing groove 8 is equipped with a cavity 21, is equipped with a guide plate 22 in the cavity 21, The top of the guide plate and the left side top of the splicing groove are rotatedly connected, and the bottom of the guide plate is set to the cavity It is interior.
22 left side of guide plate is equipped with two springs 23, the left side on the right side of the spring and the guide plate It is connected, the left side of the spring is connected with the splicing groove inner left wall, and the spring pushes the guide plate and the splicing The left side wall of slot is obliquely installed.
By the setting of guide plate and spring, spring will push guide plate and turn over, and in this way when splicing, can reduce The height that product is fallen prevents the damage to product, and splicing quality is effectively ensured.
Shown in Figure 2, the left side wall of the splicing groove 8 is equipped with a vertical through slot 24, the left side of the guide plate 22 Face is equipped with a connecting rod 25, and the connecting rod is arranged perpendicular to the guide plate, the right side of the connecting rod and the guiding Plate is connected, and the left side of the connecting rod passes through the left hand external that the vertical through slot is set to the splicing groove, the connecting rod Outer edge surface on be bolted with a stop nut 26, the right side of the stop nut is butted on the left side of the splicing groove.
In the present embodiment, by the setting of connecting rod and stop nut, when such spring pushes guide plate to turn over, The radian that can be turned over by stop nut and connecting rod restricted guidance plate guarantees splicing quality.Wherein, spring can also be arranged In the outside of connecting rod, one end of spring is against on the left side of guide plate, and the other end is against in the inner left wall of splicing groove.
Wherein, the right side of the guide plate 22 is equipped with buffer protection layer 27.Product and guide plate can be prevented in this way Rigidity touch and cause to damage.
The bottom of the guide plate is arranged close to the bottom surface of the cavity.

Claims (7)

1. a kind of ECRV by-passing valve Optimum Design device, described including rack, the turntable being set in rack and testing agency Annular is evenly equipped with 6 products and places block at outer rim at the top of turntable, and the testing agency is 6 groups, and the annular of testing agency described in 6 groups is It is distributed in the outside of the turntable;It is characterized by: one shaft of turntable bottom rotational installation is in the rack, the machine The bottom of frame is equipped with a motor, and the output shaft of the motor is connected through a belt with the bottom of the shaft;The bottom of the frame It is additionally provided with a material-receiving device, the material-receiving device includes sliding rail, splicing groove and push-and-pull cylinder, and the sliding rail is two, two institutes The setting of sliding rail interval is stated, one sliding block of bottom of the splicing groove is slideably positioned on two sliding rails, the push-and-pull cylinder It is set to the bottom of the frame, the output shaft of the push-and-pull cylinder is connected with the right side of the sliding block, and the push-and-pull cylinder drives The rack left hand external is exposed on the left of the sliding block and splicing groove;The top of the sliding rail is equipped with a sliding slot, the cunning The two sides of the bottom of block are respectively equipped with a plurality of back-up roller wheels, and the back-up roller wheel is installed on the bottom surface of the sliding block, institute through bracket Back-up roller wheel rotational installation is stated on the bracket, the slider bottom is slideably positioned in two cunnings through the back-up roller wheel In sliding slot at the top of rail, the splicing groove is open-topped hollow structure.
2. ECRV by-passing valve Optimum Design device according to claim 1, it is characterised in that: the slider top is equipped with One limiting slot, the bottom of the splicing groove are placed in the limiting slot.
3. ECRV by-passing valve Optimum Design device according to claim 1, it is characterised in that: the top of the splicing groove Equipped with a cavity, a guide plate, the left side top rotation at the top of the guide plate and the splicing groove are equipped in the cavity It is connected, the bottom setting of the guide plate is in the cavity.
4. ECRV by-passing valve Optimum Design device according to claim 3, it is characterised in that: the guide plate left side Two springs are equipped with, the right side of the spring is connected with the left side of the guide plate, and the left side of the spring connects with described Hopper inner left wall is connected, and the spring pushes the guide plate and the left side wall of the splicing groove to be obliquely installed.
5. ECRV by-passing valve Optimum Design device according to claim 4, it is characterised in that: the left side of the splicing groove Wall is equipped with a vertical through slot, and the left side of the guide plate is equipped with a connecting rod, and the connecting rod is perpendicular to the guiding Plate setting, the right side of the connecting rod are connected with the guide plate, and the left side of the connecting rod passes through the vertical through slot setting In being bolted with a stop nut, the right side of the stop nut in the left hand external of the splicing groove, the outer edge surface of the connecting rod Side is butted on the left side of the splicing groove.
6. ECRV by-passing valve Optimum Design device according to claim 3, it is characterised in that: the right side of the guide plate Face is equipped with buffer protection layer.
7. ECRV by-passing valve Optimum Design device according to claim 3, it is characterised in that: the bottom of the guide plate It is arranged close to the bottom surface of the cavity.
CN201822088869.2U 2018-12-12 2018-12-12 A kind of ECRV by-passing valve Optimum Design device Active CN209465366U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201822088869.2U CN209465366U (en) 2018-12-12 2018-12-12 A kind of ECRV by-passing valve Optimum Design device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201822088869.2U CN209465366U (en) 2018-12-12 2018-12-12 A kind of ECRV by-passing valve Optimum Design device

Publications (1)

Publication Number Publication Date
CN209465366U true CN209465366U (en) 2019-10-08

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Application Number Title Priority Date Filing Date
CN201822088869.2U Active CN209465366U (en) 2018-12-12 2018-12-12 A kind of ECRV by-passing valve Optimum Design device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111589286A (en) * 2020-05-30 2020-08-28 苏州惠贝电子科技有限公司 Heat accumulation oxidation treatment device for coal mine ventilation gas

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111589286A (en) * 2020-05-30 2020-08-28 苏州惠贝电子科技有限公司 Heat accumulation oxidation treatment device for coal mine ventilation gas

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