CN210012239U - Double-shaft modulator-to-machine barrel slipknot three-way mechanism - Google Patents

Double-shaft modulator-to-machine barrel slipknot three-way mechanism Download PDF

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Publication number
CN210012239U
CN210012239U CN201920787643.3U CN201920787643U CN210012239U CN 210012239 U CN210012239 U CN 210012239U CN 201920787643 U CN201920787643 U CN 201920787643U CN 210012239 U CN210012239 U CN 210012239U
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modulator
square tube
fixed
pipe
slipknot
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CN201920787643.3U
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Chinese (zh)
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王昌会
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Jinan Chunguang Mechanical Equipment Co Ltd
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Jinan Chunguang Mechanical Equipment Co Ltd
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Abstract

The utility model provides a double-shaft modulator-to-machine barrel slipknot three-way mechanism, which comprises a discharging pipe, a square tube, a rotating shaft, a turning plate, a feeding pipe, a round pipe, a pneumatic motor, a fixed rod, an elastic cushion and a blanking groove, wherein the feeding pipe is welded at the upper end of the square tube, a square hole is processed at the middle position of the rear side surface of the square tube, the blanking groove is fixed inside the square hole, a fixed mounting seat is arranged at the middle position of the right side surface of the square tube, the pneumatic motor is fixed inside the mounting seat, the right end of the rotating shaft is connected with the left end of an output shaft of the pneumatic motor through a coupler, the round pipe is arranged at the annular side surface of the rotating shaft, the turning plate is fixed at the upper end of the annular side surface of the round pipe, the discharging pipe is welded at the lower end of the square tube, more, the product percent of pass is improved, thereby improving the processing efficiency.

Description

Double-shaft modulator-to-machine barrel slipknot three-way mechanism
Technical Field
The utility model relates to a biax modulator to barrel slipknot tee bend mechanism belongs to puffed food processing equipment field.
Background
Need carry the material to the inside processing of popped room in the puffed food processing now, but inside the in-process of beginning unloading is carried remaining material in with the modulator to popped indoor portion easily to form unqualified product after popped indoor portion processing, general operating personnel can give up these unqualified products, but this kind of mode is inconvenient not only with unqualified product and qualified product separation, can waste time simultaneously, consequently need a biax modulator to the barrel slipknot tee bend mechanism solve the above-mentioned problem.
Disclosure of Invention
Not enough to prior art exists, the utility model aims at providing a biax modulator to barrel slipknot tee bend mechanism to solve the problem that proposes in the above-mentioned background art, the utility model discloses make things convenient for the unloading, improve the product percent of pass, thereby improve machining efficiency.
In order to achieve the above purpose, the present invention is realized by the following technical solution: a double-shaft modulator-cylinder slipknot three-way mechanism comprises a support and a blanking assembly, wherein a double-screw extruder is fixed at the upper end of the support, a modulator is fixed at the upper end of the blanking assembly, the lower end of the blanking assembly extends into the double-screw extruder, a bulking machine is fixed at the right end of the support, the right end of the double-screw extruder extends into the bulking machine, the right end of the modulator is placed at the upper end of the bulking machine, the blanking assembly comprises a discharging pipe, a square cylinder, a rotating shaft, a turning plate, a feeding pipe, a circular pipe, a pneumatic motor, a fixing rod, an elastic cushion and a blanking groove, the feeding pipe is welded at the upper end of the square cylinder, the upper end of the feeding pipe is installed at the left end of the modulator, a square hole is machined at the middle position of the rear side face of the square cylinder, the blanking groove is fixed inside the square hole, a mounting seat is fixed at, and the pivot left end passes the square tube and extends to the square tube left side, the annular side-mounting pipe of pivot, and the pipe setting is inside the square tube, the fixed board that turns over in pipe annular side upper end, square tube lower extreme welding discharging pipe, and inside the discharging pipe lower extreme extended to the twin-screw machine, discharging pipe downside border position fixes more than two dead levers, the dead lever lower extreme is installed at two above on the cushion upper end.
Furthermore, a feeding pipe is arranged at the right part of the upper end of the modulator, and the elastic cushion is of a conical structure.
Furthermore, a through hole is processed in the front side face of the square barrel, and a transparent plate is fixed in the through hole.
Further, the lower end of the charging chute is provided with a collecting basket, and the pneumatic motor is connected with the high-pressure gas storage tank through a hose.
The utility model has the advantages that: the utility model relates to a three-way mechanism of a double-shaft modulator to a machine barrel slipknot, which is characterized in that a discharging pipe, a square barrel, a rotating shaft, a turning plate, a feeding pipe, a round pipe, a pneumatic motor, a fixed rod, an elastic cushion and a blanking groove are added, in the using process, a user operates the modulator, the double-screw machine and the pneumatic motor to open the blanking groove and close the square barrel, at the moment, the prepared raw material is conveyed into the modulator, the modulator processes the raw material to form the material, the blanking groove discharges the residual raw material and the initial unqualified material in the modulator, then the blanking groove is closed and the square barrel is opened, so that the material drops into the double-screw machine, the material is conveyed into the bulking machine to be processed by the operation of the double-screw machine, the design is convenient to discharge the residual raw material and the initial unqualified material in time, thereby improving the qualification rate of products, the utility model discloses make things convenient for the unloading, improve the product percent of pass to improve machining efficiency.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
FIG. 1 is a schematic structural view of a three-way mechanism from a dual-axis modulator to a barrel slipknot of the present invention;
FIG. 2 is a schematic structural view of a blanking assembly in a three-way mechanism from a dual-axis modulator to a barrel slipknot of the present invention;
FIG. 3 is a schematic diagram of a right-side view structure of a blanking assembly in a three-way mechanism from a dual-axis modulator to a barrel slipknot of the present invention;
in the figure: 1-bracket, 2-double screw machine, 3-blanking component, 4-modulator, 5-feeding pipe, 6-bulking machine, 301-discharging pipe, 302-square cylinder, 303-rotating shaft, 304-turning plate, 305-feeding pipe, 306-round pipe, 307-pneumatic motor, 308-fixed rod, 309-elastic pad and 310-blanking groove.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
Referring to fig. 1-3, the present invention provides a technical solution: a three-way joint from a double-shaft modulator 4 to a machine barrel comprises a support 1 and a blanking component 3, wherein a double-screw machine 2 is fixed at the upper end of the support 1, a modulator 4 is fixed at the upper end of the blanking component 3, the lower end of the blanking component 3 extends into the double-screw machine 2, a bulking machine 6 is fixed at the right end of the support 1, the right end of the double-screw machine 2 extends into the bulking machine 6, the right end of the modulator 4 is placed at the upper end of the bulking machine 6, the blanking component 3 comprises a discharge pipe 301, a square barrel 302, a rotating shaft 303, a turning plate 304, a feed pipe 305, a round pipe 306, a pneumatic motor 307, a fixed rod 308, an elastic pad 309 and a blanking groove 310, the feed pipe 305 is welded at the upper end of the square barrel 302, the left position of the lower end of the modulator 4 is installed at the upper end of the feed pipe 305, a square hole is machined at, the right end of a rotating shaft 303 is connected with the left end of an output shaft of a pneumatic motor 307 through a coupler, the left end of the rotating shaft 303 penetrates through a square barrel 302 and extends to the left side of the square barrel 302, a round pipe 306 is installed on the annular side surface of the rotating shaft 303 and is arranged inside the square barrel 302, a turning plate 304 is fixed at the upper end of the annular side surface of the round pipe 306, a discharge pipe 301 is welded at the lower end of the square barrel 302, the lower end of the discharge pipe 301 extends into a double-screw machine 2, more than two fixing rods 308 are fixed at the edge position of the lower side surface of the discharge pipe 301, the upper end of an elastic cushion 309 is installed at the lower ends of the more than two fixing rods 308, in the using process, a user operates a modulator 4 and the double-screw machine 2 and then operates the pneumatic motor 307, so that the pneumatic motor 307 drives the rotating shaft 303 to rotate, the rotating shaft 303 rotates to drive the round pipe, so that the modulator 4 processes the raw material to form the material, the modulator 4 generates unqualified material due to unstable initial processing, the residual raw material and the unqualified material move to the feeding pipe 305 along the modulator 4, fall onto the turning plate 304 under the action of self gravity, slide to the inside of the blanking groove 310 along the turning plate 304, and fall to the inside of the collecting basket along the blanking groove 310, so as to discharge the residual raw material and the unqualified material inside the modulator 4, when the modulator 4 is processed stably, a user reversely operates the pneumatic motor 307, so that the turning plate 304 rotates to close the blanking groove 310 and open the square barrel 302, the qualified material falls to the discharging pipe 301 and falls onto the elastic cushion 309 along the discharging pipe 301, and the elastic cushion 309 generates elastic deformation under the action of the gravity of the material, so as to buffer and absorb shock under the action of the elastic cushion 309, make material non-deformable, then the material will drop to the twin-screw machine 2 inside to this twin-screw machine 2 operation is carried the material to 6 inside processing of bulking machine, and this design is convenient remains the raw materials and in time discharges with the initial unqualified material, thereby improves the qualification rate of product.
The feed pipe 5 is arranged at the right position of the upper end of the modulator 4, the raw materials are conveniently conveyed by the design, the elastic pad 309 is of a conical structure, and the materials are conveniently dropped into the double-screw machine 2 by the design.
The through-hole is processed to square tube 302 leading flank, the inside fixed transparent plate of through-hole, and the inside condition of square tube 302 is conveniently observed to this design.
The charging chute 310 lower extreme is equipped with the collection basket, and this design is convenient to be collected unqualified material, and pneumatic motor 307 is connected with high-pressure gas storage jar through the hose, and this design is convenient for pneumatic motor 307 provides pressure.
The above-mentioned embodiment is only the preferred embodiment of the present invention, so all the equivalent changes or modifications made by the structure, features and principles of the present invention are included in the claims of the present invention.

Claims (4)

1. The utility model provides a biax modulator to barrel slipknot tee bend mechanism, includes support and unloading subassembly, its characterized in that: the double-screw extruder is fixed at the upper end of the support, the modulator is fixed at the upper end of the blanking assembly, the lower end of the blanking assembly extends into the double-screw extruder, the expander is fixed at the right end of the support, the right end of the double-screw extruder extends into the expander, and the right end of the modulator is placed at the upper end of the expander;
the blanking assembly comprises a discharging pipe, a square tube, a rotating shaft, a turning plate, a feeding pipe, a circular pipe, a pneumatic motor, fixing rods, an elastic cushion and a blanking groove, the feeding pipe is welded at the upper end of the square tube, the upper end of the feeding pipe is arranged at the left end of the lower end of a modulator, a square hole is machined at the middle position of the rear side of the square tube, the blanking groove is fixed inside the square hole, a fixed mounting seat is arranged at the middle position of the right side of the square tube, the pneumatic motor is fixed inside the mounting seat, the right end of the rotating shaft is connected with the left end of an output shaft of the pneumatic motor through a coupler, the left end of the rotating shaft penetrates through the square tube and extends to the left side of the square tube, the circular pipe is arranged on the side of the rotating shaft, the turning plate is fixed at the upper end of the circular pipe, the discharging, the upper end of the elastic cushion is arranged at the lower ends of more than two fixing rods.
2. The dual-axis modulator-to-barrel slipknot tee mechanism of claim 1, wherein: the right part of the upper end of the modulator is provided with a feeding pipe, and the elastic cushion is of a conical structure.
3. The dual-axis modulator-to-barrel slipknot tee mechanism of claim 1, wherein: the square tube is characterized in that a through hole is machined in the front side face of the square tube, and a transparent plate is fixed in the through hole.
4. The dual-axis modulator-to-barrel slipknot tee mechanism of claim 1, wherein: the lower end of the charging chute is provided with a collecting basket, and the pneumatic motor is connected with the high-pressure gas storage tank through a hose.
CN201920787643.3U 2019-05-29 2019-05-29 Double-shaft modulator-to-machine barrel slipknot three-way mechanism Active CN210012239U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920787643.3U CN210012239U (en) 2019-05-29 2019-05-29 Double-shaft modulator-to-machine barrel slipknot three-way mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920787643.3U CN210012239U (en) 2019-05-29 2019-05-29 Double-shaft modulator-to-machine barrel slipknot three-way mechanism

Publications (1)

Publication Number Publication Date
CN210012239U true CN210012239U (en) 2020-02-04

Family

ID=69318164

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920787643.3U Active CN210012239U (en) 2019-05-29 2019-05-29 Double-shaft modulator-to-machine barrel slipknot three-way mechanism

Country Status (1)

Country Link
CN (1) CN210012239U (en)

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