CN204528431U - Directed constraint resilient mounting jigging conveyer - Google Patents
Directed constraint resilient mounting jigging conveyer Download PDFInfo
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- CN204528431U CN204528431U CN201520133934.2U CN201520133934U CN204528431U CN 204528431 U CN204528431 U CN 204528431U CN 201520133934 U CN201520133934 U CN 201520133934U CN 204528431 U CN204528431 U CN 204528431U
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Abstract
The utility model provides a kind of directed constraint resilient mounting jigging conveyer, belong to load transfer device technical field, its structure is provided with directed constraint resilient support assemblies between fixed frame and motion frame, directed constraint resilient support assemblies is by upper elastic monomer, Elastic doublet, lower elastic monomer connects and composes, the structure of upper elastic monomer is: outer rigid sleeve inner chamber is provided with interior rigid sleeve, be uniformly distributed extruding in space between outer rigid sleeve inwall and interior rigid sleeve outer wall and be provided with elastic rubbery body, the outer rigid sleeve of the external support of elastic caoutchouc and interior rigid sleeve, be fixedly connected with by upper holder between the interior rigid sleeve of the interior rigid sleeve of upper elastic monomer and the epicoele of Elastic doublet, be fixedly connected with by lower fixed frame between the interior rigid sleeve of the cavity of resorption of Elastic doublet and the interior rigid sleeve of lower elastic monomer.This orientation constraint resilient mounting jigging conveyer can steady state vibration direction, ensures the conformability of throughput direction.
Description
Technical field
The utility model relates to load transfer device technical field, specifically a kind of directed constraint resilient mounting jigging conveyer.
Background technology
General, jigging conveyer is the equipment be in daily use in food machinery, and material is carried to X-direction by vibration by equipment, and needs vibration constrained force is in the conveying direction little, amplitude is large; And Y-direction is non-throughput direction, requires that vibration constrained force is large, amplitude is little, preferably do not vibrate, to avoid swinging.
Tradition jigging conveyer uses spring or rubber pad as resilient mounting, and vibration constrained force is in the x, y direction the same, mostly large, little all little, cannot adjust the vibration constrained force in X, Y-direction respectively.
Summary of the invention
Technical assignment of the present utility model solves the deficiencies in the prior art, provides a kind of directed constraint resilient mounting jigging conveyer.
The technical solution of the utility model realizes in the following manner, this orientation constraint resilient mounting jigging conveyer, and its structure comprises fixed frame and motion frame,
The top of fixed frame is provided with motion frame, and motion upper rack is provided with conveying screen cloth,
The bottom of motion frame is connected with vibrating motor, driven by vibrating motors motion frame double vibrations,
Directed constraint resilient support assemblies is provided with between fixed frame and motion frame,
Directed constraint resilient support assemblies is separately positioned on front and the rear of vibrating motor direction of vibration,
Directed constraint resilient support assemblies is connected and composed by upper elastic monomer, Elastic doublet, lower elastic monomer,
The structure of upper elastic monomer is: outer rigid sleeve inner chamber is provided with interior rigid sleeve, be uniformly distributed extruding in space between outer rigid sleeve inwall and interior rigid sleeve outer wall and be provided with elastic rubbery body, the outer rigid sleeve of the external support of elastic caoutchouc and interior rigid sleeve;
The structure of Elastic doublet is the outer rigid sleeve of duplex of integration being provided with epicoele, cavity of resorption two inner chambers, interior rigid sleeve is respectively arranged with in each inner chamber, be uniformly distributed extruding in space between outer rigid sleeve inwall and interior rigid sleeve outer wall and be provided with elastic rubbery body, the outer rigid sleeve of elastic caoutchouc external support duplex and interior rigid sleeve;
The structure of lower elastic monomer is: outer rigid sleeve inner chamber is provided with interior rigid sleeve, be uniformly distributed extruding in space between outer rigid sleeve inwall and interior rigid sleeve outer wall and be provided with elastic rubbery body, the outer rigid sleeve of the external support of elastic caoutchouc and interior rigid sleeve;
Be fixedly connected with by upper holder between the interior rigid sleeve of the interior rigid sleeve of upper elastic monomer and the epicoele of Elastic doublet,
Be fixedly connected with by lower fixed frame between the interior rigid sleeve of the cavity of resorption of Elastic doublet and the interior rigid sleeve of lower elastic monomer,
The top of upper elastic monomer is connected to bottom motion frame by upper connecting base,
The bottom of lower elastic monomer is connected to fixed frame top by lower connecting base,
The buffering direction of directed constraint resilient support assemblies is consistent with the direction of vibration of vibrating motor.
Be provided with vertical slideway bottom motion frame, upper connecting base to be arranged in vertical slideway and sliding block joint spacing with motion frame.
Outer rigid sleeve adopts the outer rigid sleeve of square tube type, and interior rigid sleeve adopts rigid sleeve in square tube type, and interior rigid sleeve rotates staggered being arranged in outer rigid sleeve.
The beneficial effect that the utility model is compared with prior art produced is:
This orientation constraint resilient mounting jigging conveyer uses elastic caoutchouc to be combined with rigid connection body, makes the vibration constrained force in X-direction can be adjustable by rubber hardness.Directed constraint resilient support assemblies rigidity is in the Y direction very big, and constrained force is very strong, greatly constraint vibration, makes material stably to X-direction conveying, thus solves the problem that the vibration constrained force in X, Y-direction can not adjust respectively.Directed constraint resilient support assemblies, in the Y direction without wigwag motion, improves efficiency and the conveying stability of jigging conveyer.Especially, when jigging conveyer starts and stop, there will not be disorderly vibration.
The inside and outside rigid connection body of directed constraint resilient support assemblies can relatively rotate on XZ in-plane, and it is very large to be tied on XY, YZ in-plane, almost cannot rotate, thus realizes the directional vibration effect of directed constraint resilient mounting.
This orientation constraint resilient mounting jigging conveyer can steady state vibration direction, and ensure the conformability of throughput direction, the follow-up of product quality meeting mass transport in food processing process ensures and device security guarantee.
This orientation constraint resilient mounting jigging conveyer is reasonable in design, structure is simple, safe and reliable, easy to use, be easy to safeguard, have good value for applications.
Accompanying drawing explanation
Accompanying drawing 1 is structural representation of the present utility model;
Accompanying drawing 2 is main TV structure schematic diagrams of orientation constraint resilient support assemblies of the present utility model;
Accompanying drawing 3 is side-looking structural representations of orientation constraint resilient support assemblies of the present utility model;
Accompanying drawing 4 is structural representations of upper elastic monomer of the present utility model;
Accompanying drawing 5 is direction of vibration schematic diagrams of the present utility model.
Mark in accompanying drawing represents respectively:
1, fixed frame, 2, motion frame, 3, conveying screen cloth, 4, vibrating motor,
5, directed constraint resilient support assemblies,
6, upper elastic monomer, 7, Elastic doublet, 8, lower elastic monomer,
9, outer rigid sleeve, 10, interior rigid sleeve, 11, elastic rubbery body,
12, epicoele, 13, cavity of resorption, 14, the outer rigid sleeve of duplex,
15, upper holder, 16, lower fixed frame,
17, upper connecting base, 18, lower connecting base,
19, vertical slideway.
Detailed description of the invention
Below in conjunction with accompanying drawing, orientation constraint resilient mounting jigging conveyer of the present utility model is described in detail below.
As shown in drawings, orientation constraint resilient mounting jigging conveyer of the present utility model, its structure comprises fixed frame 1 and motion frame 2,
The top of fixed frame 1 is provided with motion frame 2, and motion frame 2 top is provided with conveying screen cloth 3,
The bottom of motion frame 2 is connected with vibrating motor 4, vibrating motor 4 actuation movement frame 2 double vibrations,
Directed constraint resilient support assemblies 5 is provided with between fixed frame 1 and motion frame 2,
Directed constraint resilient support assemblies 5 is separately positioned on front and the rear of vibrating motor direction of vibration,
Directed constraint resilient support assemblies 5 is connected and composed by upper elastic monomer 6, Elastic doublet 7, lower elastic monomer 8,
The structure of upper elastic monomer 6 is: outer rigid sleeve 9 inner chamber is provided with interior rigid sleeve 10, be uniformly distributed extruding in space between outer rigid sleeve inwall and interior rigid sleeve outer wall and be provided with elastic rubbery body 11, the elastic rubbery body 11 outer rigid sleeve of outer support and interior rigid sleeve;
The structure of Elastic doublet 7 is the outer rigid sleeves 14 of duplex of integration being provided with epicoele 12, cavity of resorption 13 two inner chambers, interior rigid sleeve is respectively arranged with in each inner chamber, be uniformly distributed extruding in space between outer rigid sleeve inwall and interior rigid sleeve outer wall and be provided with elastic rubbery body, the outer rigid sleeve of elastic caoutchouc external support duplex and interior rigid sleeve;
The structure of lower elastic monomer 8 is: outer rigid sleeve inner chamber is provided with interior rigid sleeve, be uniformly distributed extruding in space between outer rigid sleeve inwall and interior rigid sleeve outer wall and be provided with elastic rubbery body, the outer rigid sleeve of the external support of elastic caoutchouc and interior rigid sleeve;
Be fixedly connected with by upper holder 15 between the interior rigid sleeve of the interior rigid sleeve of upper elastic monomer 6 and the epicoele of Elastic doublet 7,
Be fixedly connected with by lower fixed frame 16 between the interior rigid sleeve of the cavity of resorption of Elastic doublet 7 and the interior rigid sleeve of lower elastic monomer 8,
The top of upper elastic monomer 6 is connected to bottom motion frame 2 by upper connecting base 17,
The bottom of lower elastic monomer 8 is connected to fixed frame 1 top by lower connecting base 18,
The buffering direction of directed constraint resilient support assemblies 5 is consistent with the direction of vibration of vibrating motor 4.
Be provided with vertical slideway 19 bottom motion frame 2, upper connecting base 17 to be arranged in vertical slideway and sliding block joint spacing with motion frame 2.
Outer rigid sleeve adopts the outer rigid sleeve of square tube type, and interior rigid sleeve adopts rigid sleeve in square tube type, and interior rigid sleeve rotates staggered being arranged in outer rigid sleeve.
Claims (3)
1. directed constraint resilient mounting jigging conveyer, is characterized in that comprising fixed frame and motion frame,
The top of fixed frame is provided with motion frame, and motion upper rack is provided with conveying screen cloth,
The bottom of motion frame is connected with vibrating motor, driven by vibrating motors motion frame double vibrations,
Directed constraint resilient support assemblies is provided with between fixed frame and motion frame,
Directed constraint resilient support assemblies is separately positioned on front and the rear of vibrating motor direction of vibration,
Directed constraint resilient support assemblies is connected and composed by upper elastic monomer, Elastic doublet, lower elastic monomer,
The structure of upper elastic monomer is: outer rigid sleeve inner chamber is provided with interior rigid sleeve, be uniformly distributed extruding in space between outer rigid sleeve inwall and interior rigid sleeve outer wall and be provided with elastic rubbery body, the outer rigid sleeve of the external support of elastic caoutchouc and interior rigid sleeve;
The structure of Elastic doublet is the outer rigid sleeve of duplex of integration being provided with epicoele, cavity of resorption two inner chambers, interior rigid sleeve is respectively arranged with in each inner chamber, be uniformly distributed extruding in space between outer rigid sleeve inwall and interior rigid sleeve outer wall and be provided with elastic rubbery body, the outer rigid sleeve of elastic caoutchouc external support duplex and interior rigid sleeve;
The structure of lower elastic monomer is: outer rigid sleeve inner chamber is provided with interior rigid sleeve, be uniformly distributed extruding in space between outer rigid sleeve inwall and interior rigid sleeve outer wall and be provided with elastic rubbery body, the outer rigid sleeve of the external support of elastic caoutchouc and interior rigid sleeve;
Be fixedly connected with by upper holder between the interior rigid sleeve of the interior rigid sleeve of upper elastic monomer and the epicoele of Elastic doublet,
Be fixedly connected with by lower fixed frame between the interior rigid sleeve of the cavity of resorption of Elastic doublet and the interior rigid sleeve of lower elastic monomer,
The top of upper elastic monomer is connected to bottom motion frame by upper connecting base,
The bottom of lower elastic monomer is connected to fixed frame top by lower connecting base,
The buffering direction of directed constraint resilient support assemblies is consistent with the direction of vibration of vibrating motor.
2. orientation constraint resilient mounting jigging conveyer according to claim 1, is characterized in that being provided with vertical slideway bottom motion frame, and upper connecting base to be arranged in vertical slideway and sliding block joint spacing with motion frame.
3. orientation constraint resilient mounting jigging conveyer according to claim 1, it is characterized in that outer rigid sleeve adopts the outer rigid sleeve of square tube type, interior rigid sleeve adopts rigid sleeve in square tube type, and interior rigid sleeve rotates staggered being arranged in outer rigid sleeve.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520133934.2U CN204528431U (en) | 2015-03-10 | 2015-03-10 | Directed constraint resilient mounting jigging conveyer |
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CN201520133934.2U CN204528431U (en) | 2015-03-10 | 2015-03-10 | Directed constraint resilient mounting jigging conveyer |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105417028A (en) * | 2015-12-25 | 2016-03-23 | 黄丽 | Machine frame assembly of automatic production vibrating conveyer |
CN105417029A (en) * | 2015-12-25 | 2016-03-23 | 黄丽 | Oscillating rod |
-
2015
- 2015-03-10 CN CN201520133934.2U patent/CN204528431U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105417028A (en) * | 2015-12-25 | 2016-03-23 | 黄丽 | Machine frame assembly of automatic production vibrating conveyer |
CN105417029A (en) * | 2015-12-25 | 2016-03-23 | 黄丽 | Oscillating rod |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150805 Termination date: 20160310 |