A stuffing wrapper transport belt and a stuffing wrapper folding mechanism
By setting up a support strip and wingspan structure on the filling conveyor belt, combined with the folded molded parts driven by the servo motor, the misalignment problem caused by friction between the filling and the pallet is solved, and the stable conveying of the filling and the normal operation of the equipment is achieved.
Patent Information
- Application Number
- CN202010858929.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-08-24
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2040-08-24
AI Technical Summary
The existing filling belt rubs against the pallet at the notch, causing the filling belt to be misaligned and adhered, affecting the normal operation of the equipment.
A support strip structure is arranged on the belt through hole. The support strip is parallel to the transportation direction, the support strip is connected to the through hole, and a wingspan structure is arranged on the support strip to cooperate with the flip shaft and folding molded parts driven by the servo motor to prevent the filling and the skin from being misaligned.
It reduces friction between the filling skin and the pallet, avoids misalignment of the filling skin and sprinkle, and improves the stability of the filling skin conveying and the operation efficiency of the equipment.
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Figure CN111838236B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the field of food processing, and in particular relates to a filling skin transport belt and a filling skin folding mechanism. Background Art
[0002] With the development of science and technology, more and more foods can be quickly produced and processed by machinery. Among them, the processing of stuffed foods is generally carried out by filling tube molding or filling skin after molding. The most efficient way to add stuffing to the filling skin is to add stuffing to the filling skin on the linear transport belt through a stuffing injection mechanism. However, due to the need for molding, it is often necessary to open grooves on the belt for folding the filling skin. Since the filling skin is often soft, it will rub and adhere to the support plate and other structures under the belt through the grooves, causing the filling skin to be misplaced. In severe cases, the filling skin may be rolled into the belt, causing equipment shutdown. At the same time, once the filling skin is misplaced, the filling may fall onto the belt surface. Due to the stickiness of the filling, it will directly affect the subsequent transportation of the entire filling skin system. Summary of the Invention
[0003] The purpose of the present invention is to provide a filling skin transport belt and a filling skin folding mechanism matched therewith, so as to solve the problem of misalignment caused by the filling skin contacting the conveyor belt support plate through the notch on the belt in the existing filling skin transport belt.
[0004] To achieve the above-mentioned purpose, the technical solution of the present invention is: a filling and skin transport belt, including a belt, on which several rows of through holes are evenly arranged, and support strips are provided on the through holes, one end of the support strips is connected to the bottom edge of the through hole, and the other end is connected to the top edge of the through hole.
[0005] The bottom edge of the through hole is perpendicular to the running direction of the conveyor belt.
[0006] The support bar is parallel to the running direction of the transport belt, and one end of the support bar is connected to the midpoint of the bottom edge of the through hole.
[0007] One end of the support bar is connected to the midpoint of the bottom edge of the through hole, and the other end is connected to the top edge of the through hole. The angle between the support bar and the running direction of the transport belt is 1° to 45°.
[0008] The middle part of the support bar bulges upward, and the bulge height is 1 to 5 mm.
[0009] There are several support bars shown, and the support bars are arranged in parallel.
[0010] The supporting bars are two arranged crosswise.
[0011] Wing span structures are integrally connected on both sides of the support bar.
[0012] Both side edges of the wingspan structure do not contact the edges of the through hole.
[0013] The bottom side of the wingspan structure is connected to the bottom edge of the through hole.
[0014] The wingspan structure is provided with a passing notch, which has the support strip as the bottom surface and matches the shape of the pressing ring of the filling skin folding mechanism.
[0015] Positioning points are arranged at four corners of the outer periphery of the through hole.
[0016] A filling wrapper folding mechanism includes a turning shaft driven by a servo motor and a folding forming piece mounted on the turning shaft. The folding forming piece includes an angle plate and a pressing ring connected to the angle plate. The pressing ring is provided with an opening corresponding to a support belt.
[0017] The opening of the pressure ring corresponds to the passing notch of the wing span structure.
[0018] The pressing ring is provided with a plurality of openings. The pressing ring is formed by a plurality of components, and the gaps between the components form the pressing ring openings.
[0019] The components include two side components and several suspended components. The side components are directly fixedly connected to the angle plate. The suspended components include a ring strip and a connecting piece supporting the ring strip. The connecting piece is connected to the angle fixing plate. The ring strips of the two side components and the suspended components together form a pressure ring shape.
[0020] The design principle of the present invention is: a support strip structure is set on the belt through hole to reduce the contact area between the filling skin and the belt conveyor support plate, avoiding the problem of filling skin dislocation caused by friction and filling spilling off the belt due to dislocation. At the same time, the structure is expanded on the basis of the support belt, and the support effect is improved as much as possible through structural optimization. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a structural diagram of Example 1 of the present invention.
[0022] Figure 2 This is a structural diagram of Example 2 of the present invention.
[0023] Figure 3 This is a structural diagram of Example 3 of the present invention.
[0024] Figure 4 This is a structural diagram of Example 4 of the present invention.
[0025] Figure 5 This is a structural diagram of Example 5 of the present invention.
[0026] Figure 6 This is a structural diagram of Example 6 of the present invention.
[0027] Figure 7 This is a structural diagram of Example 7 of the present invention.
[0028] Figure 8 This is a structural diagram of Example 8 of the present invention.
[0029] Figure 9 A state reference diagram is used for the present invention.
[0030] Figure 10 This is a schematic diagram of the pressure ring structure of Example 5 of the present invention. DETAILED DESCRIPTION
[0031] Example 1
[0032] like Figure 1 As shown, a filling skin transport belt includes a belt 1 with several rows of through holes 2 evenly arranged on the belt. The belt is installed on any type of belt conveyor. The through holes on the belt are mainly used for the pressure ring of the filling skin folding mechanism to flip and fold the filling skin. Therefore, in order to ensure that the filling skin is folded in half, the through hole is generally provided with a bottom edge perpendicular to the direction of the transport belt. Positioning points 5 for positioning the filling skin are provided at the outer four corners of the through hole. A support bar 3 is provided on the through hole 2. The support bar 3 is parallel to the running direction of the transport belt and one end is connected to the midpoint of the bottom edge of the through hole; the filling skin folding mechanism is installed on the lower side of the belt conveyor, including a flip shaft 4 driven by a servo motor, and a folding forming part installed on the flip shaft. The folding forming part includes an angle plate 41 and a pressure ring 42 connected to the angle plate. An opening 43 is provided on the pressure ring 42 corresponding to the support belt. The opening cooperates with the support bar to prevent the support bar from affecting the flipping of the folding forming part. Example
[0033] like Figure 2 As shown, a filling skin transport belt comprises a belt 1, on which are evenly provided a plurality of rows of through holes 2, and the belt is installed on a belt conveyor of any type. The through holes on the belt are mainly used for the pressure ring of the filling skin folding mechanism to flip and fold the filling skin, so in order to ensure that the filling skin is folded in half, the through hole is generally provided with a bottom edge perpendicular to the direction of the transport belt, and positioning points for positioning the filling skin are provided at the outer corners of the through hole, and a support bar 3 is provided on the through hole 2, one end of the support bar 3 is connected to the midpoint of the bottom edge, and the other end is connected to the top edge of the through hole 2, and the angle between the support bar and the running direction of the transport belt is 1° to 45°, that is, the support bar is different from the setting of Example 1 and is obliquely set; the filling skin folding mechanism is installed on the lower side of the belt conveyor, and comprises a flip shaft 4 driven by a servo motor, and a folding forming part installed on the flip shaft, the folding forming part comprises an angle plate 41 and a pressure ring 42 connected to the angle plate, and an opening 43 is provided on the pressure ring 42 corresponding to the support belt, and the opening cooperates with the support bar to prevent the support bar from affecting the flipping of the folding forming part. Example
[0034] like Figure 3As shown, in order to ensure that the dough does not rub against the support plate of the belt conveyor to the greatest extent, the middle part of the support bar is slightly raised with a height of 1 to 5 mm. Combined with the positioning points around it, the friction can be further reduced and the effect can be improved. Example
[0035] like Figure 4 As shown, a filling skin transport belt includes a belt 1 with several rows of through holes 2 evenly arranged on the belt. The belt is installed on any type of belt conveyor. The through holes on the belt are mainly used for the pressure ring of the filling skin folding mechanism to flip and fold the filling skin. Therefore, in order to ensure that the filling skin is folded in half, the through hole is generally provided with a bottom edge perpendicular to the direction of the transport belt. Positioning points for positioning the filling skin are provided at the outer four corners of the through hole. Support bars 3 are provided on the through hole 2. There are three support bars 3. The three support bars 3 are arranged in parallel and in the same direction of belt conveyor transportation; the filling skin folding mechanism is installed on the lower side of the belt conveyor, including a flip shaft 4 driven by a servo motor, and a folding forming part installed on the flip shaft. The folding forming part includes an angle plate 41 and a pressure ring 42 connected to the angle plate. Several openings 43 are provided on the pressure ring 42 corresponding to the support belt. The openings 43 cooperate with the support bars to prevent the support bars from affecting the flipping of the folding forming part. The pressure ring is formed by multiple components, and the gap between the components forms a pressure ring opening 43; the components include two side components and several suspended components. The side components are directly fixedly connected to the angle plate. The suspended components include a ring strip and a connecting part that supports the ring strip. The connecting part is connected to the angle fixing plate. The ring strips of the two side side components and the suspended components together constitute the shape of the pressure ring.
[0036] Example 5
[0037] like Figure 5 、 10As shown, a filling skin transport belt includes a belt 1 with several rows of through holes 2 evenly arranged on the belt. The belt is installed on any type of belt conveyor. The through holes on the belt are mainly used for the pressure ring of the filling skin folding mechanism to flip and fold the filling skin. Therefore, in order to ensure that the filling skin is folded in half, the through hole is generally provided with a bottom edge perpendicular to the direction of the transport belt. Positioning points for positioning the filling skin are provided at the outer four corners of the through hole. Support bars 3 are provided on the through hole 2, and the support bars are two cross-arranged ones; the filling skin folding mechanism is installed on the lower side of the belt conveyor, including a flip shaft 4 driven by a servo motor, and a folding forming part installed on the flip shaft. The folding forming part includes an angle plate 41 and a pressure ring 42 connected to the angle plate. Two openings 43 are provided on the pressure ring 42 corresponding to the support belt. The opening 43 cooperates with the support bar to prevent the support bar from affecting the flipping of the folding forming part. The pressure ring is formed by multiple components, and the gap between the components forms a pressure ring opening 43; the components include two side components 51 and a suspended component 52. The side component 51 is directly fixedly connected to the angle plate, and the suspended component 52 includes a ring strip and a connecting part that supports the ring strip. The connecting part is connected to the angle fixing plate. The ring strips of the two side side components and the suspended component together constitute the shape of the pressure ring.
[0038] Example 6
[0039] like Figure 6 As shown, a filling skin transport belt comprises a belt 1, on which are evenly provided a number of through holes 2, the belt being installed on a belt conveyor of any type, the through holes on the belt being mainly used for the pressure ring of the filling skin folding mechanism to flip and fold the filling skin, so in order to ensure that the filling skin is folded in half, the through hole is generally provided with a bottom edge perpendicular to the direction of the transport belt, and positioning points for positioning the filling skin are provided at the outer four corners of the through hole, a support bar 3 is provided on the through hole 2, the support bar 3 is parallel to the running direction of the transport belt, and one end is connected to the midpoint of the bottom edge of the through hole, and a semicircular wingspan structure 31 is integrally connected to both sides of the support bar, and the two side edges of the wingspan structure do not contact the edge of the through hole; the filling skin folding mechanism is installed on the lower side of the belt conveyor, and comprises a flip shaft 4 driven by a servo motor, and a folding forming part installed on the flip shaft, the folding forming part comprises an angle plate 41, a pressure ring 42 connected to the angle plate, and an opening 43 is provided on the pressure ring 42 corresponding to the support belt, and the opening cooperates with the support bar to prevent the support bar from affecting the flipping of the folding forming part.
[0040] Example 7
[0041] like Figure 7As shown, a filling wrap conveying belt comprises a belt 1, on which a plurality of rows of through holes 2 are evenly arranged. The belt is installed on any type of belt conveyor. The through holes on the belt are mainly used for the pressing ring of the filling wrap folding mechanism to flip and fold the filling wrap. Therefore, in order to ensure that the filling wrap is folded in half, the through hole is generally provided with a bottom edge perpendicular to the direction of the conveying belt. Positioning points for positioning the filling wrap are provided at the outer four corners of the through hole. A support bar 3 is provided on the through hole 2. The support bar 3 is parallel to the running direction of the conveying belt, and one end of the support bar 3 is connected to the midpoint of the bottom edge of the through hole to support A triangular wingspan structure 31 is integrally connected to both sides of the lower middle part of the strip, the two side edges of the wingspan structure do not contact the edge of the through hole, and the bottom side edge of the wingspan structure is connected to the bottom edge of the through hole, thereby improving the supporting strength of the wingspan structure; the filling skin folding mechanism is installed on the lower side of the belt conveyor, and includes a flip shaft 4 driven by a servo motor, and a folding forming part installed on the flip shaft. The folding forming part includes an angle plate 41 and a pressure ring 42 connected to the angle plate. An opening 43 is provided on the pressure ring 42 corresponding to the support belt, and the opening cooperates with the support strip to prevent the support strip from affecting the flipping of the folding forming part.
[0042] Example 8
[0043] like Figure 6 As shown, a filling skin transport belt comprises a belt 1, on which a plurality of rows of through holes 2 are evenly arranged. The belt is installed on any type of belt conveyor. The through holes on the belt are mainly used for the pressure ring of the filling skin folding mechanism to flip and fold the filling skin. Therefore, in order to ensure that the filling skin is folded in half, the through hole is generally provided with a bottom edge perpendicular to the direction of the transport belt. Positioning points for positioning the filling skin are provided at the outer four corners of the through hole. A support bar 3 is provided on the through hole 2. The support bar 3 is parallel to the running direction of the transport belt, and one end is connected to the midpoint of the bottom edge of the through hole. A wing span structure is integrally connected on both sides of the support bar. The two side edges of the structure do not contact the edges of the through hole, and a through notch is provided on the wingspan structure. The through notch uses the support bar as the bottom surface (such as a gourd shape or various special-shaped wingspans), which matches the shape of the pressure ring of the filling skin folding mechanism to improve the supporting strength of the support bar; the filling skin folding mechanism is installed on the lower side of the belt conveyor, and includes a flip shaft 4 driven by a servo motor, and a folding forming part installed on the flip shaft. The folding forming part includes an angle plate 41 and a pressure ring 42 connected to the angle plate. An opening 43 is provided on the pressure ring 42 corresponding to the support belt, and the opening cooperates with the support bar to prevent the support bar from affecting the flipping of the folding forming part.
[0044] Example 9
[0045] A filling skin transport belt comprises a belt with several rows of through holes evenly arranged on the belt, and the belt is installed on any type of belt conveyor. The through holes on the belt are mainly used for the pressure ring of the filling skin folding mechanism to flip and fold the filling skin. Therefore, in order to ensure that the filling skin is folded in half, the through hole is generally provided with a bottom edge perpendicular to the direction of the transport belt, and positioning points for positioning the filling skin are provided at the outer four corners of the through hole. A support bar is provided on the through hole, and one end of the support bar is connected to the bottom edge of the through hole, and the other end is connected to the top edge of the through hole, and is arranged obliquely; the filling skin folding mechanism is installed on the lower side of the belt conveyor, and comprises a flip shaft driven by a servo motor, and a folding forming part installed on the flip shaft, and the folding forming part comprises an angle plate and a pressure ring connected to the angle plate. The pressure ring is provided with an opening corresponding to the support belt, and the opening cooperates with the support bar to prevent the support bar from affecting the flipping of the folding forming part.
Claims
1. A filling and skin transport belt, characterized by: It includes a belt with several rows of through holes evenly arranged on it. The through holes on the belt are used for the pressure ring of the filling skin folding mechanism to flip and fold the filling skin. A support bar is provided on the through hole, one end of the support bar is connected to the bottom edge of the through hole, and the other end is connected to the top edge of the through hole. The support bar structure is provided on the through hole of the belt to reduce the contact area between the filling skin and the belt conveyor plate.
2. The filling and skin conveying belt according to claim 1, characterized in that: The bottom edge of the through hole is perpendicular to the running direction of the conveyor belt.
3. The filling and skin conveying belt according to claim 1, characterized in that: The support bar is parallel to the running direction of the transport belt, and one end of the support bar is connected to the midpoint of the bottom edge of the through hole.
4. The filling and skin conveying belt according to claim 1, characterized in that: One end of the support bar is connected to the midpoint of the bottom edge of the through hole, and the other end is connected to the top edge of the through hole. The angle between the support bar and the running direction of the transport belt is 1° to 45°.
5. The filling and skin conveying belt according to claim 1, characterized in that: The middle part of the support bar bulges upward, and the bulge height is 1 to 5 mm.
6. The filling and skin conveying belt according to claim 1, characterized in that: There are several support bars shown, and the support bars are arranged in parallel.
7. The filling and skin conveying belt according to claim 1, characterized in that: The supporting bars are two arranged crosswise.
8. The filling and skin conveying belt according to claim 1, characterized in that: Wing span structures are integrally connected on both sides of the support bar.
9. The filling and skin conveying belt according to claim 8, characterized in that: Both side edges of the wingspan structure do not contact the edges of the through hole.
10. The filling and skin conveying belt according to claim 8, characterized in that: The bottom side of the wingspan structure is connected to the bottom edge of the through hole.
11. The filling and skin conveying belt according to claim 8, characterized in that: The wingspan structure is provided with a passing notch, which has the support strip as the bottom surface and matches the shape of the pressing ring of the filling skin folding mechanism.
12. The filling and skin conveying belt according to claim 1, characterized in that: Positioning points are arranged at four corners of the outer periphery of the through hole.
13. A filling wrapper folding mechanism, characterized by: It is installed on the lower side of the belt conveyor, and several rows of through holes are evenly arranged on the belt of the belt conveyor. The through holes on the belt are used for the pressure ring of the filling skin folding mechanism to flip and fold the filling skin. A support bar is provided on the through hole, and one end of the support bar is connected to the bottom edge of the through hole, and the other end is connected to the top edge of the through hole. A support bar structure is provided on the belt through hole to reduce the contact area between the filling skin and the belt conveyor support plate. The filling skin folding mechanism includes a flip shaft driven by a servo motor, and a folding forming part installed on the flip shaft. The folding forming part includes an angle plate and a pressure ring connected to the angle plate. An opening is provided on the pressure ring corresponding to the support belt, and the opening cooperates with the support bar to prevent the support bar from affecting the flipping of the folding forming part.
14. The filling wrapper folding mechanism according to claim 13, characterized in that: The opening of the pressure ring corresponds to the passing notch of the wing span structure.
15. The filling wrapper folding mechanism according to claim 13, characterized in that: The pressing ring is provided with a plurality of openings. The pressing ring is formed by a plurality of components, and the gaps between the components form the pressing ring openings.
16. The filling wrapper folding mechanism according to claim 15, characterized in that: The components include two side components and several suspended components. The side components are directly fixedly connected to the angle plate. The suspended components include a ring strip and a connecting piece supporting the ring strip. The connecting piece is connected to the angle fixing plate. The ring strips of the two side components and the suspended components together form a pressure ring shape.
Citation Information
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