Synchronizing mechanism of drawing die machine

By designing a synchronization mechanism on the stretching die machine, and using the cooperation of the compression mechanism and the longitudinal cutting mechanism, the arching problem of material box during longitudinal cutting is solved, the accurate cutting of the material box is achieved, and the cutting reliability is improved.

CN223224704UActive Publication Date: 2025-08-15CHENGDU WENJIANG HAIKE INSTR FACTORY
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Patent Information

Application Number
CN202422648678.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-08-15
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

During food processing, strips of material boxes are prone to arch when cutting longitudinally, making it difficult to accurately cut longitudinal cutting tools.

Method used

A tension die machine synchronization mechanism is designed, including a chain conveying mechanism, a transverse cutting mechanism, a support mechanism, a longitudinal cutting mechanism and a compression mechanism. Through the compression mechanism, the material box is ensured to be tightened by the junction area of the support mechanism and the output mechanism, and the longitudinal cutting mechanism performs longitudinal cutting on the support mechanism, and the lifting and lowering adjustment component adjusts the height of the pressure bar to ensure the accuracy of cutting.

Benefits of technology

Reliable cutting of material boxes is achieved, ensuring that the longitudinal cutting mechanism accurately cuts the material boxes, avoiding the arching problem of strips of material boxes during the cutting process, and improving the accuracy and reliability of cutting.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of drawing die machines, and particularly relates to a synchronizing mechanism of a drawing die machine. According to the technical scheme, the synchronizing mechanism of the drawing die machine comprises a frame, a chain conveying mechanism used for conveying material boxes is installed in the frame, and a plurality of transverse cutting mechanisms used for transversely cutting off the plate forming material boxes are installed at one end of the frame. The other end of the frame is provided with a supporting mechanism used for supporting the cut strip-shaped material box, the frame is further provided with a longitudinal cutting mechanism used for longitudinally cutting off the strip-shaped material box, and the longitudinal cutting mechanism is arranged on the supporting mechanism in a crossing mode. The output end of the supporting mechanism is provided with an output mechanism for outputting the cut single material boxes. The frame is further provided with a pressing mechanism, and the pressing mechanism is arranged on the junction area of the supporting mechanism and the output mechanism in a crossing mode. The utility model provides the synchronous mechanism of the drawing die machine, which can ensure reliable cutting.
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Description

Technical Field

[0001] The utility model belongs to the technical field of stretching die machines, in particular to a synchronous mechanism of a stretching die machine. Background Art

[0002] During food processing, after loading the interconnected, matrix-arranged material boxes, the boxes are coated. After coating, the boxes need to be cut before being sent to the next process. In existing technology, after cutting the sheet-like material boxes horizontally, the strips are cut longitudinally. This can cause the strips to arch, making it difficult for the longitudinal cutting tool to accurately cut. Utility Model Content

[0003] In order to solve the above problems existing in the prior art, the purpose of the present invention is to provide a stretching die machine synchronization mechanism that ensures reliable cutting.

[0004] The technical solution adopted by this utility model is:

[0005] A synchronous mechanism of a stretching die machine includes a frame, a chain conveying mechanism for conveying material boxes is installed in the frame, a plurality of transverse cutting mechanisms for cutting the plate material boxes horizontally are installed at one end of the frame, a supporting mechanism for supporting the cut strip material boxes is installed at the other end of the frame, a longitudinal cutting mechanism for cutting the strip material boxes longitudinally is also installed on the frame, the longitudinal cutting mechanism is straddled on the supporting mechanism, and an output mechanism for outputting the cut single material box is provided at the output end of the supporting mechanism; a clamping mechanism is also installed on the frame, and the clamping mechanism is straddled in the junction area between the supporting mechanism and the output mechanism.

[0006] The chain conveyor mechanism transports the finished material boxes into the frame. As they pass through the transverse cutting area, the transverse cutting mechanism cuts the finished material boxes into strips. The stripped material boxes are then conveyed to the support mechanism, where a compression mechanism spanning the support mechanism compresses the material boxes. The longitudinal cutting mechanism then cuts the stripped material boxes longitudinally. The conveyor mechanism then discharges the cut individual boxes.

[0007] The clamping mechanism and the longitudinal cutting mechanism of the utility model are both across the supporting mechanism, so that when the longitudinal cutting mechanism performs longitudinal cutting on a plurality of strip material boxes, the clamping mechanism always presses the Lahane bottom mold, ensuring that the plurality of longitudinal cutting knives of the longitudinal cutting mechanism accurately cut the material boxes.

[0008] As a preferred embodiment of the present invention, the compression mechanism includes a pressure strip for compressing the material box. The pressure strip spans the interface between the support mechanism and the output mechanism, with lift adjustment assemblies connected to both ends of the pressure strip. The longitudinal cutting mechanism is located between the two lift adjustment assemblies. The pressure strip spans the interface between the support mechanism and the output mechanism, thereby compressing the material box during longitudinal cutting of the plurality of strips. The lift adjustment mechanism can adjust the height of the pressure strip to ensure that the material box is compressed while also being smoothly transported.

[0009] As a preferred embodiment of the present invention, the lift adjustment assembly includes a bracket fixed to the frame, a plurality of locking sleeves connected to the bracket, a lift adjustment rod housed within the locking sleeves, and a locking handle connected to the locking sleeves for locking the lift adjustment rod. The pressure strip is fixed to the lower end of the lift adjustment rod. The lift adjustment rod can be extended and retracted within the locking sleeves, thereby adjusting the height of the pressure strip. The lifting adjustment rod is locked by the locking handle to ensure the stable position of the pressure strip.

[0010] As a preferred solution of the present invention, both ends of the bead are provided with inclined plates. The inclined plates at the ends of the bead will not interfere with the material box and accurately guide the material box to the bottom of the bead.

[0011] As a preferred embodiment of the present invention, the support mechanism includes a support base mounted on a frame, a position adjustment assembly connected to the support base, and a plurality of support rectangular tubes for supporting the material cassettes connected to the position adjustment assembly. The longitudinal cutting mechanism is arranged across the region where the plurality of support rectangular tubes are located. The position adjustment assembly can accurately adjust the lateral position and height of the support rectangular tubes, thereby adjusting the lateral position and height of the plurality of strip material cassettes, ensuring more accurate and reliable longitudinal cutting of the strip material cassettes.

[0012] As a preferred embodiment of the present invention, a guide ramp is provided at one end of the support rectangular tube facing the transverse cutting mechanism, and the other end of the support rectangular tube extends to the upper side of the output mechanism. The guide ramp can accurately guide the strip material box into the support mechanism to prevent the strip material box from being misplaced within the support mechanism.

[0013] As a preferred embodiment of the present invention, the position adjustment assembly includes an adjustment plate fixed within the support base, the adjustment plate being provided with a transverse chute, within which a plurality of lifting screws are mounted. The other ends of the lifting screws are fixed to the support rectangular tube, and the lifting screws are locked to the adjustment plate via nuts. The lifting screws can slide within the transverse chute, thereby adjusting the transverse position of the support rectangular tube. The lifting screws can extend and retract within the transverse chute and be locked via nuts, thereby adjusting the height of the support rectangular tube. After adjusting the transverse position and height of the support rectangular tube, the position of the material box is accurately adjusted, ensuring the accuracy of longitudinal cutting.

[0014] As a preferred embodiment of the present invention, the output mechanism includes a base frame, on which is mounted an output drive mechanism and a transmission belt. The output end of the output drive mechanism is connected to the driving pulley of the transmission belt. The transmission belt is mounted with a plurality of transverse bars for pushing out entire rows of material boxes. The output drive mechanism drives the transmission belt, and the transverse bars on the transmission belt push out several rows of individual material boxes, achieving accurate output of the material boxes.

[0015] As a preferred embodiment of the present invention, a merging plate for supporting the material box is provided on the upper layer of the transmission belt. The merging plate is fixed to the base frame and is provided with a plurality of longitudinal guide plates. The merging plate can support the material box to prevent it from falling. The longitudinal guide plates guide the material box.

[0016] As a preferred embodiment of the present invention, the longitudinal guide plate comprises a narrow section, a transition section, and a wide section sequentially connected along the conveying direction. The spacing between adjacent narrow sections is large, allowing the cut material boxes to fit accurately between adjacent longitudinal guide plates. The spacing between adjacent wide sections is small, allowing the material boxes to be more accurately positioned, ensuring accurate positioning during delivery.

[0017] The beneficial effects of the utility model are:

[0018] 1. The clamping mechanism and the longitudinal cutting mechanism of the present invention are both arranged across the supporting mechanism, so that when the longitudinal cutting mechanism performs longitudinal cutting on a plurality of material boxes, the clamping mechanism always presses the Lahane bottom mold, ensuring that the plurality of longitudinal cutting knives of the longitudinal cutting mechanism accurately cut the material boxes.

[0019] 2. The lifting screw of this utility model can be extended and retracted in the horizontal slide and locked by a nut, thereby adjusting the height of the support tube. After adjusting the horizontal position and height of the support tube, the position of the material box can be accurately adjusted to ensure the accuracy of longitudinal cutting. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a structural diagram of the utility model;

[0021] Figure 2 It is a structural diagram of the transverse cutting mechanism;

[0022] Figure 3 It is a partial structural diagram of the utility model;

[0023] Figure 4 It is a schematic structural diagram of the supporting mechanism, longitudinal cutting mechanism and pressing mechanism in the first direction;

[0024] Figure 5 It is a schematic structural diagram of the second direction of the supporting mechanism, the longitudinal cutting mechanism and the pressing mechanism;

[0025] Figure 6 It is a structural diagram of the pressing mechanism;

[0026] Figure 7 It is a structural diagram of the longitudinal cutting mechanism;

[0027] Figure 8 It is a structural diagram of the supporting structure;

[0028] Figure 9 It is a structural diagram of the output mechanism.

[0029] In the figure: 1-frame; 2-transverse cutting mechanism; 3-support mechanism; 4-longitudinal cutting mechanism; 5-output mechanism; 6-pressing mechanism; 31-support seat; 32-support rectangular tube; 33-introduction inclined plate; 34-adjustment plate; 35-transverse slide; 36-lifting screw; 51-base; 52-output drive mechanism; 53-transmission belt; 54-transverse baffle; 55-merging plate; 56-longitudinal guide plate; 61-pressing strip; 62-bracket; 63-locking sleeve; 64-lifting adjustment rod; 65-locking handle; 66-tilted plate; 561-narrow section; 562-transition section; 563-wide section. DETAILED DESCRIPTION

[0030] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings herein can be arranged and designed in various different configurations.

[0031] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but rather merely represents selected embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by persons of ordinary skill in the art without inventive effort are within the scope of protection of the present invention. It should be noted that the embodiments of the present invention and the features therein may be combined with each other unless there is a conflict.

[0032] like Figures 1 to 9As shown, the stretching die machine synchronization mechanism of this embodiment includes a frame 1, a chain conveying mechanism for conveying material boxes is installed in the frame 1, a plurality of transverse cutting mechanisms 2 for cutting the plate material boxes horizontally are installed at one end of the frame 1, and a supporting mechanism 3 for supporting the cut strip material boxes is installed at the other end of the frame 1. A longitudinal cutting mechanism 4 for cutting the strip material boxes longitudinally is also installed on the frame 1, and the longitudinal cutting mechanism 4 is straddled on the supporting mechanism 3. The output end of the supporting mechanism 3 is provided with an output mechanism 5 for outputting the cut single material box; a clamping mechanism 6 is also installed on the frame 1, and the clamping mechanism 6 is straddled in the junction area of the supporting mechanism 3 and the output mechanism 5.

[0033] The chain conveyor mechanism transports the finished material boxes into the frame 1. As they pass through the transverse cutting area, the transverse cutting mechanism 2 cuts the finished material boxes into strips. The stripped material boxes are then conveyed to the support mechanism 3. The pressing mechanism 6, which spans the support mechanism 3, compresses the material boxes. The longitudinal cutting mechanism 4 then cuts the stripped material boxes longitudinally. The conveyor mechanism then discharges the cut individual material boxes.

[0034] The clamping mechanism 6 and the longitudinal cutting mechanism 4 of the present invention are both across the supporting mechanism 3, so that when the longitudinal cutting mechanism 4 longitudinally cuts a plurality of strip material boxes, the clamping mechanism 6 always presses the Lahane bottom mold, ensuring that the longitudinal cutting knives of the longitudinal cutting mechanism 4 accurately cut the material boxes.

[0035] Specifically, the compression mechanism 6 includes a pressure bar 61 for compressing the material boxes. This bar 61 spans the interface between the support mechanism 3 and the output mechanism 5. Both ends of the pressure bar 61 are connected to a lifting and adjusting assembly, and the longitudinal cutting mechanism 4 is located between the two lifting and adjusting assemblies. The pressure bar 61 spans the interface between the support mechanism 3 and the output mechanism 5, thereby compressing the material boxes during the longitudinal cutting process. The lifting and adjusting mechanism can adjust the height of the pressure bar 61, ensuring that the material boxes are compressed while also being smoothly transported.

[0036] Specifically, the lift adjustment assembly includes a bracket 62 fixed to the frame 1. Several locking sleeves 63 are connected to the bracket 62. A lift adjustment rod 64 is mounted within the locking sleeves 63. A locking handle 65 is connected to the locking sleeves 63 for locking the lift adjustment rod 64. The holding strip 61 is fixed to the lower end of the lift adjustment rod 64. The lift adjustment rod 64 can be extended and retracted within the locking sleeves 63, thereby adjusting the height of the holding strip 61. The locking handle 65 locks the lift adjustment rod 64, ensuring the stable position of the holding strip 61.

[0037] Furthermore, both ends of the bead 61 are provided with inclined plates 66. The inclined plates 66 at the ends of the bead 61 will not interfere with the material box and accurately guide the material box to the lower part of the bead 61.

[0038] Specifically, the support mechanism 3 includes a support base 31 mounted on the frame 1. A position adjustment assembly is connected to the support base 31. Connected to the position adjustment assembly are several support rectangular tubes 32 for supporting the material boxes. The longitudinal cutting mechanism 4 spans the area where the several support rectangular tubes 32 are located. The position adjustment assembly accurately adjusts the lateral position and height of the support rectangular tubes 32, thereby adjusting the lateral position and height of the several strip material boxes, ensuring more accurate and reliable longitudinal cutting of the strip material boxes.

[0039] The end of the support rectangular tube 32 facing the transverse cutting mechanism 2 is provided with an inlet inclined plate 33, and the other end of the support rectangular tube 32 extends to the upper side of the output mechanism 5. The guide inclined plate can accurately guide the strip material box into the support mechanism 3 to prevent the strip material box from being misplaced in the support mechanism 3.

[0040] The position adjustment assembly includes an adjustment plate 34 fixed within the support base 31. A transverse slot 35 is provided on the adjustment plate 34. Several lifting screws 36 are sleeved within the slots 35. The other ends of the lifting screws 36 are fixed to the support tube 32 and locked to the adjustment plate 34 via nuts. The lifting screws 36 can slide within the slots 35, thereby adjusting the transverse position of the support tube 32. The lifting screws 36 can extend and retract within the slots 35 and be locked via nuts, thereby adjusting the height of the support tube 32. By adjusting the transverse position and height of the support tube 32, the position of the material box is accurately adjusted, ensuring accurate longitudinal cutting.

[0041] Specifically, the output mechanism 5 includes a base frame 51, on which are mounted an output drive mechanism 52 and a transmission belt 53. The output end of the output drive mechanism 52 is connected to the driving pulley of the transmission belt 53. The transmission belt 53 is mounted with a number of transverse bars 54 for pushing out entire rows of material boxes. The output drive mechanism 52 drives the transmission belt 53, and the transverse bars 54 on the transmission belt 53 push out several rows of individual material boxes, achieving accurate output of the material boxes.

[0042] Furthermore, a merging plate 55 is provided above the transmission belt 53 to support the material box. The merging plate 55 is fixed to the base frame 51 and is provided with a plurality of longitudinal guide plates 56. The merging plate 55 supports the material box to prevent it from falling. The longitudinal guide plates 56 guide the material box.

[0043] The longitudinal guide plate 56 comprises a narrow section 561, a transition section 562, and a wide section 563, sequentially connected along the conveying direction. The spacing between adjacent narrow sections 561 is large, allowing the cut material boxes to fit accurately between adjacent longitudinal guide plates 56. The spacing between adjacent wide sections 563 is small, allowing the material boxes to be more accurately positioned, ensuring accurate positioning during delivery.

[0044] The present invention is not limited to the above-mentioned optional implementation methods. Anyone can derive various other forms of products under the inspiration of the present invention. However, no matter what changes are made in the shape or structure, any technical solution that falls within the scope defined by the claims of the present invention shall fall within the scope of protection of the present invention.

Claims

1. A synchronous mechanism for a drawing die, characterized in that: The invention comprises a frame (1), wherein a chain conveying mechanism for conveying a material box is installed in the frame (1), a plurality of transverse cutting mechanisms (2) for transversely cutting the plate material box are installed at one end of the frame (1), a supporting mechanism (3) for supporting the cut strip material box is installed at the other end of the frame (1), a longitudinal cutting mechanism (4) for longitudinally cutting the strip material box is also installed on the frame (1), the longitudinal cutting mechanism (4) is straddled on the supporting mechanism (3), and an output mechanism (5) for outputting the cut single material box is provided at the output end of the supporting mechanism (3); a pressing mechanism (6) is also installed on the frame (1), and the pressing mechanism (6) is straddled at the junction area between the supporting mechanism (3) and the output mechanism (5).

2. A synchronous mechanism for a drawing die according to claim 1, characterized in that: The pressing mechanism (6) includes a pressure strip (61) for pressing the material box. The pressure strip (61) is arranged across the boundary area between the support mechanism (3) and the output mechanism (5). Both ends of the pressure strip (61) are connected to lifting and adjusting components. The longitudinal cutting mechanism (4) is located between the two lifting and adjusting components.

3. A synchronous mechanism for a drawing die according to claim 2, characterized in that: The lifting adjustment assembly comprises a bracket (62), the bracket (62) is fixed on the frame (1), a plurality of locking sleeves (63) are connected to the bracket (62), a lifting adjustment rod (64) is provided inside the locking sleeve (63), a locking handle (65) for locking the lifting adjustment rod (64) is connected to the locking sleeve (63), and a pressure strip (61) is fixed to the lower end of the lifting adjustment rod (64).

4. A synchronous mechanism for a drawing die according to claim 2, characterized in that: Both ends of the pressure strip (61) are provided with inclined plates (66).

5. The synchronous mechanism of a drawing die according to claim 1, characterized in that: The support mechanism (3) comprises a support base (31) mounted on the frame (1), a position adjustment component is connected to the support base (31), and a plurality of support rectangular tubes (32) for supporting the material box are connected to the position adjustment component. The longitudinal cutting mechanism (4) is arranged across the area where the plurality of support rectangular tubes (32) are located.

6. A synchronous mechanism for a drawing die according to claim 5, characterized in that: An introduction inclined plate (33) is provided at one end of the supporting rectangular tube (32) facing the transverse cutting mechanism (2), and the other end of the supporting rectangular tube (32) extends to the upper side of the output mechanism (5).

7. A synchronous mechanism for a drawing die according to claim 5, characterized in that: The position adjustment assembly includes an adjustment plate (34) fixed in a support seat (31), a transverse sliding groove (35) is provided on the adjustment plate (34), a plurality of lifting screws (36) are sleeved in the transverse sliding groove (35), the other end of the lifting screw (36) is fixed to the support rectangular tube (32), and the lifting screw (36) is locked on the adjustment plate (34) by a nut.

8. The synchronous mechanism of a drawing die according to claim 1, characterized in that: The output mechanism (5) comprises a base frame (51), an output drive mechanism (52) and a transmission belt (53) are mounted on the base frame (51), an output end of the output drive mechanism (52) is connected to a driving pulley of the transmission belt (53), and a plurality of transverse blocking rods (54) for pushing out a whole row of material boxes are mounted on the transmission belt (53).

9. A synchronous mechanism for a drawing die according to claim 8, characterized in that: The upper layer of the transmission belt (53) is provided with a merging plate (55) for supporting the material box. The merging plate (55) is fixed on the bottom frame (51). A plurality of longitudinal guide plates (56) are provided on the merging plate (55).

10. A synchronous mechanism for a drawing die according to claim 9, characterized in that: The longitudinal guide plate (56) comprises a narrow section (561), a transition section (562) and a wide section (563) which are sequentially connected along the conveying direction.