A conveying device for a shoe production line
By designing the placement unit and the guidance unit in the shoe production line conveying device, the jitter mechanism is used to avoid the accumulation of semi-finished shoes, the problem of low conveying efficiency in the prior art is solved, and a more continuous and efficient conveying process is achieved.
Patent Information
- Application Number
- CN202411560261.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2044-11-04
AI Technical Summary
While the existing shoe production line conveying devices realize continuous conveying, it is difficult to avoid the accumulation of semi-finished shoes, resulting in low conveying efficiency.
A shoe production line conveying device is designed, through the cooperation of multiple sets of placement units and guide units, the placement parts are shaken, driving the processed products to jitter, avoiding stacking, and maintaining the continuity of conveying.
It achieves the avoidance of processing products without interruption and suspension, improves the continuity and efficiency of transportation, and reduces waste of capacity.
Smart Images

Figure CN119284429B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of shoe production and transportation, and in particular to a shoe production line conveying device. Background Art
[0002] In the existing shoe production line, due to the fixed discharge port of the equipment or the human factors of the employees, the semi-finished shoes on the conveying device are very easy to gather, which causes inconvenience to the subsequent processing. In order to avoid the semi-finished shoes from gathering on the conveying device, in the prior art, such as the Chinese patent application No. "CN202122534259.2", a shoe production line conveying device is proposed. The conveying device intermittently pauses the shoes on the upper surface of the shoe guide rail through the shoe feeding component provided, so that the shoes can fall to the shoe feeding component inside the workbench in an orderly interval, thereby avoiding the accumulation of shoes on the shoe feeding belt of the shoe feeding component, and improving the subsequent processing effect;
[0003] Although the above-mentioned equipment can prevent shoes from piling up on the shoe belt of the shoe delivery assembly, its intermittent pause mode causes large gaps on the conveying device and reduces the continuity of the conveying, thus wasting the conveying efficiency.
[0004] Based on the above-mentioned defects in the prior art, this case will propose a new type of conveying device for shoe production, which can reduce accumulation while achieving continuous conveying. Summary of the invention
[0005] The purpose of the present invention is to solve the shortcomings of the prior art such as semi-finished product accumulation and low conveying efficiency, and to propose a shoe production line conveying device.
[0006] In order to achieve the above object, the present invention adopts the following technical solutions:
[0007] A shoe production line conveying device is designed, comprising: a plurality of placement units connected end to end to form a rotary structure, a support frame is provided on both sides of the sliding sleeve of the plurality of placement unit assemblies to play a supporting role, and a guide unit for driving the placement units to deform is provided inside the plurality of placement unit assemblies;
[0008] The placement unit includes two groups of support members that play a role of supporting the main body, a placement member for placing the processed product is sleeved between the two groups of support members, a guide rod for cooperating with the guide unit is fixed to one end surface of the placement member facing the guide unit, and both ends of the two groups of support members are connected to a sliding frame through an elastic member, and the sliding frame is slidably installed inside the support frame;
[0009] The guide unit comprises a plurality of guide plates, which are connected end to end through a connecting plate to form a splicing structure with an undulating angle, and the guide plates are in sliding contact with the guide rods.
[0010] Preferably, a fixing frame is fixedly mounted on the lower end of the guide plate, and at least two groups of fixing shafts are integrally formed on the lower end of the fixing frame, and the fixing shafts of two adjacent groups of the fixing frames are fixed by an insertion rod unit.
[0011] Preferably, the plug rod unit includes two groups of first plug rods and two groups of second plug rods, the first plug rods and the second plug rods are slidably plugged in, and the outer ends of the first plug rods and the second plug rods are each provided with a fixing sleeve for being threadedly connected to the fixed shaft.
[0012] Preferably, the outer end surface of one group of first plug rods is fixedly sleeved with a first clamping piece, and the outer end surface of another group of the first plug rods is rotatably mounted with a knob, the knob is threadedly connected to the outer end surface of a group of the second plug rods, the outer sliding sleeve of the knob is provided with a second clamping piece, and the second clamping piece is movably clamped with the first clamping piece.
[0013] Preferably, at least one group of sliding holes is penetrated downward on the upper end surface of the fixing frame, a sliding rod is slidably inserted inside the sliding hole, a contact plate is rotatably installed on the upper end of the sliding rod, a telescopic device is transmission-installed on the lower end of the sliding rod, and the contact plate is in sliding contact with the lower end of the guide rod.
[0014] Preferably, the placement piece is a rigid structure.
[0015] Preferably, two groups of sliding holes are provided, and the sliding rods are rotatably connected to two ends of the contact plate respectively.
[0016] Preferably, the placement piece is a software structure.
[0017] Preferably, two groups of the guide plates and the connecting plates are arranged opposite to each other, the two groups of the guide plates are fixed by the fixing frame, and the guide rod slides between the two groups of the guide plates.
[0018] Preferably, a first rolling member is rotatably mounted on the outer peripheral end surface of the guide rod located on one side of the guide plate, and a second rolling member is rotatably mounted on the lower end of the guide rod.
[0019] The shoe production line conveying device proposed by the present invention has the following beneficial effects:
[0020] Through the cooperation between the placement unit and the guide unit, the placement pieces in the placement unit can vibrate, thereby driving the processed products on the placement pieces to vibrate, so as to avoid the accumulation of processed products and achieve a dispersion effect. Moreover, the realization of this function does not require the placement unit to work intermittently, making the transportation more continuous and reducing the waste of transportation capacity.
[0021] The contact plate can further improve the shaking effect of the placed piece, and the placed piece can select different material structures according to the needs, thereby improving the dispersion effect on the processed products;
[0022] Through the provided guiding unit, the guiding unit can freely adjust the angle according to the demand to improve the applicability to different usage environments. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 A schematic diagram of the three-dimensional structure of the main body;
[0024] Figure 2 The schematic diagram of the explosion dismantling structure of the main body;
[0025] Figure 3 is a schematic diagram of the three-dimensional structure of the support frame;
[0026] Figure 4 is a schematic diagram of the three-dimensional structure of the contact plate;
[0027] Figure 5 It is a three-dimensional and detailed structural diagram of the rod insertion unit;
[0028] Figure 6 is a schematic diagram of the three-dimensional structure of the guide unit;
[0029] Figure 7 It is a multi-view structural diagram of the local structure of the guiding unit;
[0030] Figure 8 A schematic diagram of the multi-view structure of the placement unit.
[0031] In the figure:
[0032] 1. guide plate; 101. connecting plate; 102. fixing frame; 103. fixing shaft; 104. sliding hole;
[0033] 2. First plug rod; 201. Second plug rod; 202. Fixing sleeve; 203. First clamping piece; 204. Knob; 205. Second clamping piece;
[0034] 3. Sliding rod; 301. Contact plate; 302. Telescopic device;
[0035] 4. Support member; 401. Placement member; 402. Guide rod; 403. First rolling member; 404. Second rolling member; 405. Elastic member; 406. Sliding frame;
[0036] 5. Support frame; 501. Drive frame. DETAILED DESCRIPTION
[0037] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0038] Reference Figure 1-8 , here is an example of how the subject is implemented:
[0039] A shoe production line conveying device comprises a plurality of placement units connected end to end to form a rotary structure, and a support frame 5 is provided on both sides of the plurality of placement unit assemblies for supporting. Figure 3 Two groups of oppositely arranged annular structures are fixed on the upper end of the support frame 5, and annular notches are provided at the opposite ends of the two groups of annular structures. The two ends of the placement unit slide inside the two groups of annular notches respectively, and a guide unit for driving the placement unit to deform is provided inside the assembly of multiple groups of placement units;
[0040] refer to Figure 8 The placement unit includes two groups of support members 4 that play a role of supporting the main body. A placement member 401 for placing the processed product is sleeved between the two groups of support members 4. A guide rod 402 for cooperating with the guide unit is fixed to the end surface of the placement member 401 facing the guide unit. Both ends of the two groups of support members 4 are connected to a sliding frame 406 through an elastic member 405, wherein the elastic member 405 is a multi-stage telescopic rod with a spring, so that the distance between the support member 4 and the sliding frame 406 can be elastically changed. The sliding frame 406 is used to be slidably installed inside the support frame 5 to play a supporting role;
[0041] refer to Figure 6 , 7 The guiding unit includes a plurality of guide plates 1, which are connected end to end through a connecting plate 101 to form a splicing structure with an undulating angle. The guide plates 1 slide and abut against the guide rods 402, so as to drive the placement piece 401 to move and cause the processed products placed on the placement piece 401 to shake and vibrate, thereby reducing the aggregation of the processed products.
[0042] Reference Figure 2 , 4 , 5, 6, 7, here are examples of implementation methods of the guide unit:
[0043] The lower end of the guide plate 1 is fixedly mounted with a fixing frame 102 by means of bolts or the like, and at least two sets of fixing shafts 103 are integrally formed at the lower end of the fixing frame 102, and the fixing shafts 103 of two adjacent sets of fixing frames 102 are fixed by an insertion rod unit;
[0044] Regarding the implementation of the plunger unit: Figure 5The plug-in rod unit includes two groups of first plug-in rods 2 and two groups of second plug-in rods 201, the first plug-in rods 2 and the second plug-in rods 201 are slidably plugged, and the outer ends of the first plug-in rods 2 and the second plug-in rods 201 are provided with fixing sleeves 202 for being threadedly connected to the fixing shaft 103, and the plug-in rod unit is used to control the angle between the two adjacent groups of guide plates 1, so that it can be adjusted according to the use requirements;
[0045] Furthermore, a first clamping member 203 is fixedly sleeved on the outer end surface of a group of first plug rods 2, and a knob 204 is rotatably installed on the outer end surface of another group of first plug rods 2. The knob 204 is threadedly connected to the outer end surface of a group of second plug rods 201. When the knob 204 is rotated, the telescopic length between the first plug rod 2 and the second plug rod 201 can be controlled. A second clamping member 205 is slidably sleeved on the outer periphery of the knob 204. The second clamping member 205 is movably engaged with the first clamping member 203. When in use, the second clamping member 205 is pushed to disengage from the first clamping member 203. At this time, the second clamping member 205 can be rotated and the knob 204 can be driven to rotate, so the first clamping member 203 and the second clamping member 205 play a locking role.
[0046] Furthermore, a limited sliding groove is provided between the second clamping member 205 and the knob 204, and a spring is elastically abutted between the second clamping member 205 and the knob 204, so that the second clamping member 205 and the knob 204 can only slide horizontally but not rotate, and the second clamping member 205 can automatically lock with the first clamping member 203 under the push of the spring;
[0047] Regarding the implementation method of the expansion function of the fixing frame 102: Figure 4 , 7 , at least one group of sliding holes 104 are downwardly penetrated through the upper end surface of the fixing frame 102, and a sliding rod 3 is slidably inserted inside the sliding hole 104. A contact plate 301 is rotatably installed on the upper end of the sliding rod 3, and a telescopic device 302 is installed on the lower end of the sliding rod 3. The contact plate 301 can slide and contact with the lower end of the guide rod 402, so that the contact plate 301 pushes the guide rod 402 to move longitudinally, thereby driving the placement piece 401 to vibrate, thereby improving the dispersion effect of the processed products, wherein the telescopic device 302 can be a cylinder or an electric telescopic rod. In this embodiment, the placement piece 401 can be set as a soft or rigid structure, and the guide rod 402 only generates a small amplitude vibration;
[0048] Furthermore, the difference from the above embodiment is that: two groups of sliding holes 104 are provided, and the sliding rods 3 are rotatably connected to the two ends of the contact plate 301 respectively, and the contact plate 301 can be formed into a slope by controlling the telescopic device 302, thereby driving the guide rod 402 to be lifted evenly. In this embodiment, the placement member 401 can be set as a soft structure, and the guide rod 402 causes the placement member 401 to produce a large deformation, so that the processed product on the surface of the placement member 401 is turned over;
[0049] Regarding the implementation method for improving stability: two groups of guide plates 1 and connecting plates 101 can be arranged opposite to each other, the two groups of guide plates 1 are formed and fixed by a fixing frame 102, and the guide rod 402 slides between the two groups of guide plates 1.
[0050] Reference Figure 1 , 2 , 8. Here is an example of how to place the unit:
[0051] A first rolling member 403 is rotatably mounted on the outer end surface of the guide rod 402 located on one side of the guide plate 1 to reduce the friction between the guide rod 402 and the guide plate 1. A second rolling member 404 is rotatably mounted on the lower end of the guide rod 402 to slide against the contact plate 301 and reduce friction.
[0052] Reference Figure 2 , 3 Here is an example of an implementation of the support frame 5:
[0053] A driving frame 501 is fixedly installed on one end of the outer side of the support frame 5 by means of bolts, and a driving mechanism such as a motor and a transmission belt for driving the placement unit to move is fixedly installed inside the driving frame 501 .
[0054] Last addition:
[0055] The sliding frame 406 can be a chain structure, so that the main body of the support member 4 can be bent, and the support frame 5 can limit the deformation shape of the chain, and the support member 4 of the chain structure is easy to be driven by existing devices such as sprockets, so as to promote the rotation and movement of multiple sets of placement unit assemblies;
[0056] The connecting plate 101 is a soft structure, and both ends of the connecting plate 101 are respectively plugged into the inside of two adjacent sets of guide plates 1 and fixed by bolts and other components, so that the angle between the two adjacent sets of guide plates 1 can be changed;
[0057] The fixing sleeve 202 can be fixed to the support frame 5 by common fixing structures such as bolts and welding frames, so that the support frame 5 supports the guide unit.
[0058] Based on the above-mentioned embodiments, when assembling:
[0059] Reference Figure 6 , 7The two groups of guide plates 1 can be assembled through the connecting plate 101. One group of guide plates 1 is vertically arranged, and the other group of guide plates 1 is inclined and forms an acute angle structure with the vertically arranged guide plates 1. When the guide rod 402 contacts the inclined guide plate 1, it will drive the placement piece 401 to move and make the elastic piece 405 elastically contract. When the guide rod 402 passes over the inclined guide plate 1, the placement piece 401 will move quickly under the push of the elastic piece 405 to achieve a shaking effect.
[0060] Based on the above workflow, the vertically arranged guide plate 1 and the inclinedly arranged guide plate 1 can be selected to have the required length according to the requirements. In order to reduce the friction loss between the guide rod 402 and the guide plate 1, the angle between the vertically arranged guide plate 1 and the inclinedly arranged guide plate 1 should be between 45° and 90°.
[0061] It should be noted that the vertically arranged guide plate 1 is not completely perpendicular to the travel direction of the placement unit, but is slightly inclined toward the travel direction of the placement unit to match the travel speed of the placement unit.
[0062] Based on the above implementation examples, when used:
[0063] Driven by the driving mechanism in the driving frame 501, the multiple placement units rotate along the support frame 5, and the guide rods 402 provided in the placement units contact the guide plate 1. The guide plate 1 causes the guide rods 402 to move, and the guide rods 402 drive the placement pieces 401 to move synchronously. At this time, the elastic pieces 405 extend and retract to generate shaking.
[0064] When the telescopic device 302 on the fixing frame 102 is set as a group, the placement piece 401 can be set as a soft or rigid structure. When the guide rod 402 passes through the contact plate 301, the telescopic device 302 is activated and drives the contact plate 301 to produce longitudinal displacement, thereby driving the guide rod 402 to make the placement piece 401 vibrate, thereby improving the dispersion effect.
[0065] When the telescopic device 302 located on the fixed frame 102 is set as two groups, the placement piece 401 can be set as a soft structure. When the guide rod 402 passes through the contact plate 301, the telescopic device 302 starts and drives the contact plate 301 to form an inclined structure, causing the placement piece 401 to undergo a larger deformation and causing the processed product on the surface of the placement piece 401 to flip.
[0066] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A shoe production line conveying device, characterized in that: include: A plurality of groups of placement units connected end to end to form a rotary structure, the sliding sleeves on both sides of the plurality of placement unit assemblies are provided with support frames (5) that play a supporting role, and a guide unit for driving the placement units to deform is provided inside the plurality of placement unit assemblies; The placement unit comprises two groups of support members (4) that play a role of supporting the main body, a placement member (401) for placing the processed product is sleeved between the two groups of support members (4), a guide rod (402) for cooperating with the guide unit is fixed on one end surface of the placement member (401) facing the guide unit, and both ends of the two groups of support members (4) are connected to a sliding frame (406) through an elastic member (405), and the sliding frame (406) is slidably installed inside the support frame (5); The guide unit comprises a plurality of groups of guide plates (1), wherein the plurality of groups of guide plates (1) are connected end to end via a connecting plate (101) to form a splicing structure with an undulating angle, and the guide plates (1) are in sliding contact with the guide rods (402); A fixing frame (102) is fixedly mounted on the lower end of the guide plate (1), and at least one group of sliding holes (104) is penetrated downwardly through the upper end surface of the fixing frame (102), and a sliding rod (3) is slidably inserted inside the sliding hole (104), and a contact plate (301) is rotatably mounted on the upper end of the sliding rod (3), and a telescopic device (302) is transmission-mounted on the lower end of the sliding rod (3), and the contact plate (301) is in sliding contact with the lower end of the guide rod (402).
2. A shoe production line conveying device according to claim 1, characterized in that: At least two groups of fixed shafts (103) are integrally formed at the lower end of the fixed frame (102), and the fixed shafts (103) of two adjacent groups of the fixed frames (102) are fixed by an insertion rod unit.
3. A shoe production line conveying device according to claim 2, characterized in that: The plug rod unit comprises two groups of first plug rods (2) and two groups of second plug rods (201), the first plug rods (2) and the second plug rods (201) being slidably plugged, and the outer ends of the first plug rods (2) and the second plug rods (201) are each provided with a fixing sleeve (202) for being threadedly connected to the fixing shaft (103).
4. A shoe production line conveying device according to claim 3, characterized in that: A first clamping piece (203) is provided on a fixed sleeve (202) on the peripheral end surface of one group of first insertion rods (2); a knob (204) is rotatably mounted on the peripheral end surface of another group of the first insertion rods (2); the knob (204) is threadedly connected to a peripheral end surface of a group of the second insertion rods (201); a second clamping piece (205) is provided on a peripheral sliding sleeve of the knob (204); and the second clamping piece (205) is movably clamped to the first clamping piece (203).
5. A shoe production line conveying device according to claim 1, characterized in that: The placement piece (401) is a rigid structure.
6. A shoe production line conveying device according to claim 5, characterized in that: The sliding holes (104) are provided with two groups, and the sliding rods (3) are rotatably connected to the two ends of the contact plate (301) respectively.
7. A shoe production line conveying device according to claim 1, characterized in that: The placement piece (401) is a software structure.
8. A shoe production line conveying device according to claim 2, characterized in that: Two groups of the guide plates (1) and the connecting plates (101) are arranged opposite to each other, the two groups of the guide plates (1) are fixed by the fixing frame (102), and the guide rod (402) slides between the two groups of the guide plates (1).
9. A shoe production line conveying device according to claim 1, characterized in that: A first rolling member (403) is rotatably mounted on the outer end surface of the guide rod (402) located on one side of the guide plate (1), and a second rolling member (404) is rotatably mounted on the lower end of the guide rod (402).
Citation Information
Patent Citations
Continuous sand blasting device for hardware
CN117506744A
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Shoe production line conveying device
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