Turning supporting rod corrector
By designing a turntable support rod straightener, the lever principle and force-bearing components are used to increase the contact area, solving the problem of poor transmission effect caused by the bending of the turntable support rod. This achieves a fast and labor-saving straightening effect and improves shoe manufacturing efficiency.
Patent Information
- Application Number
- CN202423144259.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-12-19
AI Technical Summary
The existing turntable support rod is prone to bending after prolonged use, resulting in poor transmission performance. Existing correction methods are time-consuming, labor-intensive, and affect shoe manufacturing efficiency.
A turntable support rod straightener is designed. It utilizes the lever principle to rotate the bent turntable support rod 180 degrees through the first and second force-bearing rods, and increases the contact area through the force-bearing components to straighten it to a horizontal state using the lever principle.
The machine can quickly and effortlessly correct bent turntable support rods without stopping the machine, improving shoemaking efficiency.
Smart Images

Figure CN223653346U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to shoemaking field, concretely speaking, a kind of turning car support rod corrector. BACKGROUND
[0002] Turning car is used for conveying the transmission appliance of shoe to be processed, and a plurality of metal material turning car support rods are detachably spaced apart in the width direction of turning car, when turning car is started, the plurality of turning car support rods can move in the same direction, so that the shoe to be processed placed on the turning car support rod is conveyed to the predetermined position.
[0003] When turning car is used for a long time, the turning car support rod is bent downward due to the excessive force on the upper surface, which affects the transmission effect, at this time, the turning car needs to be stopped, the concave part of the turning car support rod is pulled upward to correct the turning car support rod, or the turning car support rod is twisted in a specific direction, so that the deformed part of the turning car support rod is rotated by 180 degrees, from downward concave to upward convex, and then the convex part of the turning car support rod is pressed downward to correct the turning car support rod;The above two methods are not convenient to operate, and the effect of correcting the turning car support rod is poor.In addition, when the turning car is stopped, the turning car support rod is detached from the turning car, and the turning car support rod can also be corrected;But this method consumes a long time, and needs to stop the turning car for operation, which is time-consuming and labor-saving, and affects the shoemaking efficiency. UTILITY MODEL CONTENTS
[0004] To solve the above problems in the prior art, the utility model aims to provide a turning car support rod corrector, which can conveniently correct the bent turning car support rod to a horizontal state without stopping the turning car, ensure the correction effect of the turning car support rod, and improve the shoemaking efficiency.
[0005] To achieve the above purpose, the utility model employs the following technical scheme: a turning car support rod corrector, comprising a corrector body with a length, and a first force rod and a second force rod fixed and arranged on the same side of the corrector body along the length direction of the corrector body.
[0006] As a limitation of the utility model, the turning car support rod corrector further comprises a force component arranged on the second force rod to increase the force area of the second force rod.
[0007] As a limitation of the utility model, the middle part of the force component is a force plate, and the opposite ends of the force plate are vertically fixed with a support plate along the length direction of the second force rod, the distance between the two support plates is less than the length of the second force rod, and the middle part of the two support plates is coaxially provided with a through hole with a diameter larger than the diameter of the second force rod, and the force component is arranged on the second force rod through the through hole.
[0008] As a limitation of the utility model: the stressed part is a hollow cube, two opposite surfaces of the cube are coaxially provided with through holes with diameters larger than that of the second stressed rod, and the cube is arranged on the second stressed rod through the through holes.
[0009] As a limitation of the utility model: the second stressed rod is detachably provided at one end away from the body of the straightener with a limiting plate with a diameter larger than that of the through hole on the stressed part.
[0010] As a limitation of the utility model: the first stressed rod is fixedly provided at the middle part with a ring-shaped protrusion.
[0011] As a limitation of the utility model: the outer wall of the ring-shaped protrusion is provided with an arc-shaped groove along the circumference of the ring-shaped protrusion.
[0012] As a limitation of the utility model: the first stressed rod is fixedly arranged at the first end of the body of the straightener, and the second stressed rod is fixedly arranged on the body of the straightener.
[0013] As a limitation of the utility model: the body of the straightener is in a long rod shape.
[0014] Compared with the prior art, the utility model has the advantages that: the downwardly recessed turning support rod is rotated by 180 degrees, so that the deformed part of the turning support rod changes from downward recess to upward protrusion, and when the turning support rod straightener is tilted to pass through the turning support rod to be straightened, the upper surface of the protruding part of the turning support rod is tightly attached to the lower surface of the second stressed rod, and the lower surface of the turning support rod is tightly attached to the upper surface of the first stressed rod, so that the second stressed rod provides downward force to the protruding part of the turning support rod, thereby straightening the protruding part downward to the horizontal state. Therefore, the turning support rod straightener can conveniently straighten the curved turning support rod without stopping the turning, thereby saving time and effort and improving the shoe-making efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0015] The utility model will be further described in detail below in combination with the drawings and specific embodiments.
[0016] Figure 1 Fig. 1 is a structural schematic view of the utility model embodiment 1;
[0017] Figure 2 Fig. 2 is a schematic view of the top view angle when the utility model embodiment 1 is used.
[0018] In the figure: 1 - straightener body, 2 - first stressed rod, 3 - second stressed rod, 4 - stressed plate, 5 - support plate, 6 - limiting plate, 7 - ring-shaped protrusion, 8 - groove. DETAILED DESCRIPTION
[0019] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the turntable support rod straightener described herein is a preferred embodiment and is only used for illustration and explanation of the present invention, and does not constitute a limitation thereof.
[0020] The directional terms or positional relationships used in this utility model, such as "up," "down," "left," and "right," are based on the positional relationships in the accompanying drawings of this utility model. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or component must have a specific orientation, or that it must be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting the content protected by this utility model.
[0021] A type of turntable support rod straightener, such as Figure 1 As shown, it includes an orthotic body 1 with a length, which is preferably a long rod-shaped structure. Figure 1 In this design, the upper end of the orthodontic body 1 is the first end of the orthodontic body. A first force-bearing rod 2 and a second force-bearing rod 3 are fixedly disposed on the orthodontic body 1, near the first end and at intervals along the length of the orthodontic body 1. Both are fixedly disposed on the same side of the orthodontic body 1 and are rigid rod-shaped structures. In this embodiment, the first force-bearing rod 2 is vertically fixedly disposed on the first end of the orthodontic body, and the second force-bearing rod 3 is vertically fixedly disposed on the orthodontic body 1. After rotating the concave portion of the turntable support rod to an upward convex position, the upper surface of the first force-bearing rod 2 and the lower surface of the second force-bearing rod 3 simultaneously press against the turntable support rod to be corrected, with the lower surface of the second force-bearing rod 3 positioned at the convex portion of the turntable support rod. Pressing down on the second end of the orthodontic body causes the second force-bearing rod 3 to press the convex portion downward, thereby correcting the turntable support rod to a horizontal state.
[0022] The turning vehicle support rod corrector further comprises a force receiving component arranged on the second force receiving rod 3 to increase the force receiving area of the second force receiving rod 3, and the force receiving component has at least one flat structure detachably connected with the second force receiving rod 3, so that the point contact between the second force receiving rod 3 and the turning vehicle support rod is changed into surface contact. Specifically, the middle part of the force receiving component is a flat force receiving plate 4, and flat support plates 5 are vertically and fixedly arranged at opposite ends of the force receiving plate 4 along the length direction of the second force receiving rod 3. The distance between the two support plates 5 is smaller than the length of the second force receiving rod 3, and the middle parts of the two support plates 5 are coaxially provided with through holes with diameters larger than the diameter of the second force receiving rod 3, and the force receiving component is arranged on the second force receiving rod 3 through the through holes. Since the support plates 5 increase the contact area between the second force receiving rod 3 and the turning vehicle support rod, the deformation of the second force receiving rod 3 caused by excessive local force is prevented, the turning vehicle support rod is facilitated to be corrected by the staff, and the use experience is improved. In addition, plate-shaped components can be simultaneously fixedly arranged at the ends of the two support plates 5 away from the force receiving plate 4 to form a square tube structure, which is conducive to improving the stability of the structure of the force receiving component. In another case, the force receiving component is a hollow cube, and the opposite two surfaces of the cube are coaxially provided with through holes with diameters larger than the diameter of the second force receiving rod 3, and the cube is arranged on the second force receiving rod through the through holes.
[0023] A limiting plate 6 with a diameter larger than the through hole on the force receiving component is detachably arranged at the end of the second force receiving rod 3 away from the corrector body 1, so as to prevent the force receiving component from slipping off the second force receiving rod 3 during use. The middle part of the first force receiving rod 2 is fixedly provided with an annular protrusion 7, and a gap is formed between the corrector body 1 and the annular protrusion 7 for the turning vehicle support rod to pass through. When the turning vehicle support rod is corrected, the annular protrusion 7 is simultaneously abutted against the turning vehicle support rod on the side wall close to the corrector body 1 and the upper surface of the first force receiving rod 2, so as to limit the turning vehicle support rod in the gap, thereby improving the use experience. In another case, an arc-shaped groove 8 along the circumference of the annular protrusion 7 is arranged on the outer wall of the annular protrusion 7, and the width of the groove 8 is larger than the width of the turning vehicle support rod. The side wall of the groove 8 is abutted against the lower surface of the turning vehicle support rod to be corrected, so as to disperse the force of the turning vehicle support rod on the first force receiving rod 2 during the correction process, prevent the turning vehicle support rod from directly contacting the first force receiving rod 2, and avoid the deformation of the first force receiving rod 2 caused by excessive force.
[0024] The lengths of the first force receiving rod 2 and the second force receiving rod 3 should not be too long, and preferably, the lengths of the first force receiving rod 2 and the second force receiving rod 3 are both smaller than the distance between the adjacent two turning vehicle support rods on the turning vehicle, so as to avoid the correction of multiple turning vehicle support rods at the same time during the correction process. In addition, a handle is fixedly arranged at the second end of the corrector body, so as to facilitate the operator to hold the corrector body.
[0025] The aforementioned rotating vehicle support rod corrector utilizes the lever principle, and after being tilted through the rotating vehicle support rod to be corrected, the rotating vehicle support rod can be conveniently corrected without stopping the rotating vehicle, thereby saving time and effort and improving the shoe-making efficiency.
[0026] When the present embodiment is used, as shown in Figure 2 wherein the side-by-side straight rod-shaped objects are rotating vehicle support rods, the two ends of the rotating vehicle support rods are fixed on a rotating vehicle (not shown in the figure), and the rotating vehicle support rods are parallel to the ground. First, the downwardly concave rotating vehicle support rod is rotated by 180 degrees, so that the deformed part of the rotating vehicle support rod changes from downward concave to upward convex. The handle of the second end of the corrector body is held, and the first end of the corrector body is lower than the second end of the corrector body in the vertical direction. Then, the upper surface of the first force rod 2 is tightly attached to the lower surface of the rotating vehicle support rod to be corrected, and the lower surface of the force plate 4 is tightly attached to the upper surface of the convex part of the rotating vehicle support rod. The second end of the corrector body is pressed downward, at this time, the force plate 4 will move downward, and generate a downward force on the convex part of the rotating vehicle support rod to be corrected, and the first force rod 2 generates an upward force around the convex part of the rotating vehicle support rod to be corrected, so as to correct the rotating vehicle support rod to the horizontal state, and complete the correction of the rotating vehicle support rod.
Claims
1. A turnbuckle support rod corrector, characterized by: The application relates to an orthosis body with a length, and a first force receiving rod and a second force receiving rod fixedly arranged on the same side of the orthosis body near a first end of the orthosis body and along the length direction of the orthosis body.
2. The turnbuckle support bar orthosis of claim 1, wherein: The application further relates to a force receiving component arranged on the second force receiving rod to increase the force receiving area of the second force receiving rod.
3. The turnbuckle support bar orthosis of claim 2, wherein: The middle part of the force receiving component is a force receiving plate, and opposite ends of the force receiving plate are vertically fixedly provided with support plates, the interval between the two support plates is smaller than the length of the second force receiving rod, and the middle parts of the two support plates are coaxially provided with through holes with diameters larger than the diameter of the second force receiving rod, and the force receiving component is arranged on the second force receiving rod through the through holes.
4. The turnbuckle support bar orthosis of claim 2, wherein: The force receiving component is a hollow cube, and opposite surfaces of the cube are coaxially provided with through holes with diameters larger than the diameter of the second force receiving rod, and the force receiving component is arranged on the second force receiving rod through the through holes.
5. A turnbuckle corrector according to claim 3 or 4, wherein: The end of the second force receiving rod away from the orthosis body is detachably provided with a limiting plate with a diameter larger than the diameter of the through hole on the force receiving component.
6. The turnbuckle support bar orthosis of claim 1, wherein: The middle part of the first force receiving rod is fixedly provided with an annular protrusion.
7. The turnbuckle support bar orthosis of claim 6, wherein: An arc-shaped groove is arranged on the outer wall of the annular protrusion along the circumferential direction of the annular protrusion.
8. The turnbuckle support bar orthosis according to any one of claims 1 to 4, 6, 7, characterized in that: The first force receiving rod is vertically fixedly arranged on the first end of the orthosis body, and the second force receiving rod is vertically fixedly arranged on the orthosis body.
9. The turnbuckle support bar orthosis of claim 8, wherein: The orthosis body is in a long rod shape.