Wobble plate for full-automatic coil machine
By using the support block, support net, and limit rod structure of the swing plate in the fully automatic coil machine, the problem of insulating varnish falling off during coil processing is solved, ensuring that the coil does not short-circuit and improving the coil's performance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2026-03-27
AI Technical Summary
During the manufacturing process of coils, friction can easily cause the insulating varnish to peel off, leading to short circuits.
The fully automatic coil machine uses a swivel plate, which includes a support block, a support net, and a limiting rod. The support net is made up of staggered connecting rods. The limiting rod is inserted into the hollow part of the coil for initial limiting. The support net provides vertical support. The limiting component prevents the coil from rotating. The locking block limits the same-name end or the same polarity end.
It effectively prevents coils from colliding with each other, avoids the insulation varnish from falling off, and improves the performance of the coils.
Smart Images

Figure CN224045767U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a coil processing technical field, concretely relates to a full -automatic coil machine is with swing tray. BACKGROUND
[0002] Coil usually refers to the ring -shaped wire winding, the most common coil application has: motor, inductance, transformer and loop antenna etc. The coil is in processing, because needs assembly line operation production, makes the coil in processing needs to utilize swing tray to carry to, in order to carry out next step process. At present, the swing tray for carrying the coil in the specific use process of cooperation coil, the sliding coil is easy to fall off the insulating paint on the outer wall of coil and cause short circuit phenomenon when using. SUMMARY
[0003] The utility model discloses to solve the problem that the insulating paint on the outer wall of coil falls off and causes short circuit when using when the coil is carried in the swing tray, provides a full -automatic coil machine is with swing tray, can prevent the insulating paint from falling off when the coil is placed in the swing tray and the mutual bump of coil.
[0004] The utility model discloses a full -automatic coil machine is with swing tray, which comprises a support block, a support net and a plurality of limiting rods.
[0005] The utility model discloses a full -automatic coil machine is with swing tray, which comprises a support block, a support net and a plurality of limiting rods.
[0006] The support block is provided with a containing groove in the top.
[0007] The support net is arranged on the inner wall surface of the containing groove of the support block, and comprises a plurality of connecting rods.
[0008] The plurality of limiting rods are arranged on the top of the support net, and the adjacent limiting rods are arranged at intervals.
[0009] The plurality of limiting members are arranged on the top of the support net, and the plurality of limiting members correspond to the plurality of limiting rods one by one.
[0010] Optionally, the limiting member comprises a first connecting rod, a clamping block and a second connecting rod.
[0011] One end of the first connecting rod is arranged on the top of the support net.
[0012] The clamping block is arranged on the other end of the first connecting rod, and the clamping block is arranged on the end face of the adjacent limiting rod.
[0013] Optionally, the side wall surface of the support block is internally provided with a plurality of first transmission cavities, and the inner wall surface of the support block located in the accommodating groove is provided with a plurality of first adjusting holes and a plurality of second adjusting holes, each first transmission cavity is communicated with the accommodating groove through one of the first adjusting holes and one of the second adjusting holes, and the outer wall surface of the support block is provided with a first through hole communicated with the plurality of first transmission cavities; the interior of each first transmission cavity is provided with a first adjusting mechanism for simultaneously adjusting the movement of the limiting piece on one side of each limiting rod on the same transverse straight line.
[0014] Optionally, the first adjusting mechanism comprises:
[0015] a first adjusting rod rotatably connected with the outer wall surface of the support block through the first through hole, one end of the first adjusting rod located in the first transmission cavity being provided with a first main bevel gear;
[0016] a first rotating rod located in the interior of the first transmission cavity and rotatably connected with the inner wall surface of the support block located in the interior of the first transmission cavity, the outer wall surface of the first rotating rod being provided with a first secondary bevel gear, the first secondary bevel gear being engaged with the first main bevel gear; the outer wall surface close to both ends of the first rotating rod being provided with a first external thread;
[0017] a first horizontal rod provided with a first screw hole rotatably connected with the first rotating rod on the side wall surface located in the first transmission cavity, the outer wall surface of the first horizontal rod located in the accommodating groove being provided with a plurality of first sliding grooves, the plurality of first sliding grooves being distributed along the central axis direction of the first horizontal rod, and the other end of the first horizontal rod being slidably connected with the inner wall surface of the support block located in the accommodating groove;
[0018] a second horizontal rod provided with a second screw hole rotatably connected with the first rotating rod on the side wall surface located in the first transmission cavity, the outer wall surface of the second horizontal rod located in the accommodating groove being provided with a plurality of second sliding grooves, the plurality of second sliding grooves being distributed along the central axis direction of the second horizontal rod, and the other end of the second horizontal rod being slidably connected with the inner wall surface of the support block located in the accommodating groove;
[0019] wherein one end of the first connecting rod in each limiting piece is slidably connected with the first horizontal rod through the first sliding groove, or one end of the first connecting rod in each limiting piece is slidably connected with the second horizontal rod through the second sliding groove; the first horizontal rod and the second horizontal rod are located on both sides of each limiting rod, and the first horizontal rod and the second horizontal rod move towards or away from each other.
[0020] Optionally, a plurality of second transmission cavities are formed in the other side wall surface of the support block, and a plurality of third adjusting holes and a plurality of fourth adjusting holes are formed in the inner wall surface of the support block in the accommodating groove, each second transmission cavity is communicated with the accommodating groove through one of the third adjusting holes and one of the fourth adjusting holes, and a second through hole is formed in the outer wall surface of the support block and communicated with the plurality of second transmission cavities; a second adjusting mechanism is arranged in each second transmission cavity and used for simultaneously adjusting the movement of the limiting piece on one side of each limiting rod on the same vertical straight line of the central axis.
[0021] Optionally, the second adjusting mechanism comprises:
[0022] a second adjusting rod rotatably connected with the outer wall surface of the support block through the second through hole, and having a second main bevel gear arranged at one end of the second adjusting rod in the second transmission cavity;
[0023] a second rotating rod arranged in the second transmission cavity and rotatably connected with the inner wall surface of the support block in the second transmission cavity, and having a second secondary bevel gear arranged on the outer wall surface of the second rotating rod, the second secondary bevel gear being engaged with the second main bevel gear; and a second external thread arranged on the outer wall surface of the second rotating rod close to both ends of the second rotating rod;
[0024] a first vertical rod having a third screw hole rotatably connected with the second rotating rod formed in the side wall surface of the second transmission cavity, and having a plurality of third sliding grooves formed in the outer wall surface of the first vertical rod in the accommodating groove, the plurality of third sliding grooves being distributed along the central axis direction of the first vertical rod, and the other end of the first vertical rod being slidably connected with the inner wall surface of the support block in the accommodating groove;
[0025] a second vertical rod having a fourth screw hole rotatably connected with the first rotating rod formed in the side wall surface of the first transmission cavity, and having a plurality of fourth sliding grooves formed in the outer wall surface of the second vertical rod in the accommodating groove, the plurality of fourth sliding grooves being distributed along the central axis direction of the second vertical rod, and the other end of the second vertical rod being slidably connected with the inner wall surface of the support block in the accommodating groove;
[0026] wherein each limiting piece further comprises a second connecting rod, one end of the second connecting rod being connected with the outer wall surface of the clamping block, and the other end of the second connecting rod being slidably connected with the first vertical rod through the third sliding groove, or the second connecting rod in each limiting piece having one end slidably connected with the second vertical rod through the fourth sliding groove; the first vertical rod and the second vertical rod being arranged on both sides of each limiting rod, and the first vertical rod and the second vertical rod moving towards or away from each other.
[0027] Optionally, a plurality of first scale lines and a plurality of second scale lines are arranged on the outer wall surface of the support block, the zero scale line of each first scale line being located at the central axis of each first adjusting rod, and the zero scale line of each second scale line being located at the central axis of each second adjusting rod.
[0028] Optionally, a hand-held part is provided on the outer wall surface of the support block.
[0029] The beneficial effects of this utility model are:
[0030] When the coil is placed into the receiving groove at the top of the support block, the hollow part of the coil corresponds to the limiting rod in the receiving groove, that is, the limiting rod is inserted into the hollow part of the coil. At this time, the limiting rod can initially limit the coil. Then, a support mesh is set on the inner wall of the support block located in the receiving groove. The bottom of each limiting rod is set on the top of the support mesh, that is, the support mesh can support multiple limiting rods. The support mesh is composed of multiple connecting rods, and the connecting rods are staggered to create gaps between the connecting rods. These gaps allow impurities attached to the surface of the coil placed in the receiving groove to fall to the bottom of the receiving groove, preventing the coil from contacting impurities and being damaged. In other words, the support mesh provides vertical support for the coil. Finally, multiple limiting components are set on the top of the support net. The number of limiting components is the same as the number of limiting rods, and each limiting component is located on one side of each limiting rod. That is, after the coil is placed into the receiving groove, the limiting component can limit the coil in the circumferential direction to prevent the coil from rotating and causing collisions at the end positions of adjacent coils, which would lead to a decrease in the performance of the coil. Attached Figure Description
[0031] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0032] Figure 1 This is a top view schematic diagram of the tilting plate for a fully automatic coil machine according to this utility model;
[0033] Figure 2 for Figure 1 A top view diagram of the first and second adjustment mechanisms has been added.
[0034] Figure 3 This is a three-dimensional structural diagram of the limiting component;
[0035] Figure 4 for Figure 2 A magnified view of a portion of point A in the middle;
[0036] Figure 5 for Figure 2 A magnified view of a portion of point B in the middle;
[0037] Figure 6 for Figure 2A local enlarged schematic view at C;
[0038] Figure 7 A schematic view of the position structure of the limiting member between the first adjusting mechanism and the second adjusting mechanism.
[0039] Reference signs:
[0040] 1-support block, 10-receiving groove, 11-first transmission cavity, 12-first through hole, 13-first adjusting hole, 14-second adjusting hole, 15-second transmission cavity, 16-second through hole, 17-third adjusting hole, 18-fourth adjusting hole;
[0041] 2-supporting net, 3-limiting rod;
[0042] 4-limiting member, 40-clamping block, 41-clamping hole, 42-first connecting rod, 43-second connecting rod;
[0043] 5-first adjusting mechanism, 50-first adjusting rod, 51-first main bevel gear, 52-first rotating rod, 53-second bevel gear, 54-first horizontal rod, 55-second horizontal rod;
[0044] 6-second adjusting mechanism, 60-second adjusting rod, 61-second main bevel gear, 62-second rotating rod, 63-second bevel gear, 64-first vertical rod, 65-second vertical rod;
[0045] 7-handheld part. DETAILED DESCRIPTION
[0046] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0047] The following disclosure provides many different embodiments or examples for implementing different structures of the present application. In order to simplify the disclosure of the present application, the components and settings of specific examples are described below. Of course, they are only examples, and the purpose is not to limit the present application.
[0048] The embodiments of the application will be described in detail below with reference to the accompanying drawings.
[0049] Embodiment
[0050] Referring to Figures 1-7 As shown in the drawings, the embodiment discloses a full-automatic coil machine swing tray, which comprises a supporting block 1, a containing groove 10 is formed on the top of the supporting block 1, a supporting net 2 is arranged on the inner wall of the containing groove 10 of the supporting block 1, the supporting net 2 comprises a plurality of connecting rods, the connecting rods are arranged in a staggered manner, gaps are formed between the connecting rods, when the coil is placed in the containing groove 10, if impurities fall into the containing groove 10, the gaps can prevent the coil from being affected by the impurities and being damaged. A plurality of limiting rods 3 are arranged on the inner bottom of the containing groove 10 of the supporting block 1, each limiting rod 3 is arranged vertically to the inner bottom of the supporting block 1 along the central axis of the limiting rod 3, and the adjacent limiting rods 3 are arranged at intervals. When the coil is placed in the containing groove 10, the hollow part of the coil is aligned with the limiting rod 3, the limiting rod 3 is inserted into the hollow part of the coil, and the coil is limited, at this time, gaps are formed between the outer walls of the adjacent coils, the gaps can prevent the coils from colliding with each other and causing the insulating paint on the outer walls to be damaged. Finally, a plurality of limiting pieces 4 are arranged on the top of the supporting net 2, the number of the limiting pieces 4 is consistent with the number of the limiting rods 3, and each limiting piece 4 is located on one side of each limiting rod 3. When the coil is located on the limiting rod 3 in the containing groove 10, the two end parts of the coil, that is, the same name end or the same polarity end, may rotate with the coil, in the process of rotation, for some coils with long same name end or same polarity end, the end parts of the adjacent coils may collide, which causes the use effect of the end parts of the coils to be reduced. The limiting piece 4 can limit the same name end or the same polarity end of the coil and prevent the coil from rotating.
[0051] The limiting piece 4 comprises a first connecting rod 42 and a clamping block 40, one end of the first connecting rod 42 is fixedly connected to the outer wall of the connecting rod in the supporting net 2, and the other end is provided with the clamping block 40. The clamping block 40 is provided with a clamping groove on the outer wall of the adjacent limiting rod 3, that is, when the coil is placed on the limiting rod 3 in the containing groove 10, the same name end or the same polarity end of the coil can be simultaneously placed in the clamping groove of the clamping block 40, the same name end or the same polarity end of the coil is limited by the clamping block 40, the coil on the limiting rod 3 is prevented from rotating and causing the end parts of the adjacent coils to collide, and the use performance of the coil is prevented from being affected. It is worth noting that in the embodiment, there is only one limiting piece 4 on one side of the limiting rod 3, but in fact, the limiting piece 4 is not limited to being arranged on one side of the limiting rod 3, and 2-4 limiting pieces 4 can be arranged around the first limiting rod 3 and distributed along the central axis of the first limiting rod 3 as the rotating shaft. The number of the limiting pieces 4 can better limit the same name end or the same polarity end of the coil.
[0052] Further, a plurality of first transmission cavities 11 are formed in the inner side wall surface of the support block 1, and the first transmission cavities 11 are spaced apart and not connected. A plurality of first through holes 12 are formed in the outer wall surface of the support block 1, the number of the first through holes 12 is consistent with the number of the first transmission cavities 11, and each first through hole 12 is connected with the corresponding first transmission cavity 11. A plurality of first adjusting holes 13 and a plurality of second adjusting holes 14 are respectively formed in the inner wall surface of the support block 1 located in the accommodating groove 10, wherein each first transmission cavity 11 is connected with the accommodating groove 10 through a first adjusting hole 13 and a second adjusting hole 14. A first adjusting mechanism 5 is arranged in the first transmission cavity 11, the first adjusting mechanism 5 adjusts the position of the limiting piece 4 in the accommodating groove 10 through the first adjusting hole 13 and the second adjusting hole 14, and this part of the limiting piece 4 is the limiting piece 4 near the limiting rod 3 with the center axis in the same straight line, which can drive the clamping block 40 to move and adapt to different sizes of the coil limiting.
[0053] The first adjusting mechanism 5 comprises a first adjusting rod 50, a first rotating rod 52, a first main bevel gear 51, a first auxiliary bevel gear 53, a first cross rod 54 and a second cross rod 55. The first adjusting rod 50 is rotatably connected to the side wall surface of the support block 1 through the first through hole 12, and one end of the first adjusting rod 50 is located inside the first transmission cavity 11. The first main bevel gear 51 is arranged at the end of the first adjusting rod 50 located inside the first transmission cavity 11. The first rotating rod 52 is rotatably connected to the inner wall surface of the support block 1 located inside the first transmission cavity 11. The first auxiliary bevel gear 53 is arranged on the outer wall surface of the first rotating rod 52 and meshes with the first main bevel gear 51. That is, when the first adjusting rod 50 is rotated, the first adjusting rod 50 drives the first main bevel gear 51 to rotate, and the first main bevel gear 51 drives the first rotating rod 52 to rotate through the first auxiliary bevel gear 53. The first cross rod 54 is arranged inside the first transmission cavity 11. A first screw hole is formed in the side wall surface close to one end of the first cross rod 54. A first external thread is arranged on the outer wall surface close to both ends of the first rotating rod 52, so that one end of the first rotating rod 52 can be threadedly connected to the first cross rod 54. The other end of the first cross rod 54 extends into the accommodating groove 10 through the first adjusting hole 13 and is slidably connected to the other opposite inner wall surface of the support block 1 located inside the accommodating groove 10. That is, the first cross rod 54 can drive itself to move along the central axis of the first rotating rod 52 when the first rotating rod 52 is rotated. It is worth noting that the first adjusting hole 13 can limit the first cross rod 54 to avoid the first cross rod 54 rotating together with the first rotating rod 52. In addition, the second cross rod 55 is arranged inside the first transmission cavity 11. A second screw hole is formed in the side wall surface close to one end of the second cross rod 55, so that the first external thread on the outer wall surface of the first rotating rod 52 can be threadedly connected to the second cross rod 55. The other end of the second cross rod 55 extends into the accommodating groove 10 through the second adjusting hole 14 and is slidably connected to the other opposite inner wall surface of the support block 1 located inside the accommodating groove 10. That is, when the first adjusting rod 50 is rotated, the first rotating rod 52 is driven to rotate through the meshing of the first main bevel gear 51 and the first auxiliary bevel gear 53. The rotation of the first rotating rod 52 drives the first cross rod 54 and the second cross rod 55 at both ends to move, thereby adjusting the position of the clamping block 40 and adapting to coils of different sizes.In addition, a plurality of first sliding grooves are formed on the outer wall surface of the first cross rod 54 and are distributed along the central axis direction of the first cross rod 54, and a plurality of second sliding grooves are formed on the outer wall surface of the second cross rod 55 and are distributed along the central axis direction of the second cross rod 55, so that the other end of the first connecting rod 42 in the limiting piece 4 can be connected with the first cross rod 54 through the first sliding groove or connected with the second cross rod 55 through the second sliding groove. It should be noted here that at this time, one end of the first connecting rod 42 in the limiting piece 4 is not arranged on the outer wall surface of the connecting rod in the supporting net 2, but the position of one end of the first connecting rod 42 is changed. In addition, the first cross rod 54 and the second cross rod 55 are arranged to meet the requirement that the clamping blocks 40 are also distributed in a staggered manner on both sides of the plurality of limiting rods 3.
[0054] A plurality of second transmission cavities 15 are formed in the other side wall surface of the supporting block 1, and the plurality of second transmission cavities 15 are spaced apart and not connected. A plurality of second through holes 16 are formed on the outer wall surface of the supporting block 1, the number of the second through holes 16 is consistent with the number of the second transmission cavities 15, and each second through hole 16 is connected with each corresponding second transmission cavity 15. A plurality of third adjusting holes 17 and a plurality of fourth adjusting holes 18 are respectively formed on the other inner wall surface of the containing groove 10 of the supporting block 1, wherein each second transmission cavity 15 is connected with the inside of the containing groove 10 through a third adjusting hole 17 and a fourth adjusting hole 18. A second adjusting mechanism 6 is arranged in the second transmission cavity 15, and the second adjusting mechanism 6 adjusts the movement of the plurality of limiting pieces 4 in the containing groove 10 through the third adjusting hole 17 and the fourth adjusting hole 18. The part of the limiting pieces 4 is the limiting piece 4 near the limiting rod 3 with the same straight line. It should be noted that the limiting rods 3 on the same straight line are crossed with each other, that is, the direction of movement of the clamping block 40 adjusted by the first adjusting mechanism 5 is different from the direction of movement of the clamping block 40 adjusted by the second adjusting mechanism 6. This is based on the fact that when the number of limiting pieces 4 near a limiting rod 3 increases, the positions of the limiting pieces 4 can be adjusted by the first adjusting mechanism 5 and the second adjusting mechanism 6 respectively, so as to adapt to different sizes of coils.
[0055] The second adjusting mechanism 6 comprises a second adjusting rod 60, a second rotating rod 62, a second main bevel gear 61, a second secondary bevel gear 63, a first vertical rod 64 and a second vertical rod 65. The second adjusting rod 60 is rotatably connected with the other side wall surface of the supporting block 1 through the second through hole 16, one end of the second adjusting rod 60 is located inside the second transmission cavity 15, and the second main bevel gear 61 is arranged at the end of the second adjusting rod 60 located inside the second transmission cavity 15. The second rotating rod 62 is rotatably connected with the inner wall surface of the supporting block 1 located inside the second transmission cavity 15, and the second secondary bevel gear 63 meshing with the second main bevel gear 61 is arranged on the outer wall surface of the second rotating rod 62, that is, by rotating the second adjusting rod 60, the second adjusting rod 60 drives the second main bevel gear 61 to rotate, and the second main bevel gear 61 drives the second rotating rod 62 to rotate through the meshing second secondary bevel gear 63. The first vertical rod 64 is arranged inside the second transmission cavity 15, a third screw hole is arranged on the side wall surface close to one end of the first vertical rod 64, a second external thread is arranged on the outer wall surface close to both ends of the second rotating rod 62, so that one end of the second rotating rod 62 can be threadedly connected with the first vertical rod 64 through the thread connection between the second external thread and the third screw hole. The other end of the first vertical rod 64 extends to the inside of the accommodating groove 10 through the third adjusting hole 17 and is slidably connected with the other opposite inner wall surface of the supporting block 1 located inside the accommodating groove 10, that is, the first vertical rod 64 can drive the first vertical rod 64 to move along the central axis direction of the first rotating rod 52 under the condition that the second rotating rod 62 rotates, and it is worth noting that the third adjusting hole 17 can limit the first vertical rod 64 to avoid the first vertical rod 64 rotating together with the second rotating rod 62. In addition, the second vertical rod 65 is also arranged inside the second transmission cavity 15, a fourth screw hole is arranged on the side wall surface close to one end of the second vertical rod 65, so that the second external thread on the outer wall surface of the second rotating rod 62 can be threadedly connected with the second vertical rod 65 through the fourth screw hole. The other end of the second vertical rod 65 extends to the inside of the accommodating groove 10 through the fourth adjusting hole 18 and is slidably connected with the other opposite inner wall surface of the supporting block 1 located inside the accommodating groove 10, that is, when the second adjusting rod 60 rotates, the second rotating rod 62 is driven to rotate through the meshing of the second main bevel gear 61 and the second secondary bevel gear 63, and the rotation of the second rotating rod 62 can drive the first vertical rod 64 and the second vertical rod 65 at both ends to move, thereby realizing the position adjustment of the clamping block 40 and adapting to coils of different sizes.Moreover, a plurality of third sliding grooves are formed on the outer wall surface of the first vertical rod 64, and a plurality of fourth sliding grooves are formed on the outer wall surface of the second vertical rod 65, wherein the third sliding grooves are spaced apart along the central axis direction of the first vertical rod 64, and the fourth sliding grooves are spaced apart along the central axis direction of the second vertical rod 65, and the limiting piece 4 further comprises a second connecting rod 43, one end of the second connecting rod 43 is connected to the outer wall surface of the clamping block 40, and the other end is slidably connected to the first vertical rod 64 through the third sliding groove, or is slidably connected to the second vertical rod 65 through the fourth sliding groove. It is worth noting that the first vertical rod 64 and the second vertical rod 65 are not in the same horizontal plane as the first horizontal rod 54 and the second horizontal rod 55, so as to avoid mutual collision and realize the adjustment of the clamping block 40, that is, by adjusting the first adjusting rod 50 and the second adjusting rod 60 respectively, the adjustment of the clamping block 40 can be realized, so as to adapt to coils of different sizes.
[0056] In order to be more convenient to adjust according to the size of the coil, a plurality of first scale lines and a plurality of second scale lines are arranged on the outer wall surface of the support block 1, the number of the first scale lines is consistent with the first adjusting rod 50, and the zero scale line of the first scale line is located at the central axis of the first adjusting rod 50; the number of the second scale lines is consistent with the second adjusting rod 60, and the zero scale line of the second scale line is located at the central axis of the second adjusting rod 60, so as to facilitate the adjustment of the first adjusting rod 50 and the second adjusting rod 60. In addition, a handheld portion is arranged on one of the outer wall surfaces of the support block 1, so as to facilitate the taking and placing of the support block 1.
[0057] Finally, it should be noted that: the above is only a preferred embodiment of the present application, and is not used to limit the present application. For those skilled in the art, the present application can have various changes and variations, and in the case of no conflict, the embodiments of the present application and the features in the embodiments can be arbitrarily combined with each other. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A full-automatic coil machine disc swing, characterized in that, The utility model provides a kind of coil supporting device, including: Support block, top is provided with accommodating groove; Support net, it is located in the inner wall surface of the support block in accommodating groove, the support net includes multiple connecting rods, multiple connecting rods are staggered; Multiple limiting rods, each limiting rod is located in the top of the support net, and adjacent limiting rods are spaced apart; Multiple limiting pieces, each limiting piece is located in the top of the support net, multiple limiting pieces and multiple limiting rods one-to-one correspond, and each limiting piece is located on one side of each limiting rod.
2. The full-automatic coiling machine swing tray according to claim 1, characterized in that, The limiting piece includes: First connecting rod, one end of the first connecting rod is located in the top of the support net; Block, it is located in the other end of the first connecting rod, the block is provided with the socket on the end face of adjacent limiting rod, for coil limiting.
3. The full-automatic coiling machine swing tray according to claim 2, characterized in that, The inner wall surface of the side wall of the support block is provided with multiple first transmission cavities, and the inner wall surface of the support block in the accommodating groove is provided with multiple first adjusting holes and multiple second adjusting holes, each first transmission cavity is communicated with the accommodating groove by one of the first adjusting holes and one of the second adjusting holes, and the outer wall surface of the support block is provided with a first through hole communicated with the multiple first transmission cavities;The inner part of each first transmission cavity is provided with a first adjusting mechanism for simultaneously adjusting the limiting piece on one side of each limiting rod on the same horizontal line of the central axis to move.
4. The full-automatic coiling machine swing tray according to claim 3, characterized in that, The first adjusting mechanism includes: First adjusting rod, rotationally connected with the outer wall surface of the support block through the first through hole, one end of the first adjusting rod located in the first transmission cavity is provided with a first main bevel gear; First rotary rod, located in the inner part of the first transmission cavity, and rotationally connected with the inner wall surface of the support block in the inner part of the first transmission cavity, the outer wall surface of the first rotary rod is provided with a first secondary bevel gear, and the first secondary bevel gear is engaged with the first main bevel gear;The outer wall surface close to both ends of the first rotary rod is provided with a first external thread; First horizontal rod, a first screw hole rotationally connected with the first rotary rod is formed in the side wall surface of the first transmission cavity, a plurality of first sliding grooves are formed in the outer wall surface of the first horizontal rod in the accommodating groove, and the plurality of first sliding grooves are distributed along the central axis direction of the first horizontal rod, and the other end of the first horizontal rod is slidingly connected with the inner wall surface of the support block in the accommodating groove; Second horizontal rod, a second screw hole rotationally connected with the first rotary rod is formed in the side wall surface of the first transmission cavity, a plurality of second sliding grooves are formed in the outer wall surface of the second horizontal rod in the accommodating groove, and the plurality of second sliding grooves are distributed along the central axis direction of the second horizontal rod, and the other end of the second horizontal rod is slidingly connected with the inner wall surface of the support block in the accommodating groove; Wherein, one end of the first connecting rod in each limiting piece is slidingly connected with the first horizontal rod through the first sliding groove, or one end of the first connecting rod in each limiting piece is slidingly connected with the second horizontal rod through the second sliding groove;The first horizontal rod and the second horizontal rod are located on both sides of each limiting rod, and the first horizontal rod and the second horizontal rod move towards or away from each other.
5. The full-automatic coiling machine swing tray according to claim 4, characterized in that, Another side wall surface of the support block is internally provided with a plurality of second transmission cavities, and a plurality of third adjusting holes and a plurality of fourth adjusting holes are provided on the inner wall surface of the support block in the accommodating groove, each of the second transmission cavities is communicated with the accommodating groove through one of the third adjusting holes and one of the fourth adjusting holes, and a second through hole communicated with the plurality of second transmission cavities is provided on the outer wall surface of the support block; the interior of each of the second transmission cavities is provided with a second adjusting mechanism for simultaneously adjusting the movement of the limiting piece on one side of each of the limiting rods on the same vertical straight line of the central axis.
6. The full-automatic coiling machine swing tray according to claim 5, characterized in that, The second adjusting mechanism comprises: A second adjusting rod is rotationally connected with the outer wall surface of the support block through the second through hole, and one end of the second adjusting rod located in the second transmission cavity is provided with a second main bevel gear; A second rotating rod is located in the interior of the second transmission cavity and rotationally connected with the inner wall surface of the support block located in the interior of the second transmission cavity, the outer wall surface of the second rotating rod is provided with a second secondary bevel gear, and the second secondary bevel gear is engaged with the second main bevel gear; the outer wall surface close to both ends of the second rotating rod is provided with a second external thread; A first vertical rod is provided with a third threaded hole rotationally connected with the second rotating rod on the side wall surface in the second transmission cavity, the outer wall surface of the first vertical rod located in the accommodating groove is provided with a plurality of third sliding grooves, and the plurality of third sliding grooves are distributed along the central axis direction of the first vertical rod, and the other end of the first vertical rod is slidingly connected with the inner wall surface of the support block located in the accommodating groove; A second vertical rod is provided with a fourth threaded hole rotationally connected with the first rotating rod on the side wall surface in the first transmission cavity, the outer wall surface of the second vertical rod located in the accommodating groove is provided with a plurality of fourth sliding grooves, and the plurality of fourth sliding grooves are distributed along the central axis direction of the second vertical rod, and the other end of the second vertical rod is slidingly connected with the inner wall surface of the support block located in the accommodating groove; Each of the limiting pieces further comprises a second connecting rod, one end of the second connecting rod is connected with the outer wall surface of the clamping block, and the other end of the second connecting rod is slidingly connected with the first vertical rod through the third sliding groove, or one end of the second connecting rod in each of the limiting pieces is slidingly connected with the second vertical rod through the fourth sliding groove; the first vertical rod and the second vertical rod are located on both sides of each of the limiting rods, and the first vertical rod and the second vertical rod move towards or away from each other.
7. The full-automatic coiling machine swing tray according to claim 6, characterized in that, The outer wall surface of the support block is provided with a plurality of first scale lines and a plurality of second scale lines, and the zero scale line of each of the first scale lines is located at the central axis of each of the first adjusting rods; and the zero scale line of each of the second scale lines is located at the central axis of each of the second adjusting rods.
8. The full-automatic coiling machine swing tray according to claim 7, characterized in that, The outer wall surface of the support block is provided with a hand holding portion.