Paint conveying device for insulator steel foot
By designing the guide rail and pallet assembly, and combining elastic components and buffer components, the positional error problem of the insulator steel feet when moving on the chain conveyor line was solved, achieving precise pallet positioning and stable conveying, thereby improving the processing yield and equipment stability.
Patent Information
- Application Number
- CN202511277312.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-09
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2045-09-09
AI Technical Summary
In the existing technology, when the steel feet of the insulator move on the chain conveyor line, the position of the pallet is incorrect due to the gaps and wear of the chain links, which affects the processing accuracy and yield.
The design incorporates a guide rail and pallet assembly, including a base, floating section, positioning section, and abutment section. The pallet position is adjusted using elastic elements and guide bolts, and combined with a buffer assembly and cylinder drive, it achieves precise pallet positioning and cushioning, reducing impact force.
It improves the positioning accuracy of the pallet assembly, reduces processing errors caused by pallet deviation, and enhances the processing yield and stability of the insulator steel feet, especially protecting the service life of the elastic components during high-temperature baking.
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Figure CN120790414B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of insulator processing equipment, in particular to an insulator steel leg painting conveying device. BACKGROUND
[0002] The content of this part only provides background information related to the present application, which may not constitute prior art.
[0003] An insulator is a key component specially designed for power systems, and its core function is to provide a reliable electrical insulation barrier between high-voltage conductors and grounded support structures while bearing and transmitting huge mechanical loads. An insulator usually includes a glass cover, a steel leg, and a steel cap. The glass cover is used to provide insulation, the steel leg is used to fix the insulator to the support structure, and the steel cap is used to connect the wire.
[0004] In the insulator steel leg painting processing system, the steel leg is transferred through the chain conveying line in the processing station. The structure of the chain conveying line includes a guide rail, a chain, and a tray. The chain is laid along the guide rail, and the tray is slidingly connected to the guide rail. The tray and the chain are connected, and the tray is moved along the guide rail by the chain.
[0005] However, in the above related technology, there are the following defects. Due to the installation gap between the chain links, the connection gap between the chain and the tray, and the wear and tear during use, the displacement of the chain driving the tray to move has errors. In the case of no error, the left and right sides of the tray reach the stop position at the same time in the moving direction of the tray. In the case of error, the left and right sides of the tray may not reach the stop position at the same time, which may cause the position of the workpiece arranged on the tray relative to the processing station to have errors, and the processing equipment cannot correctly process the workpiece, thereby reducing the yield. SUMMARY
[0006] To solve the above technical problems, the purpose of the present application is to provide an insulator steel leg painting conveying device, which can improve the positioning accuracy of the tray assembly of the chain conveying line and improve the yield.
[0007] The purpose of the present application is achieved by the following technical solutions:
[0008] The utility model provides an insulator steel foot paint conveying device, which comprises guide rails, a tray assembly, a driving assembly, a positioning part and an abutting part, wherein the guide rails are provided with two parallel guide rails; the tray assembly comprises a bottom support and a floating part, the bottom support is slidably arranged on the guide rails along the length direction of the guide rails, the floating part is slidably arranged on the top of the bottom support along the length direction of the guide rails, the bottom support is provided with a first elastic element, one end of the first elastic element is connected with the bottom support, and the other end is connected with the floating part, the floating part is provided with a through groove for placing the steel foot along the length direction of the guide rails, the through groove is provided with two parallel through grooves, and the width of the through groove is matched with the middle section of the steel foot; the driving assembly is used for driving the tray assembly to move on the guide rails; the positioning part is arranged on the floating part along the length direction of the guide rails, and one end of the positioning part protrudes from the floating part; and the abutting part is arranged on the guide rails and used for abutting with the protruding end of the positioning part, the guide rails are provided with a driving part used for driving the abutting part to approach or move away from the positioning part.
[0009] In some possible embodiments, the floating part is provided with guide holes on both sides along the length direction of the guide rails, the top of the bottom support is provided with guide bolts in the vertical direction, the guide bolts are slidably arranged in the guide holes, and the guide bolts are gap-fitted with the guide holes.
[0010] In some possible embodiments, the floating part is provided with a mounting part fixedly arranged along the length direction of the through groove, the mounting part is arranged on the outer side of the two through grooves away from each other, the positioning part is slidably arranged in the mounting part along the length direction of the mounting part, and the mounting part is provided with a buffer assembly, one end of the buffer assembly is drivingly connected with the positioning part, and the other end is drivingly connected with the mounting part.
[0011] In some possible embodiments, the buffer assembly comprises a sliding part and a second elastic element, the top of the mounting part is provided with a sliding groove along the length direction of the mounting part, the sliding part is slidably arranged in the sliding groove along the length direction of the sliding groove, the sliding part is provided with a plurality of sliding parts, the second elastic element is arranged between adjacent two sliding parts, and the two ends of the second elastic element are connected with the two sliding parts respectively.
[0012] In some possible embodiments, the mounting part is provided with an elastic assembly, the elastic assembly comprises a supporting part and an elastic part, one end of the supporting part and the elastic part is connected, and the other end is arranged on adjacent two sliding parts respectively, the elastic assembly is provided with a plurality of elastic assemblies, the number of the elastic assemblies is half of the number of the sliding parts, and the gap between adjacent two elastic assemblies is used for accommodating the steel foot.
[0013] In some possible embodiments, an axle body is arranged on the sliding part, an axle sleeve is arranged on the supporting part and the elastic part, and the axle sleeve is rotatably sleeved on the axle body.
[0014] In some possible embodiments, a first side of the supporting part is arranged on a side facing the elastic part, a second side of the supporting part is arranged on a side away from the elastic part, a through hole is arranged on the elastic part, an end of the elastic part away from the sliding part is provided with a bending segment, the bending segment penetrates into the through hole from the first side and penetrates out of the through hole from the second side, and an end of the bending segment is provided with a limiting part which is used to abut against a side of the supporting part close to the elastic part to prevent the elastic part from separating from the supporting part.
[0015] In some possible embodiments, a baffle is fixedly arranged on the floating part along a length direction of the mounting part, an accommodation cavity is formed between the baffle and the floating part, the mounting part is located in the accommodation cavity, a cover plate is rotatably arranged on the baffle along a length direction of the baffle, and a heat insulation layer is arranged on a side of the baffle and the cover plate close to the mounting part.
[0016] In some possible embodiments, a fixing part is slidably arranged in the sliding groove, the fixing part is located between the sliding part and the abutting part, a second elastic member is arranged between the fixing part and the sliding part, and a fixing member is arranged on the fixing part and used to limit a position of the fixing part in the sliding groove.
[0017] In some possible embodiments, a gas cylinder is arranged on the guide rail, a cylinder body of the gas cylinder is fixedly arranged on the guide rail, and an output rod of the gas cylinder is fixedly connected with the abutting part.
[0018] In conclusion, the technical scheme of the embodiment of the present application has at least the following advantages and beneficial effects:
[0019] 1. In actual production process, due to the existence of errors, the tray assembly deviates during movement, assuming that the left side is in front and the right side is in back, before the tray assembly reaches the specified position, the abutting part moves to the front side of the positioning part, with the continuous movement of the bottom support part, the left positioning part abuts against the abutting part, and then the bottom support part moves forward by a distance, at this time, the first elastic member is compressed, and under the action of the first elastic member, the left positioning part can be stationary relative to the abutting part, the right positioning part continues to move forward under the driving of the bottom support part, until the right positioning part abuts against the abutting part, and finally the left and right sides of the tray are flush, thereby improving the positioning accuracy of the tray assembly.
[0020] 2. The guide bolt is arranged in the guide hole, the floating part can be connected to the bottom support part, the guide hole is arranged as a strip-shaped hole with a length direction parallel to the movement direction of the tray assembly, so that the positions of the floating part and the bottom support part in the front-back direction can be adjusted.
[0021] 3. The elastic component can buffer the floating part, reducing the risk of excessive impact force when the abutting part and the positioning part collide, thereby causing the steel foot to disengage from the through slot. Meanwhile, under the action of the elastic component, when the positioning part contacts the abutting part, the elastic part and the second elastic member jointly buffer the positioning part, reducing the risk of the floating part directly colliding with the bottom support part.
[0022] 4. The accommodating cavity is used to protect the elastic component. The steel foot needs to be placed in a high-temperature environment for baking processing after painting. Placing the elastic component in a high-temperature environment can cause the elastic recovery force of the elastic component to decrease. When the sliding part of the elastic component is separated, the elastic part and the support part retract into the accommodating cavity. Under the action of the heat insulation layer in the accommodating cavity, the risk of damage to the elastic component in a high-temperature environment is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is a schematic diagram of the overall structure of the embodiment of the application.
[0024] Figure 2 It is a schematic diagram of the buffer assembly of the embodiment of the application.
[0025] Figure 3 It is Figure 2 A enlarged view of part A in FIG.
[0026] Figure 4 It is Figure 2 A enlarged view of part B in FIG.
[0027] Figure 5 It is a schematic diagram of the elastic component of the embodiment of the application
[0028] Figure 6 It is Figure 5 A enlarged view of part C in FIG.
[0029] FIG. 1, guide rail; 11, chain; 2, tray assembly; 21, bottom support part; 22, floating part; 23, first elastic member; 24, first connecting part; 25, second connecting part; 26, guide hole; 27, guide bolt; 3, positioning part; 4, abutting part; 41, air cylinder; 5, through slot; 51, steel foot; 6, mounting part; 61, sliding groove; 62, fixed part; 63, fixing member; 7, buffer assembly; 71, sliding part; 72, second elastic member; 73, shaft body; 8, elastic component; 81, support part; 82, elastic part; 83, shaft sleeve; 84, through hole; 85, curved section; 86, limiting part; 9, baffle; 91, accommodating cavity; 92, cover plate. DETAILED DESCRIPTION
[0030] In order to make the purposes, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some but not all of the embodiments of the present application. The components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations.
[0031] The following description refers to the accompanying drawings of the present application. Figures 1 to 6 The present application is further described in detail.
[0032] A kind of insulator steel foot paint conveying device, comprising: guide rail 1, tray assembly 2, drive assembly, positioning part 3 and abutting part 4.
[0033] Referring to Figure 1 , guide rail 1 is provided with two, two guide rails 1 are arranged parallel to each other.
[0034] Referring to Figure 1 , tray assembly 2 includes bottom support part 21 and floating part 22, bottom support part 21 is slidably arranged on guide rail 1 along the length direction of guide rail 1, floating part 22 is slidably arranged on the top of bottom support part 21 along the length direction of guide rail 1, first elastic member 23 is arranged on bottom support part 21, one end of first elastic member 23 is connected with bottom support part 21, and the other end is connected with floating part 22.
[0035] Wherein, referring to Figure 1 , as an embodiment of the present application, first elastic member 23 is set as spring, two first connecting parts 24 are fixedly arranged on bottom support part 21, and two second connecting parts 25 are correspondingly fixedly arranged on floating part 22, two first connecting parts 24 and two second connecting parts 25 are arranged one by one, and correspondingly, first elastic member 23 is also provided with two, one end of first elastic member 23 is fixedly connected with first connecting part 24, and the other end is fixedly connected with second connecting part 25.
[0036] Referring to Figure 1 And Figure 2 , floating part 22 is provided with through slot 5 for placing steel foot 51 along the length direction of guide rail 1, the through slot 5 is provided with two, two through slots 5 are arranged parallel to each other, and the width of the through slot 5 is matched with the middle section of the steel foot 51.
[0037] Through slot 5 is used for arranging steel foot 51 on floating part 22, so that floating part 22 can carry steel foot 51 to move, steel foot 51 is a structure with one side large and one side small, the small end of steel foot 51 is inserted into through slot 5 from top to bottom, the large end of steel foot 51 cannot pass through through slot 5, so that steel foot 51 can be fixed in through slot 5.
[0038] As an embodiment of the present application, a driving assembly is used to drive the tray assembly 2 to move on the guide rail 1, which is not shown in the figure. A chain 11 is arranged on the guide rail 1, and the driving assembly can be correspondingly arranged in the form of a motor chain wheel adapted to the chain 11, which belongs to the prior art. The bottom support part 21 is fixedly connected with the chain 11 by driving the chain wheel and the chain 11 combination by the motor, and those skilled in the art can correspondingly adopt the technical solutions in the prior art, which will not be described here.
[0039] With reference to Figure 1 and Figure 2 , the positioning part 3 is arranged on the floating part 22 along the length direction of the guide rail 1, and one end of the positioning part 3 protrudes from the floating part 22.
[0040] With reference to Figure 1 and Figure 2 , the abutting part 4 is arranged on the guide rail 1, and the abutting part 4 is used to abut against the protruding end of the positioning part 3. A driving part is arranged on the guide rail 1, and the driving part is used to drive the abutting part 4 to move close to or away from the positioning part 3.
[0041] With reference to Figure 1 and Figure 2 , a pneumatic cylinder 41 is arranged on the guide rail 1, the cylinder body of the pneumatic cylinder 41 is fixedly arranged on the guide rail 1, and the output rod of the pneumatic cylinder 41 is fixedly connected with the abutting part 4.
[0042] In actual production process, due to the existence of errors, there is a position deviation in the movement of the tray assembly 2. Assuming that the left side is in front and the right side is in back, the left side reaches the processing station first, and the right side lags behind by a distance. In the technical scheme of the present application, before the tray assembly 2 reaches the specified position, the abutting part 4 is switched to the first state, so that the abutting part 4 is arranged in front of the positioning part 3. With the continuous movement of the bottom support part 21, the left side positioning part 3 abuts against the abutting part 4. Then the bottom support part 21 moves forward by a distance, at this time the first elastic member 23 is compressed, and under the action of the first elastic member 23, the left side positioning part 3 can be stationary relative to the abutting part 4. The right side positioning part 3 continues to move forward under the driving of the bottom support part 21, until the right side positioning part 3 abuts against the abutting part 4, finally making the left and right sides of the tray flush, improving the positioning accuracy of the tray assembly 2.
[0043] With reference to Figure 1 and Figure 2 , guide holes 26 are arranged on both sides of the floating part 22 along the length direction of the guide rail 1, and guide bolts 27 are arranged on the top of the bottom support part 21 along the vertical direction, the guide bolts 27 are slidingly arranged in the guide holes 26, and the screw rod segments of the guide bolts 27 are gap-fitted with the guide holes 26.
[0044] The guide bolt 27 is arranged in the guide hole 26, the floating part 22 can be connected to the bottom support part 21, the guide hole 26 is arranged as a strip-shaped hole parallel to the moving direction of the tray assembly 2 in the length direction, so that the position of the floating part 22 and the bottom support part 21 in the front-rear direction can be adjusted. The screw rod of the guide bolt 27 and the guide hole 26 are in clearance fit, so that the floating part 22 can be deflected relative to the bottom support part 21 within a certain range, so as to realize the adjustment process of making the left and right sides of the tray flush.
[0045] With reference to Figure 2 , Figure 3 and Figure 4 , the mounting part 6 is fixedly arranged on the floating part 22 along the length direction of the through groove 5, the mounting part 6 is arranged on the outer side away from each other of the two through grooves 5, the positioning part 3 is slidably arranged in the mounting part 6 along the length direction of the mounting part 6, the mounting part 6 is provided with the buffer assembly 7, one end of the buffer assembly 7 is in transmission connection with the positioning part 3, and the other end is in transmission connection with the mounting part 6.
[0046] With reference to Figure 3 and Figure 4 , the buffer assembly 7 comprises a sliding part 71 and a second elastic member 72.
[0047] Among them, with reference to Figure 3 and Figure 4 , the top of the mounting part 6 is provided with a sliding groove 61 along the length direction of the mounting part 6, the sliding part 71 is slidably arranged in the sliding groove 61 along the length direction of the sliding groove 61, the sliding part 71 is provided with a plurality of second elastic members 72, and the second elastic members 72 are arranged between the adjacent two sliding parts 71. The two ends of the second elastic member 72 are connected with the two sliding parts 71 respectively.
[0048] As an embodiment of the present application, the sliding part 71 is arranged as a T-shaped block; and the second elastic member 72 is arranged as a spring.
[0049] With reference to Figure 3 and Figure 4 , the mounting part 6 is provided with an elastic assembly 8, as an embodiment of the present application, the elastic assembly 8 comprises a supporting part 81 and an elastic part 82, one end of the supporting part 81 and the elastic part 82 is connected, and the other end is arranged on the adjacent two sliding parts 71 respectively, the elastic assembly 8 is provided with a plurality of elastic assemblies 8, the number of the elastic assembly 8 is half of the number of the sliding part 71, and the gap between the adjacent two elastic assemblies 8 is used for accommodating the steel foot 51.
[0050] When the tray assembly 2 moves forward, the steel foot 51 can abut against the supporting part 81 of the elastic assembly 8 in the rear, and the supporting part 81 can stably support the steel foot 51, if the elastic part 82 is rotationally connected to the sliding part 71 in the front, and the steel foot 51 abuts against the elastic part 82, the steel foot 51 can bounce due to the elastic material of the elastic part 82.
[0051] When the positioning part 3 moves backward relative to the floating part 22, the positioning part 3 can pull the sliding part 71 to move, at this time, the second elastic member 72 is stretched, so that the spacing of the plurality of sliding parts 71 increases, and the included angle of the supporting part 81 and the elastic part 82 increases, and the elastic part 82 can be deformed, at this time, on the one hand, the elastic assembly 8 can play a buffering role on the floating part 22, which reduces the risk that the impact force is too large when the abutting part 4 and the positioning part 3 collide, thereby causing the steel foot 51 to be separated from the through groove 5. On the other hand, the elastic assembly 8 can play a safety role, that is, if the positioning part 3 is fixedly connected relative to the floating part 22, when the positioning part 3 contacts the abutting part 4, the impact force on the floating part 22 is too large, so that the first elastic member 23 is compressed to the limit position, and the floating part 22 directly collides with the bottom support part 21, thereby increasing the risk of damage to the tray assembly 2. Under the action of the elastic assembly 8, when the positioning part 3 contacts the abutting part 4, the elastic part 82 and the second elastic member 72 jointly play a buffering role on the positioning part 3, thereby reducing the risk of the floating part 22 directly colliding with the bottom support part 21.
[0052] When the positioning part 3 moves backward relative to the floating part 22, as the spacing between the supporting part 81 and the elastic part 82 increases, the elastic part 82 of the front elastic assembly 8 between the adjacent two elastic assemblies 8 can push the steel foot 51 to move backward, thereby increasing the spacing of the steel foot 51. The increase of the spacing of the steel foot 51 can improve the processing effect of the steel foot 51, for example, when the steel foot 51 is subjected to a paint baking operation, the increase of the spacing of the steel foot 51 can improve the baking effect of the steel foot 51. When painting, the increase of the spacing of the steel foot 51 can improve the uniformity of the painting of each steel foot 51. When the included angle between the supporting part 81 and the elastic part 82 increases to a certain extent, the supporting part 81 and the elastic part 82 are away from the through groove 5, and the connection between the supporting part 81 and the elastic part 82 is no longer above the through groove 5, so that the elastic assembly 8 will not hinder the processing equipment from processing the steel foot 51.
[0053] When the abutting part 4 moves away from the positioning part 3, under the action of the elastic recovery force of the second elastic member 72 and the elastic part 82, the sliding part 71 gradually resets, and the supporting part 81 and the elastic part 82 also reset. The connection between the supporting part 81 and the elastic part 82 is first inserted between the two steel feet 51, and pushes the steel feet 51 to close, so that the spacing of the steel feet 51 decreases, and the spacing between the steel feet 51 and the opposite supporting part 81 and elastic part 82 also decreases. The spacing of the steel foot 51 increases, thereby improving the stability of the steel foot 51 when the tray assembly 2 moves.
[0054] Referring to Figure 3 and Figure 4 , the shaft body 73 is arranged on the sliding part 71, and the shaft sleeve 83 is arranged on the supporting part 81 and the elastic part 82, and the shaft sleeve 83 is rotatably sleeved on the shaft body 73.
[0055] Referring to Figure 5 and Figure 6 , the side of the support part 81 facing the elastic part 82 is set as a first side, and the side of the support part 81 away from the elastic part 82 is set as a second side, and the elastic part 82 is provided with a through hole 84 penetrating therethrough.
[0056] Referring to Figure 6 , the end of the elastic part 82 away from the sliding part 71 is provided with a bending section 85, the bending section 85 penetrates the through hole 84 from the second side and penetrates out of the through hole 84 from the first side, and the end of the bending section 85 is provided with a limiting part 86, the limiting part 86 is used to abut against the side surface of the support part 81 close to the elastic part 82, so as to prevent the elastic part 82 from separating from the support part 81.
[0057] The bending section 85 wraps the end of the support part 81 therein, which is arranged on one hand to increase the connection strength of the support part 81 and the elastic part 82, on the other hand, the bending section 85 wraps the end of the support part 81, and the arc surface structure of the bending section 85 has no sharp angle, which reduces the damage to the surface of the steel foot 51, and on the other hand, the length of the connection between the support part 81 and the elastic part 82 from one side of the through slot 5 to close to the through slot 5 can be increased, which ensures the separation effect of the connection between the elastic part 82 and the support part 81 on the steel foot 51.
[0058] Further, when the distance between the sliding parts 71 increases and the elastic part 82 deforms, the bending degree of the bending section 85 can be increased, so that the inner wall of the bending section 85 gradually approaches the support part 81, so that the elastic assembly 8 can be completely removed from above the through slot 5. When the distance between the sliding parts 71 decreases, the elastic part 82 resets, and the bending degree of the bending section 85 can be reduced, so that the bending section 85 can be stretched away from the sliding part 71, and the separation effect of the connection between the elastic part 82 and the support part 81 on the steel foot 51 is increased.
[0059] Referring to Figure 1 , the floating part 22 is fixedly provided with a baffle 9 along the length direction of the mounting part 6, a containing cavity 91 is formed between the baffle 9 and the floating part 22, the mounting part 6 is located in the containing cavity 91, and a cover plate 92 is rotatably arranged on the baffle 9 along the length direction of the baffle 9, and the side of the baffle 9 and the cover plate 92 close to the mounting part 6 is provided with a heat insulation layer.
[0060] The containing cavity 91 is used to protect the elastic assembly 8, the baking process after painting the steel foot 51 requires placing the steel foot 51 in a high temperature environment, and placing the elastic assembly 8 in a high temperature environment can cause the elastic recovery force of the elastic assembly 8 to decrease. When the sliding part 71 of the elastic assembly 8 separates, the elastic part 82 and the support part 81 retract into the containing cavity 91, and under the action of the heat insulation layer in the containing cavity 91, the risk of damage to the elastic assembly 8 by the high temperature environment is reduced.
[0061] With reference to Figure 3 The fixed part 62 is arranged to slide in the sliding groove 61 and is located between the sliding part 71 and the abutting part 4. A second elastic member 72 is arranged between the fixed part 62 and the sliding part 71. The fixed part 62 is provided with a fixing member 63 for limiting the position of the fixed part 62 in the sliding groove 61. As an embodiment of the present application, the fixing member 63 can be a fixing bolt. A through fixing hole is formed in the fixed part 62. The fixing bolt is screwed into the fixing hole. The bottom of the fixing bolt abuts against the inner bottom wall of the sliding groove 61, thereby limiting the position of the fixed part 62 in the sliding groove 61.
[0062] The above merely provides the preferred embodiments of the present application but is not intended to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present application shall fall into the protection scope of the present application.
Claims
1. A painting and conveying device for insulator steel feet, characterized in that, include: Guide rail (1), two guide rails (1) are provided, and the two guide rails (1) are arranged parallel to each other; The pallet assembly (2) includes a base (21) and a floating part (22). The base (21) is slidably disposed on the guide rail (1) along the length direction of the guide rail (1). The floating part (22) is slidably disposed on the top of the base (21) along the length direction of the guide rail (1). A first elastic element (23) is provided on the base (21). One end of the first elastic element (23) is connected to the base (21), and the other end is connected to the floating part (22). A through groove (5) for placing a steel foot (51) is opened on the floating part (22) along the length direction of the guide rail (1). Two through grooves (5) are opened. The two through grooves (5) are arranged parallel to each other. The width of the through groove (5) is adapted to the middle section of the steel foot (51). A drive assembly for moving the tray assembly (2) on the guide rail (1); Positioning part (3) is provided on floating part (22) along the length direction of guide rail (1), and one end of positioning part (3) protrudes from floating part (22). And abutting part (4), the abutting part (4) is disposed on guide rail (1), the abutting part (4) is used to abut against the protruding end of positioning part (3), and a driving part is disposed on guide rail (1), the driving part is used to drive the abutting part (4) to move closer to or away from positioning part (3). The floating part (22) is fixedly provided with an installation part (6) along the length direction of the through groove (5). The installation part (6) is located on the outer side of the two through grooves (5) that are far apart from each other. The positioning part (3) slides through the installation part (6) along the length direction of the installation part (6). The installation part (6) is provided with a buffer assembly (7). One end of the buffer assembly (7) is connected to the positioning part (3) and the other end is connected to the installation part (6). The buffer assembly (7) includes a sliding part (71) and a second elastic member (72). The top of the installation part (6) is provided with a groove (61) along the length direction of the installation part (6). The sliding part (71) slides in the groove (61) along the length direction of the groove (61). There are multiple sliding parts (71). The second elastic member (72) is located between two adjacent sliding parts (71). The two ends of the second elastic member (72) are connected to the two sliding parts (71) respectively. The mounting part (6) is provided with an elastic component (8), which includes a support part (81) and an elastic part (82). One end of the support part (81) and the elastic part (82) are connected, and the other end is respectively provided on two adjacent sliding parts (71). There are multiple elastic components (8), and the number of elastic components (8) is half the number of sliding parts (71). The gap between two adjacent elastic components (8) is used to accommodate steel feet (51). The sliding part (71) is provided with a shaft (73), and the support part (81) and the elastic part (82) are both provided with bushings (83), and the bushings (83) are rotatably sleeved on the shaft (73); A fixing part (62) is slidably disposed in the groove (61). The fixing part (62) is located between the sliding part (71) and the abutment part (4). A second elastic member (72) is also disposed between the fixing part (62) and the sliding part (71). A fixing member (63) is disposed on the fixing part (62). The fixing member (63) is used to limit the position of the fixing part (62) in the groove (61).
2. The insulator steel foot painting conveying device according to claim 1, characterized in that: The floating part (22) has guide holes (26) on both sides along the length of the guide rail (1), and the bottom support part (21) has a guide bolt (27) on the top in the vertical direction. The guide bolt (27) is slidably disposed in the guide hole (26), and the screw section of the guide bolt (27) and the guide hole (26) are in clearance fit.
3. The insulator steel foot painting conveying device according to claim 2, characterized in that: The side of the support portion (81) facing the elastic portion (82) is designated as the first side, and the side of the support portion (81) away from the elastic portion (82) is designated as the second side. A through hole (84) is provided on the elastic portion (82). The elastic part (82) is provided with a curved section (85) at one end away from the sliding part (71). The curved section (85) passes through the through hole (84) from the second side and exits the through hole (84) from the first side. The end of the curved section (85) is provided with a limiting part (86). The limiting part (86) is used to abut against the side of the support part (81) near the elastic part (82) to prevent the elastic part (82) from separating from the support part (81).
4. The insulator steel foot painting conveying device according to claim 2, characterized in that: A baffle (9) is fixedly provided on the floating part (22) along the length direction of the mounting part (6). A receiving cavity (91) is formed between the baffle (9) and the floating part (22). The mounting part (6) is located in the receiving cavity (91). A cover plate (92) is rotatably provided on the baffle (9) along the length direction of the baffle (9). A heat insulation layer is provided on the side of the baffle (9) and the cover plate (92) near the mounting part (6).
5. A painting and conveying device for insulator steel feet according to any one of claims 1-4, characterized in that: A cylinder (41) is provided on the guide rail (1). The cylinder body of the cylinder (41) is fixedly installed on the guide rail (1). The output rod of the cylinder (41) is fixedly connected to the abutment part (4).
Citation Information
Patent Citations
Tray conveyor
CN110884833A