Antenna grounding block tool with auxiliary jacking blanking function
By designing the lifting drive assembly, the problem of positional displacement caused by the shaking of the placement plate during antenna grounding block processing was solved, achieving stability and precise positioning of the placement plate during unloading and improving processing accuracy.
Patent Information
- Application Number
- CN202520090559.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2035-01-15
AI Technical Summary
Existing antenna grounding block processing fixtures are prone to causing the placement plate to shake during unloading, resulting in part position displacement and affecting the accurate positioning of subsequent automated processing.
The design includes a drive unit and a lifting unit. The drive cylinder and linkage block drive the tooling support plate to adjust the spacing, and the lifting wheel and inclined plane lift the placement plate to ensure that the placement plate remains horizontal during the unloading process.
This ensures the stability of the placement plate during the unloading process, avoids positional deviation, guarantees accurate positioning of parts in subsequent processes, and improves machining accuracy.
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Figure CN223632528U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to non-standard part frock technical field, concretely relates to an antenna grounding block frock with auxiliary jacking blanking function. BACKGROUND
[0002] Mobile communication is a kind of communication mode of communication between mobile user and fixed point user or between mobile users, and one or both sides of communication are in motion, including land, sea and air mobile communication, and the frequency band adopted is low frequency, medium frequency, high frequency, very high frequency and super high frequency, and mobile communication system is composed of mobile station, base station and mobile switching station.
[0003] In the component parts of mobile communication, the antenna grounding block of mobile machine is an important connecting part, in the process of processing the part, generally, the part is placed on the placing plate, multiple parts are placed on the surface of the placing plate at the same time, then the spacing of frock support plate on frock table is adjusted to realize fixation according to the specification of placing plate, and then the operator carries out frock processing to the part on the placing plate.
[0004] In the existing processing frock of antenna grounding block, the placing plate needs unified feeding and discharging operation after processing, since the antenna grounding block is arrayed on the frock surface after processing, directly manually lifting the placing plate can cause the shaking of the surface of placing plate, so that the position of the part on the surface of placing plate is deviated, and the mechanical hand in the following automatic processing can not accurately position the position of the part on the placing plate, so that processing clamping deviation occurs, so the existing processing of antenna grounding block has the problem that there is no auxiliary discharging function when discharging, and shaking error is easy to occur. UTILITY MODEL CONTENTS
[0005] The utility model has the purposes that by setting up driving jacking assembly, the operation of assisting the placing plate to discharge is realized, the placing plate can be automatically guaranteed to be in horizontal state in the discharging process, and large shaking is not caused to lead to error.
[0006] In order to realize the above-mentioned purposes, the utility model provides the following technical scheme:
[0007] The utility model provides an antenna ground block frock with auxiliary jacking unloading function, including frock bottom plate and frock support plate who is connected in the frock bottom plate slidingly, the frock support plate is placed with the placement plate of processing antenna ground block, be provided with drive jacking assembly on the frock bottom plate, drive jacking assembly is divided into drive part and jacking part, drive part includes the drive cylinder of fixed connection in the frock bottom plate, the piston rod end of drive cylinder is fixedly connected with drive linkage block, the both sides of drive linkage block are provided with the drive link of synchronous each other faces or each other away, drive link and frock support plate fixedly connected, jacking part includes the jacking runner of rotation setting in drive linkage block end, jacking part still includes the jacking block of setting in the jacking runner front track direction, jacking block is opened with jacking inclined plane who cooperates with jacking runner on, the top of jacking block is fixedly set up with the jacking strip board who touches with the bottom of placement plate.
[0008] Preferably, the drive part further includes a connecting shaft seat fixedly connected to the both sides of the drive linkage block, a connecting shaft is rotatably connected in the connecting shaft seat, a linkage plate is rotatably connected to the connecting shaft, a linkage rotating shaft is rotatably connected to the frock bottom plate, the end of the linkage plate is fixedly connected to the linkage rotating shaft, an angle driving plate is fixedly connected to the linkage rotating shaft, an angle sliding shaft is fixedly connected to the end of the angle driving plate, an angle sliding block is slidably arranged on the angle sliding shaft, and the side wall of the drive link is fixedly connected to the angle sliding block.
[0009] Preferably, an angle sliding groove is formed in the angle sliding block for the sliding of the angle sliding shaft.
[0010] Preferably, a sliding rail is fixedly connected to the frock bottom plate, a sliding groove is formed in the frock support plate, and the frock support plate is slidably connected to the sliding rail through the sliding groove.
[0011] Preferably, the jacking part further includes a jacking base fixedly connected to the frock bottom plate, and a jacking groove body matching the jacking runner is formed in the jacking base.
[0012] Preferably, the distance from the highest point of the jacking inclined plane to the bottom of the jacking groove body is less than the diameter of the jacking runner.
[0013] Preferably, a jacking sliding rod is slidably connected between the jacking base and the jacking block, and a jacking sliding groove is formed in the jacking block for the sliding of the jacking sliding rod.
[0014] Preferably, a reset spring is fixedly connected between the jacking base and the jacking block, and the reset spring is sleeved outside the outer wall of the jacking sliding rod.
[0015] Preferably, the first support column and the second support column are symmetrically arranged.
[0016] Preferably, the first support column and the second support column are symmetrically arranged.
[0017] The antenna grounding block tool has the advantages that:
[0018] 1. The driving jacking assembly is provided, wherein the driving jacking assembly is divided into a jacking part and a driving part, the driving part can drive the two tool support plates to move away from each other when the placing plate is unloaded, the tool support plates do not affect the unloading of the placing plate, the distance between the tool support plates can be adjusted according to the specifications of the placing plate during the loading process, and different specifications of the placing plate can be processed.
[0019] 2. The jacking part can drive the placing plate to be lifted synchronously with the driving part during the unloading process, the automatic and stable unloading effect is realized, the placing plate can be prevented from shaking left and right and transported to a subsequent process, and the accuracy of the position of the antenna grounding block when the placing plate is unloaded after part processing is maintained. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a structural schematic view of the antenna grounding block tool with the auxiliary jacking and unloading function.
[0021] Figure 2 It is a structural schematic view of the antenna grounding block tool with the auxiliary jacking and unloading function. Figure 1 ;
[0022] Figure 3 It is a structural schematic view of the antenna grounding block tool with the auxiliary jacking and unloading function. Figure 2 ;
[0023] Figure 4 It is a structural schematic view of the antenna grounding block tool with the auxiliary jacking and unloading function.
[0024] In the drawings:
[0025] 1. Tool base plate; 11, tool support plate; 111, sliding groove; 12, placing plate; 13, driving jacking assembly; 14, linkage shaft; 15, sliding rail;
[0026] 2. Driving part; 21, driving cylinder; 22, driving linkage block; 221, connecting shaft seat; 222, connecting shaft; 223, linkage plate; 224, angle driving plate; 225, angle sliding shaft; 226, angle sliding block; 227, angle sliding groove; 23, driving connecting rod;
[0027] 3, jacking part; 31, jacking runner; 32, jacking block; 321, jacking slope; 33, jacking strip; 34, jacking base; 341, jacking groove body; 342, jacking sliding rod; 35, reset spring; 36, first support rod; 361, jacking connecting column; 362, second support rod. DETAILED DESCRIPTION
[0028] In order to make the purpose, technical scheme and advantages of the utility model more clear and intelligible, the following will combine with the drawings and examples, make further detailed description to the utility model. It should be understood that the specific examples described here are only used to explain the utility model, and are not used to limit the utility model.
[0029] Reference Figures 1-4 , the tooling base plate 1 is placed on the tooling base plate 1 during processing, the tooling support plate 11 is slidably connected on the tooling base plate 1, the slide rail 15 is fixedly connected on the tooling base plate 1, the sliding groove 111 slidably connected on the slide rail 15 is formed on the tooling support plate 11, the distance between the two tooling support plates 11 can be adjusted by driving the tooling support plate 11 to slide back and forth on the sliding groove 111, during tooling, the placement plate 12 is placed on the two tooling support plates 11, a plurality of antenna grounding blocks are arrayed and placed on the placement plate 12 for processing, four rotary lifting cylinders are fixedly connected on both sides of the tooling base plate 1 for pressing and fixing the surface of the placement plate 12, ensuring the stability during processing.
[0030] Reference Figures 1-4 , the tooling base plate 1 is provided with a driving jacking assembly 13, the driving jacking assembly 13 is divided into a driving part 2 and a jacking part 3, wherein the driving part 2 can drive the two tooling support plates 11 to move towards or away from each other, which can simultaneously play two functions of adjusting the distance between the two tooling support plates 11 to adapt to different specifications of the placement plate 12 and assisting in unloading, the jacking part 3 can assist in unloading and jacking the placement plate 12 during unloading, avoiding the occurrence of error caused by the shaking of the placement plate 12 during manual unloading.
[0031] Reference Figures 1-4The driving part 2 comprises a driving cylinder 21 fixedly connected to the tool base plate 1, the driving cylinder 21 is a three-gear cylinder, the piston rod end of the driving cylinder 21 is fixedly connected with a driving linkage block 22, the driving linkage block 22 can move with the piston rod of the driving cylinder 21, the driving part 2 further comprises a connecting shaft seat 221 fixedly connected to the two sides of the driving linkage block 22, the connecting shaft seat 221 is rotatably connected with a connecting shaft 222, the connecting shaft 222 is rotatably connected with a linkage plate 223, the linkage plate 223 is provided as two, one above the other, and is rotatably connected with the two ends of the connecting shaft 222 respectively, the tool base plate 1 is rotatably connected with a linkage rotating shaft 14, the end of the linkage plate 223 is fixedly connected with the linkage rotating shaft 14, when the linkage plate 223 rotates, the linkage rotating shaft 14 can be driven to rotate, the linkage rotating shaft 14 is fixedly connected with an angle driving plate 224, when the linkage rotating shaft 14 rotates, the angle driving plate 224 can be driven to rotate, the end of the angle driving plate 224 is fixedly connected with an angle sliding shaft 225, the angle sliding shaft 225 is slidably provided with an angle sliding block 226, the angle sliding block 226 is provided with an angle sliding groove 227 for the sliding of the angle sliding shaft 225, when the angle driving plate 224 rotates, the angle sliding block 226 will slide in the angle sliding groove 227, because the angle driving plate 224 makes a circular motion, so that the angle sliding block 226 will be pushed during the rotation process, the two sides of the driving linkage block 22 are provided with driving links 23 which are synchronously directed to each other or away from each other, the driving links 23 are fixedly connected with the tool support plate 11, when the angle sliding block 226 is pushed, the pushing force will be applied to the side wall of the tool support plate 11 through the driving links 23, so as to drive the tool support plate 11 to move, the driving links 23 and the side wall of the angle sliding block 226 are fixedly connected, so as to form a linkage effect that the piston rod of the driving cylinder 21 pushes and drives the tool support plate 11 to move.
[0032] Reference Figures 1-4, the jacking part 3 includes a jacking rotating wheel 31 rotatably arranged at the end of the driving linkage block 22, and the jacking part 3 further includes a jacking block 32 arranged in the forward trajectory direction of the jacking rotating wheel 31, and the jacking block 32 is provided with a jacking inclined surface 321 matched with the jacking rotating wheel 31, when the piston rod of the jacking cylinder is extended, the jacking rotating wheel 31 will move synchronously to the position of the jacking block 32, at this time, the jacking inclined surface 321 will be in contact with the surface of the jacking rotating wheel 31, the jacking rotating wheel 31 rotates and pushes the jacking block 32 to rise, the jacking part 3 further includes a jacking base 34 fixedly connected to the tooling bottom plate 1, and the jacking base 34 is provided with a jacking groove body 341 matched with the jacking rotating wheel 31, which can cooperate with the rotation of the jacking rotating wheel 31 in the jacking process to prevent the parts from shaking and affecting the lifting effect of the jacking block 32, and the distance from the highest point of the jacking inclined surface 321 to the bottom of the jacking groove body 341 is less than the diameter of the jacking rotating wheel 31, which can ensure that the jacking block 32 can continuously maintain the rising motion state during the movement of the jacking rotating wheel 31 to the end of the jacking inclined surface 321 of the jacking block 32, thereby improving the height range of jacking.
[0033] With reference to Figures 1-4 , the jacking base 34 and the jacking block 32 are slidably connected by a jacking sliding rod 342, and the jacking block 32 is provided with a jacking sliding groove for the sliding of the jacking sliding rod 342, which can limit the displacement range of the jacking block 32 in the rising or falling process through the linear limiting cooperation of the jacking sliding rod 342 and the jacking sliding groove, and the rising and falling distances will not be greater than the length of the sliding rod, the jacking base 34 and the jacking block 32 are fixedly connected by a return spring 35, the return spring 35 is sleeved outside the outer wall of the jacking sliding rod 342, and the return spring 35 can be fixed to the bottom surface of the jacking base 34 and the upper surface of the jacking block at the same time, when the jacking block 32 rises, the return spring 35 will be stretched, and the return spring 35 will synchronously exert a downward elastic force on the jacking block 32 to drive the jacking block 32, when the driving cylinder 21 is retracted, the jacking block 32 will be lowered under the action of the elastic force to return to the initial position.
[0034] With reference to Figures 1-4The top of the jacking block 32 is fixedly connected with a first supporting rod 36, and the top of the jacking block 32 is fixedly provided with a jacking strip 33 abutting against the bottom of the placing plate 12, which can push the placing plate 12 to lift up, and the jacking strip 33 is fixedly connected to the end of the first supporting rod 36, when the jacking block 32 moves upward, the first supporting rod 36 will move upward, thereby driving the jacking strip 33 to move, one side of the first supporting rod 36 is fixedly connected with a jacking connecting column 361, the other side of the jacking connecting column 361 is fixedly connected with a second supporting rod 362, the first supporting rod 36 and the second supporting rod 362 are symmetrically arranged, so as to ensure the balance of the force on the bottom of the placing plate 12 during jacking, and the end of the second supporting rod 362 is also fixedly connected with the jacking strip 33, so as to increase the force bearing area of the bottom of the placing plate 12 and increase the stability of jacking.
[0035] The working principle of the mechanism is as follows:
[0036] When the antenna grounding block is processed, first, the specification of the placing plate 12 is confirmed, and a plurality of antenna grounding block parts are arrayed and placed on the placing plate 12, at this time, whether to start the driving cylinder 21 is selected according to the specification of the placing plate 12, when the placing plate 12 is small, the driving cylinder 21 does not need to be started, at this time, the placing plate 12 is directly placed on the two tool supporting plates 11, and then the four lifting rotary cylinders are started to fix and process, when the placing plate 12 is large, the driving cylinder 21 is started, the piston rod of the driving cylinder 21 moves to the middle position, at this time, the driving linkage block 22 is pushed forward, which drives the two tool supporting plates 11 to move away from each other, at this time, the placing plate 12 of a larger specification is adapted, when the driving cylinder 21 is located at the middle position, the two jacking strips 33 abut against the bottom surface of the placing plate 12 when the placing plate 12 is placed on the tool supporting plates 11, which does not affect the fixation of the placing plate 12.
[0037] When the antenna grounding block is processed, after the processing is completed, the four rotary lifting cylinders are released to limit the placing plate 12, and the driving cylinder 21 is started again to move to the terminal position, when the piston rod of the driving cylinder 21 moves forward, the jacking rotary wheel 31 located at the front end of the driving linkage block 22 moves to a position abutting against the jacking block 32, the bottom of the jacking rotary wheel 31 is embedded into the jacking groove body 341 on the jacking base 34, moves together with the piston rod of the driving cylinder 21, and the jacking rotary wheel 31 rotates to push the driving block upward, and drives the two jacking strips 33 to abut against the bottom surface of the placing plate 12 and lift up the placing plate 12 away from the tool supporting plates 11, in the process of lifting up the placing plate 12, the two tool supporting plates 11 continue to move along the slide rail 15 under the pushing of the driving connecting rod 23 until the piston rod of the driving cylinder 21 stops moving.
[0038] At this time, the placing plate 12 can be smoothly lifted to a moving height, and the lifted placing plate 12 is discharged by automatic tooling such as a flying device of an automatic workshop, and can be directly processed by tooling in a subsequent process, and the phenomenon that the parts on the placing plate 12 are deviated due to shaking caused by manually driving the placing plate 12 does not occur, and the effect that the parts on the placing plate 12 can be accurately positioned in subsequent processing is ensured.
[0039] The above examples are used to further illustrate the present application, but the present application is not limited to these specific embodiments. Any modification, equivalent replacement and improvement made within the spirit and principle of the present application should be understood as within the protection scope of the present application.
Claims
1. An antenna ground block tooling with auxiliary jacking and blanking function, comprising a tooling bottom plate (1) and a tooling support plate (11) slidably connected to the tooling bottom plate (1), and a placement plate (12) for processing an antenna ground block is placed on the tooling support plate (11), characterized in that: The tool base plate (1) is provided with a driving jacking assembly (13), which is divided into a driving part (2) and a jacking part (3). The driving part (2) comprises a driving cylinder (21) fixedly connected to the tool base plate (1). The piston rod end of the driving cylinder (21) is fixedly connected with a driving linkage block (22). The driving linkage block (22) is provided with driving connecting rods (23) on both sides, which are synchronously oriented towards or away from each other. The driving connecting rods (23) are fixedly connected with the tool support plate (11). The jacking part (3) comprises a jacking rotating wheel (31) rotatably arranged at the end of the driving linkage block (22). The jacking part (3) further comprises a jacking block (32) arranged in the forward trajectory direction of the jacking rotating wheel (31). The jacking block (32) is provided with a jacking inclined surface (321) matched with the jacking rotating wheel (31). The top of the jacking block (32) is fixedly provided with a jacking strip (33) abutting against the bottom of the placing plate (12).
2. The antenna ground block tooling with auxiliary jacking and blanking function according to claim 1, characterized in that: The driving part (2) further comprises a connecting shaft seat (221) fixedly connected to both sides of the driving linkage block (22). The connecting shaft seat (221) is rotatably connected with a connecting shaft (222). The connecting shaft (222) is rotatably connected with a linkage plate (223). The tool base plate (1) is rotatably connected with a linkage rotating shaft (14). The end of the linkage plate (223) is fixedly connected with the linkage rotating shaft (14). The linkage rotating shaft (14) is fixedly connected with an angle driving plate (224). The end of the angle driving plate (224) is fixedly connected with an angle sliding shaft (225). The angle sliding shaft (225) is slidably provided with an angle sliding block (226). The driving connecting rods (23) and the side wall of the angle sliding block (226) are fixedly connected.
3. The antenna ground block tooling with assisted lift and strip function of claim 2, wherein: An angle sliding groove (227) is formed in the angle sliding block (226) for the sliding of the angle sliding shaft (225).
4. The antenna ground block tooling with assisted lift and strip function of claim 1, wherein: The tool base plate (1) is fixedly connected with a sliding rail (15). The tool support plate (11) is provided with a sliding groove (111). The tool support plate (11) is slidably connected to the sliding rail (15) through the sliding groove (111).
5. The antenna ground block tooling with assisted lift and strip function of claim 1, wherein: The jacking part (3) further comprises a jacking base (34) fixedly connected to the tool base plate (1). The jacking base (34) is provided with a jacking groove body (341) matched with the jacking rotating wheel (31).
6. The antenna ground block tooling with assisted lift and strip function of claim 5, wherein: The distance from the highest point of the jacking inclined surface (321) to the bottom of the jacking groove body (341) is less than the diameter of the jacking rotating wheel (31).
7. The antenna ground block tooling with assisted lift and strip function of claim 5, wherein: A jacking sliding rod (342) is slidably connected between the jacking base (34) and the jacking block (32). The jacking block (32) is provided with a jacking sliding groove for the sliding of the jacking sliding rod (342).
8. The antenna ground block tooling with assisted lift and strip function of claim 7, wherein: A reset spring (35) is fixedly connected between the jacking base (34) and the jacking block (32). The reset spring (35) is sleeved outside the outer wall of the jacking sliding rod (342).
9. The antenna ground block tooling with assisted lift and strip function of claim 1, wherein: The first support rod (36) is fixedly connected with the jacking block (32) at the top, the jacking strip (33) is fixedly connected at the end of the first support rod (36), one side of the first support rod (36) is fixedly connected with the jacking connecting column (361), the other side of the jacking connecting column (361) is fixedly connected with the second support rod, and the end of the second support rod (362) is also fixedly connected with the jacking strip (33).
10. The antenna ground block tooling with assisted lift and strip function of claim 9, wherein: The first support rod (36) and the second support rod (362) are symmetrically arranged.