Processing tooling for the outer skeleton of the through-type taillight
By designing the machining tooling of the through-type taillight outer skeleton, including the combination of assembly cabinets, robot mounting frames, machining fixtures and compression devices, the problems of low assembly efficiency and low accuracy of through-type taillight screws in the prior art are solved, and a more efficient and accurate assembly process is achieved.
Patent Information
- Application Number
- CN202010652229.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-07-08
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2040-07-08
AI Technical Summary
The prior art lacks processing tooling for the outer skeleton of the through-type taillight, resulting in low assembly efficiency, low assembly accuracy, and easy to produce defective products.
A through-type taillight outer skeleton processing tooling is designed, including assembly cabinets, robot mounting frames, processing fixtures and compression devices. The machining tool fixes the through-type taillight outer skeleton through combination of lamp holder fixtures and compaction devices, and improves screw assembly efficiency through robot mounting frames.
It improves the screw assembly efficiency of the through-type taillight, reduces labor costs, ensures assembly accuracy, and reduces the occurrence of defective products.
Smart Images

Figure CN111805264B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of automobile accessories, and in particular to a through-type taillight outer frame processing tool. Background Art
[0002] As cars are becoming more and more popular in people's daily lives and bringing convenience to people, cars have long become a household necessity; with the popularization of cars, the total number of cars has increased, and automobile traffic safety is also being upgraded simultaneously. The expansion of urban roads and even the optimization of automobile components are undoubtedly to ensure the high-efficiency traffic brought by cars while protecting personal safety; among them, from the perspective of automobile development trends of various brands (even domestic and foreign automobile brands), through-type taillights in automobile design are becoming more and more common, as if becoming an aesthetic trend and becoming increasingly popular. Through-type taillights not only bring beauty, but also bring safety to drivers and passengers; compared with traditional single-point taillights, with the current popularity of LED light sources, through-type taillights are safer, and their bright lights can provide sufficient warnings to the following vehicles, and there is a high probability of avoiding rear-end traffic accidents.
[0003] In the production of through-type taillights, the screw assembly of the outer frame and the lamp housing is all manually assembled. Based on auto parts, the production volume is large. Manual assembly is not only inefficient, but also has low assembly precision and is prone to defective products.
[0004] The defect of the prior art is that there is a lack of a processing tool for the outer frame of the through-type taillight, which is convenient for fixing the screws of the through-type taillight. Summary of the invention
[0005] In order to solve the above problems, the present invention proposes a through-type taillight outer frame processing tool, which can facilitate the assembly of screws for fixing the through-type taillight.
[0006] The technical solution is as follows:
[0007] A through-type taillight exoskeleton processing tooling, the key lies in that it includes an assembly cabinet, the top surface of which is provided with a taillight mounting seat fixing position and M screw machine mounting positions, and a robot mounting frame is also arranged on the top of the assembly cabinet, and the robot mounting frame is provided with M robot fixing plates.
[0008] The taillight mounting seat is fixed at a processing fixture, which includes a fixed bottom plate, which includes a mounting top surface and a fixed bottom surface, and a lamp holder fixture combination and a clamping device combination are installed on the mounting top surface, and the lamp holder fixture combination includes two end mounting seats and a middle support seat, and the two end mounting seats are symmetrically arranged, wherein the middle support seat is arranged between the two end mounting seats.
[0009] The pressing device combination includes two end presses, and the two end presses are correspondingly arranged around the two end mounting seats. The pressing end of the end press is located above the end mounting seat; at least a control chamber and an oil-water filter installation control chamber are arranged inside the assembly cabinet body.
[0010] With the above design, for the through-type taillight, a processing tooling is designed, and for the existing intelligent design, a robot mounting bracket is installed and installed with the later robot to improve the screw assembly efficiency of the through-type taillight and reduce the labor cost. And for the processing equipment required for processing, a control chamber and an oil-water filter installation control chamber are designed for installing control equipment and oil-water filters.
[0011] Further described, the end mounting seat includes a mounting seat body, and the mounting seat body includes a first side surface and a third side surface along the length direction, a second side surface and a fourth side surface along the width direction, a top surface and a bottom surface along the height direction. A clamping arc groove is opened on the top surface of the mounting seat body, and the clamping arc groove penetrates through the first side surface of the mounting seat body along the length direction of the mounting seat body. The notch of the clamping arc groove close to the first side surface is lower than the notch of the clamping arc groove close to the third side surface.
[0012] An arc-shaped load-bearing block extends from the bottom of the clamping arc groove along the arc center direction of the clamping arc groove, and the arc-shaped load-bearing block divides the clamping arc groove into a first installation groove and a second installation groove.
[0013] An lamp holder limiting block extends from the top surface of the arc-shaped load-bearing block along the arc center direction of the clamping arc groove, and the lamp holder limiting block is close to the first side surface of the mounting seat body.
[0014] A support groove is opened at the top of the middle support seat, and the extending direction of the support groove is the same as the extending direction of the clamping arc groove.
[0015] The pressing end of the end press is located above the notch of the clamping arc groove.
[0016] With the above solution, the outer skeleton of the through-type taillight is fixed by the symmetrically arranged two side end mounting seats and the middle support seat. Among them, the clamping arc grooves and support grooves are correspondingly opened on the end mounting seats and the middle support seat according to the shape of the outer lamp cover of the through-type taillight outer skeleton, which fits better with the outer lamp cover of the through-type taillight outer skeleton, making the fixation of the through-type taillight outer skeleton more stable and preventing displacement during the processing; and combined with the vertical pressing force given by the end press to the through-type taillight outer skeleton, the through-type taillight outer skeleton is fixed more firmly.
[0017] Further described, the lamp holder fixture combination further includes a first auxiliary support seat and a second auxiliary support seat. The first auxiliary support seat and the second auxiliary support seat are symmetrically installed on both sides of the middle support seat. The first auxiliary support seat and the second auxiliary support seat are located between the two end mounting seats and on the straight line where the end mounting seats and the middle support seat are located.
[0018] The first auxiliary support seat includes a first side wall, a second side wall, a third side wall, and a fourth side wall. The second auxiliary support seat includes a first side wall, a second side wall, a third side wall, and a fourth side wall. Auxiliary support grooves are provided at the tops of the first auxiliary support seat and the second auxiliary support seat along the direction of the clamping arc groove. The auxiliary support groove of the first auxiliary support seat penetrates through the first side wall surface and the second side wall of the first auxiliary support seat. The auxiliary support groove of the second auxiliary support seat penetrates through the first side wall and the second side wall of the second auxiliary support seat.
[0019] The pressing device combination further includes a first auxiliary presser and a second auxiliary presser. The first auxiliary presser and the second auxiliary presser are correspondingly arranged around the first auxiliary support seat and the second auxiliary support seat; the pressing end of each auxiliary presser is located above the auxiliary support groove opening.
[0020] With the above solution, the two additional auxiliary support seats add load-bearing stress points in fixing the through-type taillight outer skeleton, not only making the through-type taillight outer skeleton better fixed, but also preventing the through-type taillight outer skeleton from deforming during the processing.
[0021] Further described, the bottom surface of the mounting seat body is connected to the top surface of the height adjustment platform. The bottom surface of the height adjustment platform is connected to the mounting surface of the fixed bottom plate through a set of height adjustment rods. The set of height adjustment rods includes at least three height adjustment rods.
[0022] With the above solution, the end mounting seat adjusts the height through the height adjustment platform to adapt to the through-type taillight outer skeleton with different end heights.
[0023] Further described, at least two fixture fixing through holes are provided on the mounting surface of the fixed bottom plate, and fixture fixing bolts are installed in the fixture fixing through holes.
[0024] With the above solution, the fixed bottom plate is fixed on the top surface of the assembly cabinet body of the processing tooling through the fixture fixing through holes.
[0025] Further described, an illumination mounting plate is arranged along the length direction at the top of the robot mounting frame, and a lighting lamp is fixed on the side of the illumination mounting plate facing the assembly cabinet body.
[0026] With the above solution, the fixed plates of the lighting lamp and the tail lamp are both arranged along the length direction of the assembly cabinet body, so that the lighting lamp can clearly irradiate the tail lamp during processing, which is convenient for the visual sensors of the staff and the robot to identify and distinguish. To improve the lighting effect, the side of the lighting installation plate facing the assembly cabinet body is a mirror surface.
[0027] For further description, the frame of the assembly cabinet body is generally rectangular parallelepiped-shaped, the frame in its height direction is made of square steel pipes, and after the square steel pipes extend upward and are connected to the mounting brackets in the length and width directions at the top, the robot mounting bracket is formed.
[0028] A connecting rod is arranged at the top of any one of the square steel pipes for connecting a display, and the connecting line of the display extends to the control chamber through the connecting rod and the square steel pipe.
[0029] With the above solution, the frame of the assembly cabinet body is generally rectangular parallelepiped-shaped, the frame in its height direction is made of square steel pipes, and after the square steel pipes extend upward and are connected to the mounting brackets in the length and width directions at the top, the robot mounting bracket is formed; a connecting rod is arranged at the top of any one of the square steel pipes for connecting a display, and the connecting line of the display extends to the control chamber through the connecting rod and the square steel pipe.
[0030] The frame of the assembly cabinet body is generally rectangular parallelepiped-shaped, the frame in its height direction is made of square steel pipes, and the rest of the bottom plate, side wall cabinet body, and cabinet door are all made of stainless steel panels.
[0031] Combined with the square steel pipes, it not only plays the role of building the frame, but also uses its internal hollow structure for pipe laying and wiring to protect the pipelines.
[0032] For further description, the oil-water filter installation control chamber is arranged near any one of the square steel pipes for installing an oil-water filter, and the power transmission pipeline of the oil-water filter extends to the robot mounting bracket through the adjacent square steel pipe.
[0033] With the above solution, since the oil-water filter installation control chamber is used for installing an oil-water filter and a large number of pipelines such as oil inlet and outlet are required for oil-water filtration, by arranging the oil-water filter installation control chamber near the square steel pipe, the internal space of the steel pipe can be used for pipe laying and wiring.
[0034] For further description, M controller installation positions and a wiring board are arranged in the control chamber, and the wiring board is detachably installed at the bottom of the control chamber.
[0035] For further description, the bottom of the assembly cabinet body is provided with a cabinet support.
[0036] Advantages of the present invention: Through the combination of the lamp holder fixture and the pressing device combination, the through-type taillight outer skeleton is firmly fixed on the through-type taillight outer skeleton fixture. Among them, clamping arc grooves and support grooves are correspondingly opened on both the end mounting seat and the middle support seat according to the shape of the outer lamp shade of the through-type taillight outer skeleton, which fits the outer lamp shade of the through-type taillight outer skeleton better, making the fixation of the through-type taillight outer skeleton more stable and preventing displacement during the processing; and by combining the end presser to apply a pressing force in the vertical direction to the through-type taillight outer skeleton, the through-type taillight outer skeleton is fixed more securely; it meets the processing platform size required for the existing through-type taillight processing, and based on the intelligent and mechanized processing methods proposed in recent years, the installation space and installation position for the installation robot are designed. And considering the problem of many pipelines requiring oil-water filters, the oil-water filter installation control chamber is arranged close to the square steel pipe, making a reasonable plan for the subsequent installation of pipelines; the two additional auxiliary support seats increase the load-bearing stress points during the fixation of the through-type taillight outer skeleton, not only making the fixation of the through-type taillight outer skeleton better, but also preventing deformation of the through-type taillight outer skeleton during the processing. BRIEF DESCRIPTION OF THE DRAWINGS
[0037] Figure 1 is the overall structure schematic diagram of the present invention Figure 1 ;
[0038] Figure 2 is the overall structure schematic diagram of the present invention Figure 2 ;
[0039] Figure 3 is the overall structure schematic diagram of the present invention Figure 3 ;
[0040] Figure 4 is the structural diagram of the processing fixture of the present invention;
[0041] Figure 5 is the assembly structure of the processing fixture and the through-type taillight Figure 1 ;
[0042] Figure 6 is the assembly structure of the processing fixture and the through-type taillight Figure 2 ;
[0043] Figure 7 is the structural view of the end mounting seat of the present invention Figure 1 ;
[0044] Figure 8 is the structural view of the end mounting seat of the present invention Figure 2 ;
[0045] Figure 9 is the structural view of the auxiliary support seat and the middle support seat of the present invention Figure 1 ;
[0046] Figure 10 is the structural view of the auxiliary support base and the middle support base of the present invention Figure 2 . Specific embodiments
[0047] For the purpose, technical solutions and advantages of the present invention to be more clearly understood, the present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.
[0048] It should be understood that the specific embodiments described herein are only used to explain the present invention and do not limit the protection scope of the present invention.
[0049] In this embodiment:
[0050] From Figures 1-4 it can be seen that a processing tool for a through-type taillight outer skeleton includes an assembly cabinet D1. A taillight mounting seat fixing position D2 and M screw machine mounting positions D3 are provided on the top surface of the assembly cabinet D1. A robot mounting frame D4 is further provided on the top of the assembly cabinet D1, and the robot mounting frame D4 is provided with M robot fixing plates D5.
[0051] In this embodiment, combined with Figure 1 it can be seen that M = 3.
[0052] Combined with Figures 1-4 it can be seen that 1 robotic arm is respectively provided on each of the 3 robot fixing plates D5; 3 feeding screw machines are installed on the 3 screw machine mounting positions D3.
[0053] A processing fixture is installed at the taillight mounting seat fixing position D2. The processing fixture includes a fixed bottom plate. The fixed bottom plate includes a mounting top surface and a fixed bottom surface. A lamp holder fixture combination and a pressing device combination are installed on the mounting top surface. The lamp holder fixture combination includes two end mounting seats 21 and a middle support base 22. The two end mounting seats 21 are symmetrically arranged. Among them, the middle support base 22 is arranged between the two end mounting seats 21;
[0054] The pressing device combination includes two end pressers 31. The two end pressers 31 are correspondingly arranged around the two end mounting seats 21, and the pressing ends of the end pressers 31 are located above the end mounting seats 21.
[0055] At least a control chamber D6 and an oil-water filter installation control chamber D7 are provided inside the assembly cabinet D1.
[0056] From Figures 4-6It can be seen that the end mounting seat 21 includes a mounting seat body A. The mounting seat body A includes a first side face and a third side face along the length direction, a second side face and a fourth side face along the width direction, and a top face and a bottom face along the height direction. A clamping arc groove A1 is formed on the top face of the mounting seat body A. The clamping arc groove A1 penetrates through the first side face of the mounting seat body A along the length direction of the mounting seat body A. The notch of the clamping arc groove A1 near the first side face is lower than the notch of the clamping arc groove A1 near the third side face.
[0057] An arc-shaped load-bearing block A2 extends from the bottom of the clamping arc groove A1 along the direction of the arc center of the clamping arc groove A1. The arc-shaped load-bearing block A2 divides the clamping arc groove A1 into a first installation groove B1 and a second installation groove B2.
[0058] A lamp holder limiting block A3 extends from the top face of the arc-shaped load-bearing block A2 along the direction of the arc center of the clamping arc groove A1. The lamp holder limiting block A3 is close to the first side face of the mounting seat body A.
[0059] A support groove is formed at the top of the middle support seat 22. The extending direction of the support groove is the same as that of the clamping arc groove A1; the pressing end of the end presser 31 is located above the notch of the clamping arc groove A1.
[0060] From Figure 9 and Figure 10 It can be seen that the lamp holder fixture combination further includes a first auxiliary support seat 23 and a second auxiliary support seat 24. The first auxiliary support seat 23 and the second auxiliary support seat 24 are symmetrically installed on both sides of the middle support seat 22. The first auxiliary support seat 23 and the second auxiliary support seat 24 are located between the two end mounting seats 21 and on the straight line where the end mounting seats 21 and the middle support seat 22 are located.
[0061] The first auxiliary support seat 23 includes a first side wall, a second side wall, a third side wall and a fourth side wall. The second auxiliary support seat 24 includes a first side wall, a second side wall, a third side wall and a fourth side wall. Auxiliary support grooves are formed at the tops of the first auxiliary support seat 23 and the second auxiliary support seat 24 along the direction of the clamping arc groove A1. The auxiliary support groove of the first auxiliary support seat 23 penetrates through the first side wall surface and the second side wall of the first auxiliary support seat 23. The auxiliary support groove of the second auxiliary support seat 24 penetrates through the first side wall and the second side wall of the second auxiliary support seat 24.
[0062] The pressing device combination further includes a first auxiliary presser 32 and a second auxiliary presser 33. The first auxiliary presser 32 and the second auxiliary presser 33 are arranged in one-to-one correspondence around the first auxiliary support seat 23 and the second auxiliary support seat 24; the pressing end of each auxiliary presser 32 is located above the auxiliary support groove notch.
[0063] From Figure 4It can be seen that the bottom surface of the mounting seat body A is connected to the top surface of the height adjustment platform 6, and the bottom surface of the height adjustment platform 6 is connected to the mounting surface of the fixed base plate through a height adjustment rod group. The height adjustment rod group includes four height adjustment rods 61.
[0064] From Figure 4 It can be seen that two fixture fixing through holes 4 are provided on the mounting surface of the fixed base plate, and fixture fixing bolts 41 are installed in the fixture fixing through holes 4.
[0065] From Figures 4-6 It can be seen that two extraction handles 5 are provided on the mounting surface of the fixed base plate.
[0066] From Figures 9-10 It can be seen that a clamping block mounting groove is provided on the second side surface or the fourth side surface of the mounting seat body A along the width direction of the mounting seat body A. The clamping block mounting groove communicates with the first mounting groove B1; a clamping mounting hole is provided at the bottom of the clamping block mounting groove close to the bottom surface of the mounting seat body A. A clamping block is installed in the clamping block mounting groove, and the clamping block can be fixed in the clamping block mounting groove by bolts.
[0067] From Figures 9-10 It can be seen that a first mounting block A4 extends from the bottom of the first side surface of the mounting seat body A along the length direction of the mounting seat body A.
[0068] A second mounting block A5 extends from the bottom of the third side surface of the mounting seat body A along the length direction of the mounting seat body A.
[0069] Two mounting threaded through holes are provided on the top surface of the first mounting block A4, and two mounting threaded through holes are provided on the top surface of the second mounting block A5. The mounting threaded through holes are all elliptical through holes. The end mounting seat 21 is fixedly connected to the height adjustment platform 6 through the mounting threaded through holes on the first mounting block A4 and the second mounting block A5 by bolts.
[0070] From Figure 7 And Figure 8 It can be seen that a chamfer is provided at the top of the groove wall close to the second side surface in the first mounting groove B1; a lamp holder clamping step is provided on the groove wall of the second mounting groove B2 along the length direction of the mounting seat body A.
[0071] The edges of the clamping arc groove A1, the edges of the arc-shaped load-bearing block A2, and the edges of the lamp holder limiting block A3 are all rounded; the bottom edges of the first mounting groove B1 and the second mounting groove B2 are all rounded.
[0072] From Figures 1-3 It can be seen that a lighting mounting plate D8 is provided on the top of the robot mounting frame D4 along the length direction, and a lighting lamp D9 is fixed on the side of the lighting mounting plate D8 facing the assembly cabinet D1.
[0073] From Figures 1-3 It can be seen that the overall frame of the assembled cabinet body D1 is rectangular. The frame in the height direction is made of square steel pipes. After the square steel pipes extend upward and are connected to the mounting brackets in the length and width directions at the top, a robot mounting bracket D4 is formed.
[0074] A connecting rod D10 is provided at the top of any one of the square steel pipes for connecting a display. The connection line of the display extends to the control chamber D6 through the connecting rod D10 and the square steel pipe. In this embodiment, the connecting rod D10 is connected to a liquid crystal display.
[0075] From Figures 1-3 It can be seen that the oil-water filter installation control chamber D7 is arranged near any one of the square steel pipes. In this embodiment, the oil-water filter installation control chamber D7 installs an oil-water filter, and the power transmission pipeline of the oil-water filter extends to the robot mounting bracket D4 through the adjacent square steel pipe.
[0076] From Figures 1-3 It can be seen that M controller mounting positions and a wiring board are arranged in the control chamber D6, and the wiring board is detachably mounted at the bottom of the control chamber D6.
[0077] From Figures 1-3 It can be seen that a cabinet support D11 is arranged at the bottom of the assembled cabinet body D1.
Claims
1. A processing tooling for the outer framework of a through-type taillight, characterized in that, It includes an assembled cabinet body (D1). On the top surface of the assembled cabinet body (D1), there are a taillight mounting seat fixing position (D2) and M screwdriver mounting positions (D3). On the top of the assembled cabinet body (D1), there is also a robot mounting bracket (D4), and the robot mounting bracket (D4) is provided with M robot fixing plates (D5). A processing fixture is installed at the taillight mounting seat fixing position (D2). The processing fixture includes a fixed bottom plate, and the fixed bottom plate includes a mounting top surface and a fixed bottom surface. A lamp holder fixture combination and a pressing device combination are installed on the mounting top surface. The lamp holder fixture combination includes two end mounting seats (21) and a middle support seat (22). The two end mounting seats (21) are symmetrically arranged. Among them, the middle support seat (22) is arranged between the two end mounting seats (21). The pressing device combination includes two end pressers (31). The two end pressers (31) are correspondingly arranged around the two end mounting seats (21), and the pressing end of the end presser (31) is located above the end mounting seat (21). Inside the assembled cabinet body (D1), there are at least a control chamber (D6) and an oil-water filter installation control chamber (D7). The end mounting seat (21) includes a mounting seat body (A). The mounting seat body (A) includes a first side face and a third side face along the length direction, a second side face and a fourth side face along the width direction, a top face and a bottom face along the height direction. A clamping arc groove (A1) is opened on the top face of the mounting seat body (A). The clamping arc groove (A1) penetrates through the first side face of the mounting seat body (A) along the length direction of the mounting seat body (A). The notch of the clamping arc groove (A1) close to the first side face is lower than the notch of the clamping arc groove (A1) close to the third side face. An arc-shaped load-bearing block (A2) extends from the bottom of the clamping arc groove (A1) along the arc center direction of the clamping arc groove (A1). The arc-shaped load-bearing block (A2) divides the clamping arc groove (A1) into a first installation groove (B1) and a second installation groove (B2). A lamp holder limiting block (A3) extends from the top face of the arc-shaped load-bearing block (A2) along the arc center direction of the clamping arc groove (A1). The lamp holder limiting block (A3) is close to the first side face of the mounting seat body (A). A lamp holder clamping step is opened on the groove wall of the second installation groove (B2) along the length direction of the mounting seat body (A). A support groove is opened at the top of the middle support seat (22), and the extending direction of the support groove is the same as the extending direction of the clamping arc groove (A1). The pressing end of the end presser (31) is located above the notch of the clamping arc groove (A1). The lamp holder fixture combination further includes a first auxiliary support base (23) and a second auxiliary support base (24). The first auxiliary support base (23) and the second auxiliary support base (24) are symmetrically installed on both sides of the middle support base (22). The first auxiliary support base (23) and the second auxiliary support base (24) are located between the two end mounting bases (21) and are on the straight line where the end mounting bases (21) and the middle support base (22) are located. The first auxiliary support base (23) includes a first side wall, a second side wall, a third side wall, and a fourth side wall. The second auxiliary support base (24) includes a first side wall, a second side wall, a third side wall, and a fourth side wall. Auxiliary support grooves are provided at the tops of the first auxiliary support base (23) and the second auxiliary support base (24) along the direction of the clamping arc groove (A1). The auxiliary support groove of the first auxiliary support base (23) penetrates through the first side wall surface and the second side wall of the first auxiliary support base (23). The auxiliary support groove of the second auxiliary support base (24) penetrates through the first side wall and the second side wall of the second auxiliary support base (24). The pressing device combination further includes a first auxiliary presser (32) and a second auxiliary presser (33). The first auxiliary presser (32) and the second auxiliary presser (33) are arranged in one-to-one correspondence around the first auxiliary support base (23) and the second auxiliary support base (24). The pressing end of each auxiliary presser (32) is located above the auxiliary support groove opening. The bottom surface of the mounting base body (A) is connected to the top surface of the height adjustment platform (6). The bottom surface of the height adjustment platform (6) is connected to the mounting surface of the fixed bottom plate through a set of height adjustment rods. The set of height adjustment rods includes at least three height adjustment rods (61). A clamping block mounting groove is provided on the second side or the fourth side of the mounting base body (A) along the width direction of the mounting base body (A), and the clamping block mounting groove communicates with the first mounting groove (B1). A clamping mounting hole is provided at the bottom of the clamping block mounting groove close to the bottom surface of the mounting base body (A). A clamping block is installed in the clamping block mounting groove, and the clamping block can be fixed in the clamping block mounting groove by bolts. A first mounting block (A4) extends from the bottom of the first side of the mounting base body (A) along the length direction of the mounting base body (A), and a second mounting block (A5) extends from the bottom of the third side of the mounting base body (A) along the length direction of the mounting base body (A). The end mounting base (21) is fixedly connected to the height adjustment platform (6) through the mounting threaded through holes on the first mounting block (A4) and the second mounting block (A5) by bolts.
2. The processing tooling for the through-type taillight outer skeleton according to claim 1, characterized in that At least two fixture fixing through holes (4) are provided on the mounting surface of the fixed bottom plate, and fixture fixing bolts (41) are installed in the fixture fixing through holes (4).
3. The processing tooling for the through-type taillight outer skeleton described in claim 1 is characterized in that, A lighting mounting plate (D8) is provided along the length direction at the top of the robot mounting frame (D4). A lighting lamp (D9) is fixed on the side of the lighting mounting plate (D8) facing the assembly cabinet body (D1).
4. The processing tooling for the through-type taillight outer skeleton according to claim 1, characterized in that, The frame of the assembled cabinet body (D1) is generally rectangular in shape. The frame in the height direction is made of square steel pipes. After the square steel pipes extend upward and are connected to the mounting brackets in the length and width directions at the top, the robot mounting bracket (D4) is formed. A connecting rod (D10) is provided at the top of any one of the square steel pipes for connecting a display. The connection line of the display extends to the control chamber (D6) through the connecting rod (D10) and the square steel pipe.
5. The processing tooling for the through-type taillight outer skeleton according to claim 4, characterized in that The oil-water filter installation control chamber (D7) is arranged near any one of the square steel pipes for installing an oil-water filter. The power transmission pipeline of the oil-water filter extends to the robot mounting bracket (D4) through the adjacent square steel pipe.
6. The processing tooling for the through-type taillight outer skeleton according to claim 1, characterized in that, M controller mounting positions and a wiring board are arranged in the control chamber (D6). The wiring board is detachably mounted at the bottom of the control chamber (D6).
7. The processing tooling for the through-type taillight outer skeleton according to claim 1, characterized in that, Cabinet supports (D11) are provided at the bottom of the assembled cabinet body (D1).
Citation Information
Patent Citations
Screw locking mechanical arm and automatic screw locking robot
CN209050379U
Penetrating type tail lamp outer framework machining equipment
CN212635078U
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