Electronic component processing platform
By designing the vertical and horizontal states of the rotating machining platform, the problem of only adjusting the height but not adjusting the angle in the prior art is solved, and flexible adjustment of the machining surface of electronic components is achieved.
Patent Information
- Application Number
- CN202422426059.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-10-09
AI Technical Summary
The existing electronic component processing platform can only adjust the height and cannot adjust the angle, resulting in limited processing surface.
Design an electronic component processing platform to achieve different surface processing through two usage states of the rotating machining platform, including a combination of fixed base plate, rectangular slide plate, cylinder, rotating support frame and other components to realize vertical and horizontal rotation of the platform.
It realizes flexible processing of different surfaces of electronic components, and expands the adjustability of the processing surface through the vertical and horizontal rotating machining platform.
Smart Images

Figure CN223236270U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of electronic component processing, in particular to an electronic component processing platform. Background Art
[0002] An existing patent (publication number: CN112008680A) proposes an adjustable electronic component processing platform and processing method. The platform comprises a base, universal wheels, a column, and a slideway. The universal wheels are located below the base, and a column is located above the base. A rack is located at the front of the column. This invention utilizes the meshing of a third spur gear, a first spur gear, and the rack. However, the tabletop can only be adjusted in height, not in angle, resulting in a limited processing surface for the workpiece. Summary of the Invention
[0003] In view of the above-mentioned deficiencies in the prior art, the utility model provides an electronic component processing platform which can process different surfaces of electronic components by rotating the processing platform in two use states.
[0004] The purpose of this utility model is achieved through the following technical solutions:
[0005] An electronic component processing platform includes a fixed base plate, a No. 1 connecting ear, a rectangular support block, a rotating processing platform, an L-shaped fixing bar, a rotating support frame, a rectangular skateboard, and a cylinder. The lower surface of the rectangular skateboard is fitted with the fixed base plate, the lower part of the fixed base plate is provided with a trapezoidal slide groove, the lower part of the rectangular skateboard is provided with a trapezoidal slider, the trapezoidal sliders are symmetrically arranged at the lower part of the rectangular skateboard, the trapezoidal sliders are adapted to the trapezoidal slide groove, the trapezoidal sliders are inserted into the trapezoidal slide groove, the trapezoidal sliders slide in the trapezoidal slide groove, the side of the rectangular skateboard is provided with a skateboard side plate, the No. 6 connecting ear is connected to the skateboard side plate, the lower part of the fixed block is connected to the fixed base plate, the No. 2 connecting ear is connected to the fixed block, one end of the cylinder is connected to the No. 6 connecting ear shaft, the other end of the cylinder is connected to the No. 2 connecting ear shaft, the lower part of the No. 5 connecting ear is connected to the rectangular skateboard, and the lower part of the rotating support frame is connected to the No. 5 connecting ear through the No. 2 rotating shaft.
[0006] The lower part of the No. 1 connecting ear is connected to the fixed base plate, the No. 3 connecting ear is connected to the rotating processing platform, the No. 3 connecting ear is connected to the No. 1 connecting ear through the No. 3 rotating shaft, a group of No. 3 connecting ears are distributed on the side of the rotating processing platform, the lower part of the rectangular support block is connected to the fixed base plate, a group of rectangular support blocks are distributed on the fixed base plate, and the upper surface of the rectangular support block is in contact with the rotating processing platform.
[0007] The side of the fixed base plate has a base plate side plate, the upper surface of the base plate side plate is in contact with the rotating processing platform, an L-shaped fixing strip is connected to the rotating processing platform, a group of L-shaped fixing strips are symmetrically arranged on the side of the rotating processing platform, and the upper part of the rotating support frame is connected to the No. 4 connecting ear through the No. 1 rotating shaft, and the No. 4 connecting ear is symmetrically arranged on both sides of the rotating support frame.
[0008] The No. 4 connecting ear has a No. 4 side panel, the L-shaped fixing strip has a strip slide groove, the No. 4 side panel is adapted to the strip slide groove, the No. 4 side panel is inserted into the strip slide groove, the No. 4 side panel slides in the strip slide groove, and the rotating processing platform and the fixed base plate are in two states: vertical and parallel. Beneficial effects
[0009] The axle up and down groove at two ends embeds respectively in two guide rails up and down of being made up of the groove on the attachment piece, and the tooth on the attachment piece is meshed with tooth on upper sprocket wheel, the lower sprocket. The lower sprocket is meshed with tooth on upper sprocket.
[0010] 2. The side panels of the bottom plate of the utility model vertically position the rotating processing platform, and the electronic component device is installed on the side of the rotating processing platform. The processing surface of the electronic component device can be changed when the rotating processing platform is in the vertical state, and the rectangular slide can be pushed and pulled to rotate the rotating processing platform until the upper surface of the rectangular support block is in contact with the rotating processing platform. At this time, the rotating processing platform is placed horizontally, and the upper surface of the electronic component on the rotatable processing platform is processed. This device processes different surfaces of the electronic component through the two usage states of the rotating processing platform. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 This is an open view of an electronic component processing platform described in the utility model.
[0012] Figure 2 This is a closed view of an electronic component processing platform described in the present utility model.
[0013] Figure 3 This is a schematic diagram of the fixed base plate structure described in the present utility model.
[0014] Figure 4 This is a structural schematic diagram of the rotating processing platform described in the present utility model.
[0015] Figure 5 This is a schematic diagram of the rectangular slide structure described in the present utility model. DETAILED DESCRIPTION
[0016] The present invention will be described in further detail below with reference to the accompanying drawings and embodiments:
[0017] Example 1:
[0018] An electronic component processing platform includes a fixed base plate 01, a No. 1 connecting ear 03, a rectangular support block 05, a rotating processing platform 08, an L-shaped fixing bar 10, a rotating support frame 14, a rectangular slide 17, and a cylinder 23. The lower surface of the rectangular slide 17 is in contact with the fixed base plate 01. The lower part of the fixed base plate 01 has a trapezoidal slide 04. The lower part of the rectangular slide 17 has a trapezoidal slider 19. The trapezoidal slider 19 is symmetrically arranged at the lower part of the rectangular slide 17. The trapezoidal slider 19 is adapted to the trapezoidal slide 04. The trapezoidal slider 19 is inserted into the trapezoidal slide 04, so that the vertical position and front and rear positions of the rectangular slide 17 on the fixed base plate 01 are fixed while the rectangular slide 17 can move horizontally on the fixed base plate 01. The trapezoidal slider 19 Sliding in the trapezoidal slide 04, the side of the rectangular skateboard 17 has a skateboard side plate 20, the No. 6 connecting ear 21 is connected to the skateboard side plate 20, the lower part of the fixed block 06 is connected to the fixed base plate 01, the No. 2 connecting ear 07 is connected to the fixed block 06, one end of the cylinder 23 is connected to the No. 6 connecting ear 21 axis, and the other end of the cylinder 23 is connected to the No. 2 connecting ear 07 axis. The two ends of the cylinder 23 are respectively connected to the No. 2 connecting ear 07 and the No. 6 connecting ear 21 axis, so that when the cylinder 23 is working, it uses the fixed block 06 as a support to apply a push-pull force to the skateboard side plate 20, thereby controlling the rectangular skateboard 17 to slide horizontally on the fixed base plate 01, the No. 5 connecting ear 18 is connected to the rectangular skateboard 17 at the bottom, and the lower part of the rotating support frame 14 is connected to the No. 5 connecting ear 18 through the No. 2 rotating shaft 16.
[0019] Example 2:
[0020] The lower part of the No. 1 connecting ear 03 of the utility model is connected to the fixed base plate 01, the No. 3 connecting ear 09 is connected to the rotating processing platform 08, and the No. 3 connecting ear 09 is connected to the No. 1 connecting ear 03 through the No. 3 rotating shaft 22, so that the lower part of the rotating processing platform 08 is connected to the axis of the fixed base plate 01, so that the rotating processing platform 08 can rotate. A group of No. 3 connecting ears 09 are distributed on the side of the rotating processing platform 08, the lower part of the rectangular support block 05 is connected to the fixed base plate 01, and a group of rectangular support blocks 05 are distributed on the fixed base plate 01, and the upper surface of the rectangular support block 05 is in contact with the rotating processing platform 08.
[0021] Example 3:
[0022] The side of the fixed base plate 01 of the present invention has a base plate side plate 02, the upper surface of the base plate side plate 02 is in contact with the rotating processing platform 08, the L-shaped fixing strip 10 is connected to the rotating processing platform 08, the L-shaped fixing strip 10 is installed and fixed on the rotating processing platform 08, a group of L-shaped fixing strips 10 are symmetrically arranged on the side of the rotating processing platform 08, the upper part of the rotating support frame 14 is connected to the No. 4 connecting ear 12 through the No. 1 rotating shaft 15, so that the rotating support frame 14 is axially connected to the No. 4 connecting ear 12, and the No. 4 connecting ear 12 is symmetrically arranged on both sides of the rotating support frame 14.
[0023] Example 4:
[0024] The fourth connecting ear 12 of the present invention has a fourth side plate 13, and the L-shaped fixing bar 10 has a strip slide 11. The fourth side plate 13 is adapted to the strip slide 11, and the fourth side plate 13 is inserted into the strip slide 11. The fourth side plate 13 slides in the strip slide 11. The rotating processing platform 08 and the fixed bottom plate 01 are in two states: vertical and parallel. When the fourth connecting ear 12 is connected to the rotating processing platform 08, the fourth connecting ear 12 can slide on the rotating processing platform 08. The cylinder 23 is started to push the rectangular slide 17 to slide, and the rotating support frame 14 applies a thrust to the rotating processing platform 08 while rotating, so that the rotating processing platform 08 is rotated. 8 rotates until the lower surface of the rotating processing platform 08 fits with the bottom plate side plate 02, and the bottom plate side plate 02 vertically positions the rotating processing platform 08, and the electronic component is installed on the side of the rotating processing platform 08. When the rotating processing platform 08 is in the vertical state, the processing surface of the electronic component can be changed, or the rectangular slide 17 can be pushed and pulled to rotate the rotating processing platform 08 until the upper surface of the rectangular support block 05 fits with the rotating processing platform 08. At this time, the rotating processing platform 08 is placed horizontally, and the upper surface of the electronic components on the rotatable processing platform 08 is processed. This device processes different surfaces of the electronic components through the two usage states of the rotating processing platform 08.
[0025] Example 5:
[0026] The installation steps of the present invention are as follows: first, connect the lower part of the rectangular support block 05 to the fixed base plate 01, insert the trapezoidal slider 19 into the trapezoidal slide groove 04, connect the lower part of the fixed block 06 to the fixed base plate 01, connect the No. 2 connecting ear 07 to the fixed block 06, connect the No. 6 connecting ear 21 to the skateboard side plate 20, connect one end of the cylinder 23 to the No. 6 connecting ear 21 axis, connect the other end of the cylinder 23 to the No. 2 connecting ear 07 axis, connect the lower part of the rotating support frame 14 to the No. 5 connecting ear 18 through the No. 2 rotating shaft 16, connect the upper part of the rotating support frame 14 to the No. 4 connecting ear 12 through the No. 1 rotating shaft 15, insert the No. 4 side plate 13 into the strip slide groove 11, connect the L-shaped fixing bar 10 to the rotating processing platform 08, and connect the No. 3 connecting ear 09 to the No. 1 connecting ear 03 through the No. 3 rotating shaft 22.
[0027] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. It should be pointed out that ordinary technicians in this technical field can make several improvements and modifications without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.
Claims
1. An electronic component processing platform, characterized by : It includes a fixed base plate (01), a No. 1 connecting ear (03), a rectangular support block (05), a rotating processing platform (08), an L-shaped fixing strip (10), a rotating support frame (14), a rectangular slide (17), and a cylinder (23). The lower surface of the rectangular slide (17) is fitted with the fixed base plate (01). The lower part of the fixed base plate (01) has a trapezoidal slide groove (04). The lower part of the rectangular slide (17) has a trapezoidal slider (19). The trapezoidal slider (19) is symmetrically arranged at the lower part of the rectangular slide (17). The trapezoidal slider (19) is adapted to the trapezoidal slide groove (04). The trapezoidal slider (19) is inserted into the trapezoidal slide groove. (04), the trapezoidal slider (19) slides in the trapezoidal slide (04), the side of the rectangular slide (17) has a slide side plate (20), the sixth connecting ear (21) is connected to the slide side plate (20), the lower part of the fixed block (06) is connected to the fixed base plate (01), the second connecting ear (07) is connected to the fixed block (06), one end of the cylinder (23) is connected to the shaft of the sixth connecting ear (21), the other end of the cylinder (23) is connected to the shaft of the second connecting ear (07), the lower part of the fifth connecting ear (18) is connected to the rectangular slide (17), and the lower part of the rotating support frame (14) is connected to the fifth connecting ear (18) through the second rotating shaft (16).
2. An electronic component processing platform according to claim 1, characterized in that The lower part of the No. 1 connecting ear (03) is connected to the fixed base plate (01), the No. 3 connecting ear (09) is connected to the rotating processing platform (08), the No. 3 connecting ear (09) is connected to the No. 1 connecting ear (03) through the No. 3 rotating shaft (22), a group of No. 3 connecting ears (09) are distributed on the side of the rotating processing platform (08), the lower part of the rectangular support block (05) is connected to the fixed base plate (01), a group of rectangular support blocks (05) are distributed on the fixed base plate (01), and the upper surface of the rectangular support block (05) is in contact with the rotating processing platform (08).
3. An electronic component processing platform according to claim 2, characterized in that The fixed bottom plate (01) has a bottom plate side plate (02) on the side surface, and the upper surface of the bottom plate side plate (02) is in contact with the rotating processing platform (08). An L-shaped fixing strip (10) is connected to the rotating processing platform (08). A group of L-shaped fixing strips (10) are symmetrically arranged on the side surface of the rotating processing platform (08). The upper part of the rotating support frame (14) is connected to the No. 4 connecting ear (12) through the No. 1 rotating shaft (15). The No. 4 connecting ear (12) is symmetrically arranged on both sides of the rotating support frame (14).
4. The electronic component processing platform according to claim 3, characterized in that : The fourth connecting ear (12) has a fourth side plate (13), the L-shaped fixing strip (10) has a strip slide (11), the fourth side plate (13) is adapted to the strip slide (11), and the fourth side plate (13) is inserted into the strip slide (11); the fourth side plate (13) slides in the strip slide (11).
Citation Information
Patent Citations
Adjustable electronic component machining platform and machining method thereof
CN112008680A