CN211476922U - Multi-station operating table for PCB performance research and development test - Google Patents
Multi-station operating table for PCB performance research and development test Download PDFInfo
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- CN211476922U CN211476922U CN202020360792.4U CN202020360792U CN211476922U CN 211476922 U CN211476922 U CN 211476922U CN 202020360792 U CN202020360792 U CN 202020360792U CN 211476922 U CN211476922 U CN 211476922U
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Abstract
The utility model discloses a multi-station operating platform for the performance research and development test of a PCB, which comprises a first table board and a second table board; the first table top and the second table top are hinged; a support component is arranged at the bottom of the first table-board; the support assembly comprises a first support rod and a second support rod; the top of the first support rod is connected with the first table top; the upper end of the second support rod is embedded at the upper end of the first support rod in a matching manner; the lower ends of the first support rod and the second support rod are in bearing contact with the ground; the lower end of the second support rod is hinged with a third support rod; a first positioning groove is formed in one side, back to the first table top, of the second table top; the second table top is turned to a position horizontal to the first table top, and one end, far away from the second support rod, of the third support rod is embedded into the first positioning groove in a matched mode; the turnover hinged table top is utilized to realize the flexible increase and decrease of the available area of the operating table, and the main structure is detachable, so that the operation table is convenient to carry.
Description
Technical Field
The utility model relates to a PCB board research and development equipment field especially relates to a multistation operation panel for PCB board performance research and development test.
Background
The PCB research and development work only relates to small-batch production and detection, and various devices are concentrated on the same operating console, so that the running frequency of workers can be reduced, and the research and development efficiency is improved. However, the traditional multi-station operating table is fixed in appearance, large in occupied area, not easy to carry and move and poor in maneuverability. Therefore, a multi-station operating platform which can be flexibly folded and unfolded according to requirements and is used for the performance research and development test of the PCB is needed to be invented.
Disclosure of Invention
The purpose of the invention is as follows: in order to overcome the not enough of existence among the prior art, the utility model provides a can receive and release a multistation operation panel that is used for PCB board performance research and development test in a flexible way as required.
The technical scheme is as follows: in order to achieve the above purpose, the utility model discloses a multistation operation panel for PCB board performance research and development test, including first mesa and second mesa; the first table top and the second table top are hinged; a support component is arranged at the bottom of the first table-board; the support assembly comprises a first support rod and a second support rod; the top of the first support rod is connected with the first table top; the upper end of the second support rod is embedded at the upper end of the first support rod in a matching manner; the lower ends of the first support rod and the second support rod are in bearing contact with the ground; the lower end of the second support rod is hinged with a third support rod; a first positioning groove is formed in one side, back to the first table top, of the second table top; the second table top is turned to a position horizontal to the first table top, and one end, far away from the second support rod, of the third support rod is embedded into the first positioning groove in a matched mode; the supporting components are distributed on two sides of the bottom of the first table board in pairs along the rotating shaft direction of the second table board.
Furthermore, a containing groove is formed in the second support rod along the length direction of the second support rod; the third support rod is correspondingly nested and matched with the accommodating groove.
Further, the first stay bar comprises a base body and a bar body; the upper end of the rod body is correspondingly inserted at the bottom of the seat body; the top of the seat body is connected with the first table-board; a second positioning groove is formed in one side, facing the second support rod, of the seat body; the second positioning groove comprises a first groove body and a second groove body; the second groove body is positioned at the bottom of the first groove body in the depth direction; a positioning block is arranged at the upper end of the second support rod; a bump is arranged on one side of the positioning block facing the seat body; the positioning block is correspondingly nested and matched with the first groove body; the lug is correspondingly nested and matched with the second groove body; the convex block is in a semi-sphere shape.
Furthermore, a limiting piece is arranged on the side wall of the first groove body in a penetrating and inserting mode; a slot is formed in the side face of the positioning block; the telescopic track of the limiting piece along the inserting direction corresponds to the inserting groove.
Furthermore, a leaning piece is also arranged on one side of the second table top, which faces away from the first table top; the abutting piece comprises a measuring tape and an embedded block; the embedded block is connected and arranged at the bottom of the measuring tape; the embedded block is correspondingly nested and matched with the first positioning groove; the bottom of the measuring tape is correspondingly attached to the second table top; the upper end of the first table top is also provided with a plurality of first positioning grooves.
Furthermore, a first magnetic sheet is attached to the bottom of the first positioning groove; the bottom of the embedded block is provided with a second magnetic sheet in an attaching mode; the first magnetic sheet and the second magnetic sheet have different magnetic poles and attract each other.
Has the advantages that: the utility model discloses a multistation operation panel for PCB performance research and development test, which comprises a first table surface and a second table surface; the first table top and the second table top are hinged; a support component is arranged at the bottom of the first table-board; the support assembly comprises a first support rod and a second support rod; the top of the first support rod is connected with the first table top; the upper end of the second support rod is embedded at the upper end of the first support rod in a matching manner; the lower ends of the first support rod and the second support rod are in bearing contact with the ground; the lower end of the second support rod is hinged with a third support rod; a first positioning groove is formed in one side, back to the first table top, of the second table top; the second table top is turned to a position horizontal to the first table top, and one end, far away from the second support rod, of the third support rod is embedded into the first positioning groove in a matched mode; the turnover hinged table top is utilized to realize the flexible increase and decrease of the available area of the operating table, and the main structure is detachable, so that the operation table is convenient to carry.
Drawings
FIG. 1 is a schematic view of the overall structure of an operation table;
FIG. 2 is a schematic view of a seat structure;
FIG. 3 is a detail view of a portion of the first brace bar;
fig. 4 is an expanded rear side view of the console.
Detailed Description
The present invention will be further described with reference to the accompanying drawings.
The multi-station operating platform for the performance research and development test of the PCB comprises a first table top 1 and a second table top 2, as shown in the attached figure 1; the first table top 1 and the second table top 2 are hinged and connected, and can be flexibly opened and closed to be overlapped; as shown in fig. 4, after the second table top 2 is opened, the usable area of the operating table can be greatly expanded, so that various devices such as etching, appearance detection, performance test and the like can be conveniently added according to research and development requirements, the centralization of research and development devices is realized, and the operating efficiency is improved; the bottom of the first table board 1 is provided with a support component 3; the support assembly 3 comprises a first stay 4 and a second stay 5; the top of the first support rod 4 is connected with the first table board 1; the upper end of the second support rod 5 is embedded at the upper end of the first support rod 4 in a matching way; the lower ends of the first support rod 4 and the second support rod 5 are in bearing contact with the ground; the lower end of the second support rod 5 is hinged with a third support rod 6; a first positioning groove 11 is formed in one side, back to the first table board 1, of the second table board 2; the second table board 2 is turned to a position horizontal to the first table board 1, and one end, far away from the second support rod 5, of the third support rod 6 is matched and embedded into the first positioning groove 11; the supporting components 3 are distributed on two sides of the bottom of the first table board 1 in pairs along the rotating shaft direction of the second table board 2; the inclination angle of the second stay bar 5 in fig. 2 is only an illustrative effect, and in actual manufacturing, in order to improve the stability of the operating table after being unfolded, the included angle between the first stay bar 4 and the second stay bar 5 can be increased, so that the lower end of the second stay bar 5 extends to a position farther away from the first stay bar 4, and the probability of toppling when the edge of the second table top is pressed is reduced.
The second support rod 5 is provided with a storage groove 51 along the length direction thereof; the third support rod 6 is correspondingly nested and matched with the accommodating groove 51; when the second table top 2 is opened, the third stay bar 6 is embedded and contained in the containing groove 51, and can be quickly opened when in use.
The first stay bar 4 comprises a base body 41 and a bar body 42; as shown in fig. 2 and fig. 3, the upper end of the rod 42 is inserted into the bottom of the seat 41, and the rod and the seat can be screwed together to improve the installation stability; the top of the seat body 41 is connected with the first table board 1, and the seat body can be connected by screws so as to be convenient to detach, and can also be welded and the like; a second positioning groove 43 is formed in one side, facing the second support rod 5, of the seat body 41; the second positioning groove 43 comprises a first groove body 431 and a second groove body 432; the second groove 432 is positioned at the bottom of the first groove 431 in the depth direction; a positioning block 52 is arranged at the upper end of the second support rod 5; a bump 521 is arranged on one side of the positioning block 52 facing the seat body 41; the positioning block 52 is correspondingly nested and matched with the first groove body 431, and the cross section of the positioning block 52 is a circular surface, so that the positioning block 52 cannot rotate relatively in the first groove body 431; the lug 521 is correspondingly nested and matched with the second groove body 432; the bump 521 is hemispherical; the alignment between the smooth surface of the convex block 521 and the second groove body 432 can be quickly realized, so that the second support rod 5 is quickly positioned, and the installation efficiency is improved.
A limiting piece 433 is inserted and inserted through the side wall of the first groove body 431; a slot 522 is arranged on the side surface of the positioning block 52; the telescopic track of the limiting piece 433 along the inserting direction corresponds to the position of the slot 522, and the positioning block 52 can be placed to be separated from the first groove body 431 after the limiting piece 433 is clamped into the slot 522.
A leaning piece 12 is also arranged on one side of the second table top 2, which is back to the first table top 1; as shown in fig. 1, the abutment member 12 comprises a measuring tape 121 and an insert 122; the insert block 122 is connected and arranged at the bottom of the measuring tape 121; the embedded block 122 is correspondingly nested and matched with the first positioning groove 11; the bottom of the measuring tape 121 is correspondingly attached to the second table top 2; when the second table top 2 is not unfolded, the abutting piece 12 is embedded into the first positioning groove 11, and the operation of workers is interfered by the wall surface groove structure; the side surface of the abutting piece 12 can be used as a standard reference plane for aligning a PCB and other equipment, jigs and the like; meanwhile, the measuring scale 121 can also assist in roughly measuring the size of the article; the upper end of the first table top 1 is also provided with a plurality of first positioning grooves 11 so as to be matched with the abutting pieces 12 after being opened.
A first magnetic sheet 101 is attached to the bottom of the first positioning groove 11; the bottom of the insert 122 is provided with a second magnetic sheet 102 in an attaching manner; the first magnetic sheet 101 and the second magnetic sheet 102 have different magnetic poles and attract each other; when there is magnetic attraction between first constant head tank 11 and abaculus 122, just can do for a short time with abaculus 122 bottom size in making, be convenient for rely on self gravity directly to drop and get into first constant head tank 11 in, the time of having removed the alignment from, further reduce to lean on the installation degree of difficulty of leaning on this kind of part of needs many times dismouting of piece 12, save time.
The above description is only a preferred embodiment of the present invention, and it should be noted that: for those skilled in the art, without departing from the principle of the present invention, several improvements and modifications can be made, and these improvements and modifications should also be considered as the protection scope of the present invention.
Claims (6)
1. A multistation operation panel for PCB board performance research and development test, its characterized in that: comprises a first table top (1) and a second table top (2); the first table top (1) is hinged with the second table top (2); a support component (3) is arranged at the bottom of the first table top (1); the support assembly (3) comprises a first stay bar (4) and a second stay bar (5); the top of the first support rod (4) is connected with the first table top (1); the upper end of the second support rod (5) is embedded at the upper end of the first support rod (4) in a matching manner; the lower ends of the first support rod (4) and the second support rod (5) are in bearing contact with the ground; the lower end of the second support rod (5) is hinged with a third support rod (6); a first positioning groove (11) is formed in one side, back to the first table top (1), of the second table top (2); the second table board (2) is turned to a position horizontal to the first table board (1), and one end, far away from the second support rod (5), of the third support rod (6) is embedded into the first positioning groove (11) in a matched mode; the supporting components (3) are distributed on two sides of the bottom of the first table board (1) in pairs along the rotating shaft direction of the second table board (2).
2. The multi-station operating platform for PCB performance research and development tests according to claim 1, wherein: a containing groove (51) is arranged on the second support rod (5) along the length direction of the second support rod; the third support rod (6) is correspondingly nested and matched with the accommodating groove (51).
3. The multi-station operating platform for PCB performance research and development tests according to claim 2, wherein: the first support rod (4) comprises a seat body (41) and a rod body (42); the upper end of the rod body (42) is correspondingly inserted into the bottom of the seat body (41); the top of the seat body (41) is connected with the first table board (1); a second positioning groove (43) is formed in one side, facing the second support rod (5), of the seat body (41); the second positioning groove (43) comprises a first groove body (431) and a second groove body (432); the second groove body (432) is positioned at the bottom of the first groove body (431) in the depth direction; a positioning block (52) is arranged at the upper end of the second support rod (5); a convex block (521) is arranged on one side of the positioning block (52) facing the base body (41); the positioning block (52) is correspondingly nested and matched with the first groove body (431); the lug (521) is correspondingly nested and matched with the second groove body (432); the bump (521) is hemispherical.
4. The multi-station operating platform for PCB performance research and development tests according to claim 3, wherein: a limiting piece (433) is inserted into the side wall of the first groove body (431) in a penetrating manner; a slot (522) is formed in the side surface of the positioning block (52); the telescopic track of the limiting piece (433) along the inserting direction corresponds to the position of the slot (522).
5. The multi-station operating platform for PCB performance research and development tests according to claim 1, wherein: a leaning piece (12) is also arranged on one side of the second table top (2) back to the first table top (1); the abutment (12) comprises a measuring scale (121) and an insert (122); the embedded block (122) is connected and arranged at the bottom of the measuring scale (121); the embedded block (122) is correspondingly nested and matched with the first positioning groove (11); the bottom of the measuring scale (121) is correspondingly attached to the second table top (2); the upper end of the first table board (1) is also provided with a plurality of first positioning grooves (11).
6. The multi-station operating platform for PCB performance research and development tests according to claim 5, wherein: a first magnetic sheet (101) is attached to the bottom of the first positioning groove (11); the bottom of the embedded block (122) is provided with a second magnetic sheet (102) in an attaching manner; the first magnetic sheet (101) and the second magnetic sheet (102) have different magnetic poles and attract each other.
Priority Applications (1)
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CN202020360792.4U CN211476922U (en) | 2020-03-20 | 2020-03-20 | Multi-station operating table for PCB performance research and development test |
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CN202020360792.4U CN211476922U (en) | 2020-03-20 | 2020-03-20 | Multi-station operating table for PCB performance research and development test |
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CN211476922U true CN211476922U (en) | 2020-09-11 |
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CN202020360792.4U Active CN211476922U (en) | 2020-03-20 | 2020-03-20 | Multi-station operating table for PCB performance research and development test |
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