SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome prior art's shortcoming, provide a reduce intensity of labour, improve work efficiency's electronic components character defective products screening plant.
The purpose of the utility model is realized through the following technical scheme:
the utility model provides an electronic components character defective products screening plant, includes:
the material slide way is arranged in a downward inclination mode and comprises a detection section, a transfer section, a good product section and a bad product section which are arranged in parallel, wherein the detection section and the transfer section are sequentially arranged along the material sliding direction; the transfer section is connected with a first driving piece so as to enable the transfer section to be in butt joint with the good product section or the defective product section; the transfer section is provided with a first material blocking rod, and the first material blocking rod is connected with a second driving piece so that the first material blocking rod can stay in the transfer section;
the character detection device is used for detecting whether the characters engraved by the materials passing through the detection section are wrong or not; the detection section is provided with a second material blocking rod, and the second material blocking rod is connected with a third driving piece so that the materials can stop at the detection position.
Optionally, the detection section is provided with a third material blocking rod, the third material blocking rod is also connected with the third driving piece, and when the second material blocking rod releases the previous detected material, the third material blocking rod can support the next detected material to be tightly against the inner wall of the detection section.
Optionally, the material slide includes bearing bottom plate and protective cover plate, bearing bottom plate and protective cover plate can dismantle the connection, protective cover plate is equipped with the spout that can hold the material.
Optionally, a linear guide rail is arranged at the bottom of the transfer section, and the transfer section is fixedly connected with a slide block of the linear guide rail.
Optionally, the defective product section is provided with a fourth material blocking rod, and the fourth material blocking rod is connected with a fourth driving part, so that the material can stay in the defective product section.
Optionally, the head ends of the good product section and the defective product section are both provided with a first sensor.
Optionally, the good section and the defective section are provided with a second sensor at the tail end.
The utility model has the advantages of it is following: in the utility model, the material slide way is arranged in a downward inclination way, so that the material slides under the action of gravity without external power; the material slide way comprises a detection section, a transfer section, a good product section and a bad product section which are arranged in parallel, which are sequentially arranged along the material sliding direction; the second material blocking rod arranged on the detection section stops the material at the detection position, after the detection is carried out by the character detection device, the second material blocking rod is moved away, and the material enters the transfer section and is blocked by the first material blocking rod; if the detected materials are good (i.e. the materials have no wrong engraving or missing engraving characters), the first driving piece drives the transfer section to be in butt joint with the good section, the first stop rod of the transfer section is removed, and the materials enter the good section; on the contrary, if the material is found to be a defective product after detection, the first driving piece drives the transfer section to be in butt joint with the defective product section, the first material blocking rod of the transfer section is removed, and the material enters the defective product section; so, then realized the screening of character defective products, compared with current mode, reduced operating personnel intensity of labour, improved work efficiency.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings that are required to be used in the embodiments of the present application will be briefly described below, it should be understood that the following drawings only illustrate some embodiments of the present application and therefore should not be considered as limiting the scope, and that those skilled in the art can also obtain other related drawings based on the drawings without inventive efforts.
Fig. 1 is a schematic structural diagram of a screening device for defective electronic component characters according to the present invention;
fig. 2 is a front view of the screening device for defective characters of electronic components provided by the present invention;
FIG. 3 is a cross-sectional view A-A of FIG. 2;
FIG. 4 is a cross-sectional view taken along line B-B of FIG. 2;
FIG. 5 is a view along the line C in FIG. 2 (hidden character detecting device);
FIG. 6 is a cross-sectional view taken along line D-D of FIG. 5;
in the figure: 1-material slide way, 101-bearing bottom plate, 102-protective cover plate, 102 a-sliding groove, 102 b-avoiding groove, 2-detection section, 201-second material blocking rod, 202-third driving piece, 203-third material blocking rod, 204-first connecting piece, 3-transfer section, 301-first driving piece, 302-first material blocking rod, 303-second driving piece, 4-good section, 5-bad product section, 501-fourth material blocking rod, 502-fourth driving piece, 6-character detection device, 7-linear guide rail, 8-first sensor, 9-second sensor, 10-base and 11-material.
Detailed Description
The technical solution in the embodiments of the present application is described below with reference to the drawings in the embodiments of the present application.
It should be noted that: like reference numbers and letters refer to like items in the following figures, and thus, once an item is defined in one figure, it need not be further defined and explained in subsequent figures. Meanwhile, in the description of the present application, the terms "first", "second", and the like are used only for distinguishing the description, and are not to be construed as indicating or implying relative importance.
As shown in fig. 1 to 6, the screening device for the defective characters of the electronic component comprises a material slide way 1 and a character detection device 6.
In this embodiment, the material chute 1 is mounted on the base 10 by screws and is arranged to be inclined downward so that the material 11 slides under the action of gravity. Referring to fig. 4, the material chute 1 includes a bearing bottom plate 101 and a protective cover plate 102, the bearing bottom plate 101 and the protective cover plate 102 are detachably connected by screws, the detachable connection mode may be a screw connection, the protective cover plate 102 is provided with a chute 102a capable of accommodating the material 11, it is worth describing that the width of the chute 102a may be slightly larger than the width of the material 11, so that the material 11 can slide smoothly; in addition, generally, the electronic component has pins (also called "pins"), and the protective cover 102 is further provided with an escape groove 102b that avoids the pins.
In this embodiment, material slide 1 includes along 11 slip directions of material set gradually the detection section 2, transfer section 3 to and the good products section 4 and the defective products section 5 of arranging side by side.
In this embodiment, the character detection device 6 is mounted on the base 10 through a screw, and is used for detecting whether the characters engraved by the material 11 passing through the detection section 2 are wrong or not, and it is easy to understand that the top of the protective cover plate 102 of the material slide way 1 is provided with a corresponding detection hole.
In this embodiment, the detection section 2 is provided with a second material blocking rod 201, and the second material blocking rod 201 is connected with a third driving member 202, so that the material 11 can stay at the detection position; in this embodiment, the detection section 2 is further provided with a third material blocking rod 203, the third material blocking rod 203 is also connected to the third driving element 202, and when the second material blocking rod 201 releases the previous detected material 11, the third material blocking rod 203 can support the next detected material 11 against the inner wall of the detection section 2.
Specifically, referring to fig. 3, the third driving member 202 is an air cylinder, and is installed on the base 10 through a screw, the air cylinder is located on a first side of the material slide way 1 (for convenience of description, two sides of the material slide way 1 are named as a first side and a second side, respectively), a piston rod of the air cylinder is connected with the first connecting member 204 in a welding or threaded connection manner, the first connecting member 204 is also located on the first side of the material slide way 1, and the third material blocking rod 203 is connected with the first connecting member 204 through a thread; the first connection 204 has a connection portion extending from the bottom of the material chute 1 to the second side of the material chute 1, and the second connection rod is in threaded connection with the connection portion. When the material 11 needs to be blocked for character detection, the piston rod of the third driving member 202 retracts to the first side, and the second blocking rod 201 blocks the end part of the material 11; after the detection is completed, the piston rod of the third driving member 202 is extended to the second side, and the second material blocking rod 201 releases the materials 11, and simultaneously, the third material blocking rod 203 abuts against the side wall of the next material 11, so as to prevent the material from sliding down along with the previous detected material 11. It is worth to be noted that the third material blocking rod 203 is arranged, so that a plurality of materials 11 can enter the detection section 2 at the same time, and the detection section 2 can be directly butted with the discharge end of the previous station.
In this embodiment, the transit section 3 is connected to a first driving member 301, so that the transit section 3 is butted with the good product section 4 or the bad product section 5; specifically, first driving piece 301 is the cylinder, and the side of transfer section 3 passes through threaded connection with the piston rod of cylinder, and during the use, through the flexible of piston rod, drive transfer section 3 and remove, make it can dock with good product section 4 or dock with defective products section 5.
In this embodiment, referring to fig. 6, the middle section 3 is provided with a first stop rod 302, and the first stop rod 302 is connected to a second driving member 303, so that the first stop rod 302 can stop at the middle section 3; specifically, the second driving member 303 is an air cylinder, the air cylinder is mounted at the top of the middle transfer section 3 through a screw, and the first striker rod 302 is connected with a piston rod of the air cylinder. When the material blocking device is used, before the transfer section 3 is in butt joint with the good product section 4 or the bad product section 5, the piston rod of the second driving piece 303 extends out, so that the first material blocking rod 302 blocks the material 11, and the material 11 is prevented from sliding off the transfer section 3 when the transfer section moves; after the middle section 3 is butted with the good section 4 or the bad section 5, the piston rods of the two driving members retract, and the first stop rod 302 releases the material 11.
In this embodiment, the bottom of transfer section 3 is equipped with linear guide 7, and transfer section 3 and linear guide 7's slider fixed connection, the mode of solid top connection are the screw connection, and linear guide 7 passes through the mounting screw on base 10, and linear guide 7 of setting can provide the direction for transfer section 3's removal.
In this embodiment, good products section 4 slides to next station, but defective products collecting tool can be connected after defective products section 5, defective products section 5 is equipped with fourth striker rod 501 on this basis, fourth striker rod 501 is connected with fourth driver 502 to make material 11 stop in defective products section 5, specifically, fourth striker rod 501 is fourth driver 502's the mode of setting can be the same with the mode of setting of first striker rod 302 and second driver 303 in transfer section 3, no longer describe here any more.
In this embodiment, the head end of non-defective products section 4 and defective products section 5 all is equipped with first sensor 8 to whether have non-defective products and defective products to pass through in detection non-defective products section 4 and defective products section 5, and then know the device whether normal operating, further, the end of non-defective products section 4 and defective products section 5 all is equipped with second sensor 9, and first sensor 8 and second sensor 9 move simultaneously, avoid one of them sensor out of work unable detection often.
When the device is used, the material 11 continuously enters the detection section 2 of the material channel 1 from the previous station, and slides under the action of gravity; when characters are detected, the second material blocking rod 201 arranged on the detection section 2 stops the material 11 at a detection position, after the detection is performed by the character detection device 6, the second material blocking rod 201 is moved away, the third material blocking rod 203 blocks the next undetected material 11, and the detected material 11 enters the transfer section 3 and is blocked by the first material blocking rod 302; if the detected materials 11 are found to be good (i.e. no wrong or missing characters are engraved), the first driving piece 301 drives the transfer section 3 to butt with the good section 4, the first material blocking rod 302 of the transfer section 3 is removed, and the materials 11 enter the good section 4; on the contrary, if the material 11 is found to be a defective product after detection, the first driving member 301 drives the transit section 3 to butt with the defective product section 5, the first material blocking rod 302 of the transit section 3 is removed, and the material 11 enters the defective product section 5; so, then realized the screening of character defective products, compared with current mode, reduced operating personnel intensity of labour, improved work efficiency.
The above description is only for the specific embodiments of the present application, but the scope of the present application is not limited thereto, and any person skilled in the art can easily conceive of the changes or substitutions within the technical scope of the present application, and shall be covered by the scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims.