CN216262117U - Climbing mechanism and check out test set - Google Patents

Climbing mechanism and check out test set Download PDF

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Publication number
CN216262117U
CN216262117U CN202122106080.7U CN202122106080U CN216262117U CN 216262117 U CN216262117 U CN 216262117U CN 202122106080 U CN202122106080 U CN 202122106080U CN 216262117 U CN216262117 U CN 216262117U
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CN
China
Prior art keywords
jacking
assembly
adjusting
ejector rod
mounting
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Active
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CN202122106080.7U
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Chinese (zh)
Inventor
张明
经浩
高云峰
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Shenzhen Han Family Sealing And Testing Technology Co ltd
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Shenzhen Dazu Photoelectric Equipment Co ltd
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Priority to CN202122106080.7U priority Critical patent/CN216262117U/en
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Abstract

The utility model discloses a jacking mechanism and detection equipment, wherein the jacking mechanism comprises: the abutting assembly comprises an installation seat and a plurality of abutting rods, and the plurality of abutting rods are respectively and elastically connected with the installation seat; the jacking assembly is connected with the mounting seat in a sliding manner; the adjusting assemblies are multiple and are connected with the jacking assembly in a sliding mode, and each adjusting assembly corresponds to one jacking rod; the adjusting assembly moves relative to the jacking assembly and is provided with a jacking position and an avoiding position; the jacking assembly is opposite to the mounting seat and slides to be close to the ejector rod, the adjusting assembly at the abutting position can push the ejector rod correspondingly, and the adjusting assembly at the avoiding position can avoid the ejector rod correspondingly. The jacking mechanism in the technical scheme of the utility model has the advantages of simple structure and high jacking accuracy.

Description

Climbing mechanism and check out test set
Technical Field
The utility model relates to the technical field of feeding and discharging, in particular to a jacking mechanism and detection equipment using the jacking mechanism.
Background
With the development of industrial technology, equipment is gradually developed toward automation and semi-automation in order to realize high-efficiency processing and production. The jacking mechanism is widely applied to various machining and detection equipment and can be used for jacking workpieces. In the mechanical equipment of multistation, often need according to the selective work piece to different stations of condition jacking, this jacking mechanism structure to the multistation is comparatively complicated usually.
SUMMERY OF THE UTILITY MODEL
The utility model provides a jacking mechanism which is simple in structure and high in jacking accuracy.
The utility model provides a jacking mechanism, which comprises:
the abutting assembly comprises an installation seat and a plurality of abutting rods, and the plurality of abutting rods are respectively and elastically connected with the installation seat;
the jacking assembly is connected with the mounting seat in a sliding manner; and
the plurality of adjusting assemblies are connected with the jacking assembly in a sliding manner, and each adjusting assembly corresponds to one jacking rod;
the adjusting assembly moves relative to the jacking assembly and is provided with a jacking position and an avoiding position; the jacking assembly is opposite to the mounting seat and slides to be close to the ejector rod, the adjusting assembly at the abutting position can push the ejector rod correspondingly, and the adjusting assembly at the avoiding position can avoid the ejector rod correspondingly.
Optionally, the jacking assembly is connected with the mounting seat in a sliding manner along a first direction, and the adjusting assembly is connected with the jacking assembly in a sliding manner along a second direction; the first direction and the second direction are arranged at an included angle.
Optionally, the adjusting component has a protruding portion and a recessed portion, which are sequentially arranged along the second direction, the adjusting component is located when the pushing position is reached, the protruding portion corresponds to the pushing rod, and the adjusting component is located when the pushing position is reached, the recessed portion corresponds to the pushing rod.
Optionally, the ejector rods are arranged side by side, the adjusting assemblies are respectively located on two sides of the ejector assembly, and two adjacent ejector rods respectively correspond to the adjusting assemblies on two sides of the ejector assembly.
Optionally, the jacking assembly is provided with a plurality of adjusting channels, and each adjusting assembly correspondingly penetrates through one adjusting channel and can slide along the extending direction of the adjusting channel.
Optionally, the jacking assembly is further provided with a plurality of jacking channels, and one end of each jacking rod correspondingly penetrates through the jacking channels and can slide along the extending direction of the jacking channels;
each adjusting channel is communicated with one jacking channel, and the adjusting assembly can be used for pushing or avoiding the ejector rod at the intersection of the adjusting channel and the jacking channel.
Optionally, the jacking assembly includes a moving member and a jacking member, and the jacking member is connected with the moving member and slidably connected with the mounting seat; the moving member is provided with a plurality of the regulating passages.
Optionally, the mounting seat is provided with a plurality of mounting holes, and each ejector rod is respectively arranged in one of the mounting holes in a penetrating manner and extends out of two sides of the mounting seat;
the mounting seat is also provided with two limiting parts which are oppositely arranged;
the ejector rod is provided with a stopping part which protrudes out of the ejector rod;
the propping assembly comprises a plurality of elastic pieces, each elastic piece is arranged corresponding to one of the pushing rods, the elastic pieces are elastically compressed between the stopping part and one of the limiting parts, and the other limiting part stops at one side of the stopping part, which is far away from the elastic pieces.
Optionally, the mount includes:
the first mounting part is provided with the limiting part and a first through hole; and
the second mounting part is provided with the limiting part and a second through hole;
the first installation part is connected with the second installation part, and the first through hole is communicated with the second through hole to form an installation hole.
The utility model also provides detection equipment, which comprises a rack, a detection device and a jacking mechanism;
the climbing mechanism includes:
the abutting assembly comprises an installation seat and a plurality of abutting rods, and the plurality of abutting rods are respectively and elastically connected with the installation seat;
the jacking assembly is connected with the mounting seat in a sliding manner; and
the plurality of adjusting assemblies are connected with the jacking assembly in a sliding manner, and each adjusting assembly corresponds to one jacking rod;
the adjusting assembly moves relative to the jacking assembly and is provided with a jacking position and an avoiding position; when the jacking assembly slides relative to the mounting seat and is close to the ejector rod, the adjusting assembly located at the abutting position can push the corresponding ejector rod, and the adjusting assembly located at the avoiding position can avoid the corresponding ejector rod;
the workpiece detection device comprises a rack, a detection device and a jacking mechanism, wherein the rack is provided with a plurality of workpieces, the detection device detects the workpieces, the jacking mechanism is electrically connected with the detection device, and the jacking mechanism pushes the workpieces according to a detection result of the detection device.
In the technical scheme of the utility model, the jacking assembly is connected with the mounting seat of the jacking assembly in a sliding manner, and the jacking assembly can move towards the positions of the plurality of jacking rods or move towards the positions far away from the positions of the plurality of jacking rods. The adjusting component is connected to the jacking component, and under the drive of the jacking component, the adjusting component can also move towards the positions where the plurality of jacking rods are located, or move towards the positions where the plurality of jacking rods are located.
When the adjusting component moves relative to the jacking component and is located at the abutting position, the adjusting component can abut against the corresponding ejector rod in the moving process that the jacking component moves towards the direction close to the ejector rod, so that the ejector rod can abut against the corresponding workpiece.
When the adjusting component moves relative to the jacking component and is located at the avoidance position, the adjusting component can avoid the corresponding jacking rod in the movement process of the jacking component towards the direction close to the jacking rod, so that the jacking rod does not move, and workpieces at corresponding positions are not pushed.
When the jacking mechanism is applied, the corresponding adjusting assembly can be adjusted according to the position of the workpiece which does not need to be pushed, so that the corresponding adjusting assembly is positioned at the avoidance position, and the jacking mechanism can be used for selectively pushing the workpieces at different stations. The jacking mechanism is simple in structure and convenient to adjust, so that mechanical equipment such as detection equipment and machining equipment using the jacking mechanism has a good jacking effect, and the jacking position is accurate.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the structures shown in the drawings without creative efforts.
FIG. 1 is a schematic structural view of a jacking mechanism of the present invention;
FIG. 2 is a schematic view of another embodiment of a jacking mechanism of the present invention;
FIG. 3 is a cross-sectional view of a jacking mechanism of the present invention;
FIG. 4 is an enlarged view taken at A in FIG. 3;
fig. 5 is an enlarged view at B in fig. 3.
The reference numbers illustrate:
reference numerals Name (R) Reference numerals Name (R)
100 Jacking mechanism 33 Jacking piece
10 Propping assembly 35 Guide member
11 Mounting seat 36 Fixing plate
111 Mounting hole 50 Adjusting assembly
113 Limiting part 51 Adjusting part
13 Ejector pin 511 Raised part
131 Stop part 513 Concave part
15 Elastic piece 53 Adjusting drive
30 Jacking assembly 55 Adjusting support
31 Moving part 60 Bottom support plate
311 Regulating channel 70 Middle support plate
313 Jacking channel 80 Upright post
The implementation, functional features and advantages of the objects of the present invention will be further explained with reference to the accompanying drawings.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
It should be noted that all the directional indicators (such as up, down, left, right, front, and rear … …) in the embodiment of the present invention are only used to explain the relative position relationship between the components, the movement situation, etc. in a specific posture (as shown in the drawing), and if the specific posture is changed, the directional indicator is changed accordingly.
In addition, the descriptions related to "first", "second", etc. in the present invention are for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In addition, technical solutions between various embodiments may be combined with each other, but must be realized by a person skilled in the art, and when the technical solutions are contradictory or cannot be realized, such a combination should not be considered to exist, and is not within the protection scope of the present invention.
Referring to fig. 1, the present invention provides a jacking mechanism 100, where the jacking mechanism 100 may be applied to multi-station mechanical equipment, and particularly may be applied to detection equipment and machining equipment, and can selectively perform blanking on good products in the detection equipment and selectively perform machining on workpieces in the machining equipment. Of course, the jacking mechanism 100 provided by the utility model can also be applied to other application occasions to realize the selective jacking of the workpiece.
In an embodiment of the present invention, the jacking mechanism 100 may include: the jacking assembly 10, the jacking assembly 30 and the adjusting assembly 50. The propping assembly 10 comprises an installation seat 11 and a plurality of propping rods 13, wherein the propping rods 13 are respectively and elastically connected with the installation seat 11; the jacking assembly 30 is connected with the mounting base 11 in a sliding manner; the number of the adjusting assemblies 50 is multiple, the plurality of adjusting assemblies 50 are connected with the jacking assembly 30 in a sliding manner, and each adjusting assembly 50 is arranged corresponding to one jacking rod 13;
the adjusting assembly 50 moves relative to the jacking assembly 30 and has a propping position and an avoiding position, when the jacking assembly 30 slides relative to the mounting seat 11 and approaches the ejector rod 13, the adjusting assembly 50 located at the propping position can push the corresponding ejector rod 13, and the adjusting assembly 50 located at the avoiding position can avoid the corresponding ejector rod 13.
In this embodiment, the jacking assembly 30 is slidably connected to the mounting seat 11 of the abutting assembly 10, and the jacking assembly 30 can move towards the positions of the plurality of pushing rods 13, or move away from the positions of the plurality of pushing rods 13. The adjusting assembly 50 is connected to the jacking assembly 30, and driven by the jacking assembly 30, the adjusting assembly 50 can also move towards the positions of the plurality of jacking rods 13, or move towards the positions away from the positions of the plurality of jacking rods 13.
When the adjusting assembly 50 moves relative to the jacking assembly 30 and is located at the jacking position, in the process that the jacking assembly 30 moves towards the pushing rod 13, the adjusting assembly 50 can be pushed against the corresponding pushing rod 13, so that the pushing rod 13 can push the corresponding workpiece.
When the adjusting assembly 50 moves relative to the jacking assembly 30 and is located at the avoidance position, in the moving process that the jacking assembly 30 moves towards the pushing rod 13, the adjusting assembly 50 can avoid the corresponding pushing rod 13, so that the pushing rod 13 does not move, and workpieces at corresponding positions are not pushed.
When the jacking mechanism 100 of the utility model is applied, the corresponding adjusting component 50 can be adjusted according to the position of the workpiece which does not need to be pushed, so that the corresponding adjusting component 50 is positioned at the avoidance position, and therefore, the jacking mechanism 100 can be used for selectively pushing the workpieces at different stations. The jacking mechanism 100 is simple in structure and convenient to adjust, so that mechanical equipment such as detection equipment and processing equipment using the jacking mechanism 100 has a good jacking effect, and the jacking position is accurate.
Referring to fig. 2, in the embodiment of the present invention, the jacking assembly 30 is slidably connected to the mounting base 11 along a first direction, and the adjusting assembly 50 is slidably connected to the jacking assembly 30 along a second direction; the first direction and the second direction are arranged at an included angle.
In the above embodiment, the direction of the jacking assembly 30 moving relative to the mounting base 11 is defined as a first direction, and the direction of the adjusting assembly 50 moving relative to the jacking assembly 30 is defined as a second direction. When the first direction and the second direction form an included angle, the adjusting assembly 50 is easier to adjust, and the overall structure of the jacking mechanism 100 is more compact. In the embodiment shown in fig. 2, the first direction and the second direction may be perpendicular to each other.
It will be appreciated that in embodiments not shown, the first direction may also be parallel to the second direction.
With reference to fig. 3 and 4, further, the adjusting assembly 50 has a protrusion 511 and a recess 513 sequentially arranged along the second direction, when the adjusting assembly 50 is located at the abutting position, the protrusion 511 corresponds to the ejector pin 13, and when the adjusting assembly 50 is located at the avoiding position, the recess 513 corresponds to the ejector pin 13. In this embodiment, the protrusion 511 is a portion of the adjustment assembly 50 protruding toward the mounting seat 11, and the recess 513 is a portion of the adjustment assembly 50 recessed toward the mounting seat 11.
In the process that the jacking assembly 30 slides relative to the mounting seat 11 and approaches to the ejector rod 13, when the protruding portion 511 of the adjusting assembly 50 corresponds to the ejector rod 13, the protruding portion 511 of the adjusting assembly 50 can abut against the corresponding ejector rod 13, and when the recessed portion 513 of the adjusting assembly 50 corresponds to the ejector rod 13, the recessed portion 513 of the adjusting assembly 50 can avoid the corresponding ejector rod 13, that is, the corresponding ejector rod 13 falls into the recessed portion 513, so that the adjusting assembly 50 cannot push the ejector rod 13 at the corresponding position.
In the above embodiment, the adjusting assembly 50 may include an adjusting member 51 and an adjusting driving member 53, wherein the adjusting driving member 53 is connected to the adjusting member 51 and can drive the adjusting member 51 to reciprocate along the second direction. The adjustment drive 53 may be a pneumatic cylinder.
It will be appreciated that the adjustment assembly 50 of the above embodiments may also be manually adjusted, i.e., the adjustment assembly 50 is manually pushed/pulled directly to achieve movement of the adjustment assembly 50 relative to the jacking assembly 30 to position the adjustment assembly 50 in the jacking position or the avoiding position.
Referring to fig. 2, in the above embodiment, the pushing rods 13 may be arranged side by side, the adjusting assemblies 50 are respectively located at two sides of the jacking assembly 30, and two adjacent pushing rods 13 respectively correspond to the adjusting assemblies 50 at two sides of the jacking assembly 30, that is, one of any two adjacent pushing rods 13 corresponds to one adjusting assembly 50 at one side of the jacking assembly 30, and the other of any two adjacent pushing rods 13 corresponds to one adjusting assembly 50 at the other side of the jacking assembly 30.
Under this structure, set up a plurality of adjusting part 50 respectively in jacking subassembly 30's both sides for lie in and have abundant activity space between two adjacent adjusting part 50 with one side, and can make full use of jacking mechanism 100's structural space, make this jacking mechanism 100 structure compacter, and whole weight distribution is more even.
In the above embodiment, when the adjusting assembly 50 includes the adjusting member 51 and the adjusting driving member 53, the adjusting assembly 50 may further include an adjusting bracket 55, and the adjusting bracket 55 connects the adjusting driving members 53 of the plurality of adjusting assemblies 50 and is connected to the jacking assembly 30, so that the adjusting assembly 50 as a whole can follow the jacking assembly 30 to move synchronously.
With further reference to fig. 4, in the above embodiment, the jacking assembly 30 may be provided with a plurality of adjusting channels 311, and each adjusting assembly 50 is correspondingly disposed through one of the adjusting channels 311 and can slide along the extending direction of the adjusting channel 311. The extension direction of the adjustment passage 311 is the second direction described in the above embodiments.
Under this structure, every adjusting part 50 is in the motion process, all can be guided by the passageway lateral wall of regulation passageway 311 for the motion of adjusting part 50 is more steady.
In the above embodiment, the jacking assembly 30 may further include a plurality of jacking channels 313, and one end of each jacking rod 13 is correspondingly inserted into the jacking channels 313 and can slide along the extending direction of the jacking channels 313. Under this structure, every ejector pin 13 can be guided by the passageway lateral wall of this jacking passageway 313 in the motion process for the motion of ejector pin 13 is more steady, the top pushes the position more accurate.
The jacking assembly 30 may also be provided with an adjusting channel 311 and a jacking channel 313, each adjusting channel 311 is communicated with one jacking channel 313, and the adjusting assembly 50 can push or avoid the jacking rod 13 at the intersection of the adjusting channel 311 and the jacking channel 313. Considering an adjusting assembly 50 and a corresponding ejector rod 13 as a pushing adjusting set, each pushing adjusting set can act in an independent channel without affecting other pushing adjusting sets, so that the reliability of the jacking mechanism 100 is higher in the working process.
In the above embodiment, the jacking assembly 30 may further include a moving member 31 and a jacking member 33, the jacking member 33 is connected to the moving member 31 and slidably connected to the mounting base 11; the moving member 31 is provided with a plurality of regulating passages 311.
The moving member 31 is used for installing the adjusting assembly 50, and the jacking member 33 is used for realizing jacking action and can jack the moving member 31. Under this structure, moving member 31 and jacking piece 33 are solitary structure for moving member 31 can produce, process alone, and the shaping is simpler.
In the above embodiment, the mounting base 11 may be provided with the guide 35, and the jacking assembly 30 is slidably connected to the mounting base 11 through the guide 35. This guide 35 can be the guide bar, and guide bar fixed connection mount 11 to extend along first direction (the moving direction of moving member 31), moving member 31 sliding connection in guide bar makes the motion of moving member 31 more steady. A linear bearing can be further arranged on the guide rod, and the moving member 31 is fixedly connected with the linear bearing, so that the movement of the moving member 31 relative to the guide rod is smoother and smoother. The quantity of guide bars can be set as required, as shown in fig. 1, in this embodiment, the guide bars are two, two guide bars are set on two opposite sides of the moving member 31, and the two guide bars are equal to the distance from the jacking member 33 to the action position of the moving member 31.
It will be appreciated that the jacking member 33 is movable relative to the mounting base 11, and the jacking member 33 may include a fixed portion and a movable portion, the movable portion being connected to the fixed portion and being capable of reciprocating relative to the fixed portion. The jack 33 may be implemented by various mechanical structures, such as a hydraulic cylinder or an air cylinder.
When a plurality of ejector pins 13 one side set up side by side, a plurality of regulation passageways 311 on moving member 31 also set up side by side, in order to make climbing mechanism 100's overall structure compacter, moving member 31's outline can be roughly cuboid structure, moving member 31's length direction is the direction that a plurality of regulation passageways 311 were arranged promptly, two guides 35 can connect respectively in moving member 31 both ends on length direction to make moving member 31's atress even, the motion effect is better.
Referring to fig. 5, in the above embodiment, the mounting base 11 is provided with a plurality of mounting holes 111, and each of the pushing rods 13 is respectively inserted into one of the mounting holes 111 and extends out of two opposite sides of the mounting base 11. In the process that the jacking assembly 30 slides relative to the mounting seat 11, the adjusting assembly 50 can be driven to push the jacking rod 13 to extend out of one side of the mounting seat 11, so that the extension length of the jacking rod 13 extending out of the other side of the mounting seat 11 is further extended, and a workpiece to be pushed is pushed.
In the above embodiment, each pushing rod 13 is provided with a stopping portion 131, the stopping portion 131 is disposed to protrude toward the outer side of the pushing rod 13, the abutting assembly 10 includes a plurality of elastic members 15, each elastic member 15 is disposed corresponding to one pushing rod 13, and the elastic member 15 is elastically compressed between the stopping portion 131 of the pushing rod 13 and the mounting seat 11. When the adjusting assembly 50 pushes the ejector rod 13, the elastic member 15 is further compressed, so that the ejector rod 13 can move stably, and the ejector rod 13 can be restored to the designated position after the external force is removed.
The mounting base 11 may have two opposite limiting portions 113, the two limiting portions 113 stop at one end of the elastic element 15 and the stopping portion 131 deviates from one end of the elastic element 15, that is, the elastic element 15 is elastically compressed between the stopping portion 131 and one limiting portion 113, and the other limiting portion 113 stops at one side of the stopping portion 131 deviating from the elastic element. The ejector rod 13 can not be separated from the mounting seat 11 after being mounted on the mounting seat 11, so that the whole installation of the jacking mechanism 100 is more convenient.
The mounting seat 11 may include a first mounting portion and a second mounting portion, the first mounting portion is provided with a first through hole, the second mounting portion is provided with a second through hole, the first mounting portion is connected with the second mounting portion, and the first through hole is communicated with the second through hole to form a mounting hole 111; one limiting part 113 is disposed on the first mounting part, and the other limiting part 113 is disposed on the second mounting part. This structure can be easier to process two spacing portions 113 on mount pad 11 for the production, the installation process of mount pad 11 are simpler.
In an embodiment of the present invention, the jacking mechanism 100 may have a mounting bracket, and the mounting bracket includes a bottom support plate 60 and a middle support plate 70, and the bottom support plate 60 and the middle support plate 70 may be connected by a column 80. The mounting seat 11 is located on a side of the middle support plate 70 facing away from the bottom support plate 60, and the mounting seat 11 and the middle support plate 70 can be connected by a pillar 80. The fixing portion of the jacking member 33 can be fixed to the middle support plate 70 and located on a side of the middle support plate 70 facing away from the mounting seat 11, and a through hole is formed in the middle support plate 70 and allows the movable portion of the jacking member 33 to pass through. Moving member 31 is located between middle part backup pad 70 and mount pad 11, mount pad 11 is connected to the one end of guide bar, the other end extends towards middle part backup pad 70 direction, the one end that two guide bars deviate from mount pad 11 is connected with fixed plate 36, this fixed plate 36 and 11 guide bars of mount pad provide the support, still can make to push up subassembly 10 and moving member 31 and assemble the back reconnection on the mounting bracket alone for climbing mechanism 100's overall installation process is more simple and convenient. The fixing plate 36 is also provided with a through hole for the movable part of the lifting member 33 to pass through. The movable part of the jacking member 33 can be connected to the moving member 31 after passing through the through hole on the middle supporting plate 70 and the through hole on the fixing plate 36, and drives the moving member 31 to be close to the mounting seat 11 or to be far away from the mounting seat 11.
The utility model also provides a detection device, which comprises a rack, a detection device and a jacking mechanism 100. The specific structure of the jacking mechanism 100 refers to the above embodiments, and since the detection device adopts all technical solutions of all the above embodiments, at least all beneficial effects brought by the technical solutions of the above embodiments are achieved, and no further description is given here.
A plurality of workpieces are placed on the rack, the detection device detects the workpieces, the jacking mechanism 100 is electrically connected with the detection device, and the jacking mechanism 100 pushes the workpieces according to the detection result of the detection device.
The jacking mechanism 100 applied to the detection equipment can jack the workpieces with good detection results according to the detection results of the detection device so as to discharge the good workpieces. Because under the usual condition, among a plurality of work pieces that the processing was accomplished, the quantity of good product work piece can be the surplus quantity of waste product work piece, therefore this climbing mechanism 100 pushes away the good product work piece, can reduce the adjusting frequency of adjusting part 50 among the climbing mechanism 100 for this climbing mechanism 100 is not fragile, long service life.
The jacking mechanism 100 of the utility model can also be applied to processing equipment or other equipment needing jacking of elements at different stations.
The above description is only an alternative embodiment of the present invention, and not intended to limit the scope of the present invention, and all modifications and equivalents of the present invention, which are made by the contents of the present specification and the accompanying drawings, or directly/indirectly applied to other related technical fields, are included in the scope of the present invention.

Claims (10)

1. The utility model provides a climbing mechanism which characterized in that, climbing mechanism includes:
the abutting assembly comprises an installation seat and a plurality of abutting rods, and the plurality of abutting rods are respectively and elastically connected with the installation seat;
the jacking assembly is connected with the mounting seat in a sliding manner; and
the plurality of adjusting assemblies are connected with the jacking assembly in a sliding manner, and each adjusting assembly corresponds to one jacking rod;
the adjusting assembly moves relative to the jacking assembly and is provided with a jacking position and an avoiding position; the jacking assembly is opposite to the mounting seat and slides to be close to the ejector rod, the adjusting assembly at the abutting position can push the ejector rod correspondingly, and the adjusting assembly at the avoiding position can avoid the ejector rod correspondingly.
2. The jacking mechanism of claim 1, wherein the jacking assembly is slidably coupled to the mount in a first direction, and the adjustment assembly is slidably coupled to the jacking assembly in a second direction; the first direction and the second direction are arranged at an included angle.
3. The jacking mechanism of claim 2, wherein the adjusting assembly has a protrusion and a recess sequentially arranged along the second direction, the protrusion corresponds to the ejector rod when the adjusting assembly is located at the abutting position, and the recess corresponds to the ejector rod when the adjusting assembly is located at the avoiding position.
4. The jacking mechanism as claimed in claim 1, wherein a plurality of the ejector rods are arranged side by side, a plurality of the adjusting assemblies are respectively located at two sides of the jacking assembly, and two adjacent ejector rods respectively correspond to the adjusting assemblies at two sides of the jacking assembly.
5. The jacking mechanism as claimed in any one of claims 1 to 4, wherein the jacking assembly is provided with a plurality of adjusting channels, and each adjusting assembly is correspondingly arranged through one of the adjusting channels and can slide along the extending direction of the adjusting channel.
6. The jacking mechanism as claimed in claim 5, wherein the jacking assembly further comprises a plurality of jacking channels, and one end of each jacking rod correspondingly penetrates through the jacking channels and can slide along the extending direction of the jacking channels;
each adjusting channel is communicated with one jacking channel, and the adjusting assembly can be used for pushing or avoiding the ejector rod at the intersection of the adjusting channel and the jacking channel.
7. The jacking mechanism of claim 5, wherein the jacking assembly includes a moving member and a jacking member, the jacking member being coupled to the moving member and slidably coupled to the mounting block; the moving member is provided with a plurality of the regulating passages.
8. The jacking mechanism as claimed in claim 1, wherein the mounting base is provided with a plurality of mounting holes, and each jacking rod is respectively arranged in one of the mounting holes in a penetrating manner and extends out of two sides of the mounting base;
the mounting seat is also provided with two limiting parts which are oppositely arranged;
the ejector rod is provided with a stopping part which protrudes out of the ejector rod;
the propping assembly comprises a plurality of elastic pieces, each elastic piece is arranged corresponding to one of the pushing rods, the elastic pieces are elastically compressed between the stopping part and one of the limiting parts, and the other limiting part stops at one side of the stopping part, which is far away from the elastic pieces.
9. The jacking mechanism of claim 8, wherein the mount includes:
the first mounting part is provided with the limiting part and a first through hole; and
the second mounting part is provided with the limiting part and a second through hole;
the first installation part is connected with the second installation part, and the first through hole is communicated with the second through hole to form an installation hole.
10. The detection equipment is characterized by comprising a rack, a detection device and the jacking mechanism according to any one of claims 1 to 9, wherein a plurality of workpieces are placed on the rack, the detection device detects the workpieces, the jacking mechanism is electrically connected with the detection equipment, and the jacking mechanism jacks the workpieces according to the detection result of the detection device.
CN202122106080.7U 2021-09-02 2021-09-02 Climbing mechanism and check out test set Active CN216262117U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122106080.7U CN216262117U (en) 2021-09-02 2021-09-02 Climbing mechanism and check out test set

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122106080.7U CN216262117U (en) 2021-09-02 2021-09-02 Climbing mechanism and check out test set

Publications (1)

Publication Number Publication Date
CN216262117U true CN216262117U (en) 2022-04-12

Family

ID=81062676

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122106080.7U Active CN216262117U (en) 2021-09-02 2021-09-02 Climbing mechanism and check out test set

Country Status (1)

Country Link
CN (1) CN216262117U (en)

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Address before: 518000 floor 6, building 5, Han's laser Industrial Park, No. 128, Chongqing Road, Fuyong street, Bao'an District, Shenzhen, Guangdong Province

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