CN210179038U - Novel pneumatic actuator frame structure - Google Patents
Novel pneumatic actuator frame structure Download PDFInfo
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- CN210179038U CN210179038U CN201920807673.6U CN201920807673U CN210179038U CN 210179038 U CN210179038 U CN 210179038U CN 201920807673 U CN201920807673 U CN 201920807673U CN 210179038 U CN210179038 U CN 210179038U
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Abstract
The utility model belongs to the technical field of actuating mechanism uses, specifically disclose a novel pneumatic actuator frame construction, including bar valve locating plate, the backup pad that falls the U-shaped, a plurality of bar valve locating plate through-hole, lead screw through-hole, supplementary clamping ring, box, vertical U-shaped cylinder mount pad, cylinder locating hole, U-shaped backup pad, the even board of bar pneumatic motor, screw hole, first bearing mounting hole, second bearing mounting hole, third bearing mounting hole, first bearing, second bearing and third bearing. The utility model relates to a novel pneumatic actuator frame construction's beneficial effect lies in: the pneumatic actuator assembling device is reasonable in design structure, rapid and accurate assembling operation of components of the pneumatic actuator can be achieved, the problem that a traditional frame structure is easy to deform and break is solved, safety of driving control action after the pneumatic actuator is assembled is guaranteed, disassembly and maintenance are convenient, use cost is reduced, and practicability is high.
Description
Technical Field
The utility model belongs to the technical field of actuating mechanism uses, concretely relates to novel pneumatic actuator frame construction.
Background
The most extensive definition for an actuator is: a drive device capable of providing linear or rotary motion utilizes a drive energy source and operates under a control signal. The actuator uses liquid, gas, electric power or other energy sources and converts the energy sources into driving action through a motor, a cylinder or other devices, and the basic types of the actuators include three driving modes, namely partial-Turn (Part-Turn), Multi-Turn (Multi-Turn) and straight stroke (Linear).
The basic actuator is used to drive the valve to a fully open or fully closed position, and the actuator used to control the valve is able to precisely move the valve to any position. Because more and more factories adopt automatic control, manual operation is replaced by mechanical or automatic equipment, people require that an actuating mechanism can play an interface role between a control system and valve mechanical motion, and the actuating mechanism is required to enhance the working safety performance and the environmental protection performance, so that in some dangerous occasions, the automatic actuating mechanism device can reduce the injury of personnel.
The pneumatic actuator assembly frame structure of current traditional structure, its structural design is unreasonable, can't realize quick, the accurate equipment operation of pneumatic actuator component part, and assembly back frame structure is yielding, the fracture, has very big potential safety hazard, simultaneously unreasonable design structure, its inconvenient dismantlement, maintenance, and manufacturing cost is higher etc. and this is the present urgent solution that awaits the solution that waits.
Therefore, based on the above problems, the utility model provides a high stability electric actuator structure.
SUMMERY OF THE UTILITY MODEL
Utility model purpose: the utility model aims at providing a novel pneumatic actuator frame construction, its project organization is reasonable, can realize quick, the accurate equipment operation of pneumatic actuator component part, has solved traditional frame construction yielding, cracked problem, guarantees the security of pneumatic actuator equipment back drive control action, is convenient for dismantle and maintain, reduces use cost, and the practicality is strong.
The technical scheme is as follows: the utility model provides a novel pneumatic actuator frame structure, which comprises a strip valve positioning plate, an inverted U-shaped supporting plate arranged on the strip valve positioning plate, a plurality of strip valve positioning plate through holes and screw rod through holes which are arranged in the strip valve positioning plate, an auxiliary connecting ring arranged on one side of the inverted U-shaped supporting plate, a box body arranged on one side of the auxiliary connecting ring, a vertical U-shaped cylinder mounting seat arranged on the outer wall of the box body, a cylinder positioning hole arranged in the vertical U-shaped cylinder mounting seat, a U-shaped supporting plate arranged on the box body, a strip pneumatic motor connecting plate arranged on the U-shaped supporting plate, a threaded hole arranged in the strip pneumatic motor connecting plate, a first bearing mounting hole, a second bearing mounting hole and a third bearing mounting hole which are respectively arranged in the inverted U-shaped supporting plate, the U-shaped supporting plate and the strip pneumatic motor connecting plate, and the first bearing, the second bearing and the third bearing are respectively arranged in the first bearing mounting hole, the second bearing mounting hole and the third bearing mounting hole and are matched with the screw rod for use.
According to the technical scheme, the novel pneumatic actuator frame structure further comprises a group of bar-shaped connecting plates arranged in the U-shaped supporting plate, an auxiliary limiting column connected with the group of bar-shaped connecting plates, and a flexible limiting sleeve arranged in the auxiliary limiting column.
This technical scheme, novel pneumatic actuator frame construction, still set up at box top inner wall, a set of first bearing mount pad of bottom inner wall, a set of second bearing mount pad including the symmetry, and set up respectively at a set of first bearing mount pad, the first auxiliary bearing mounting groove in a set of second bearing mount pad, the second auxiliary bearing mounting groove, and install respectively at first auxiliary bearing mounting groove, the first auxiliary bearing in the second auxiliary bearing mounting groove, the second auxiliary bearing, and both ends respectively with first auxiliary bearing, the vertical pivot that the second auxiliary bearing is connected, and set up at the epaxial driven gear of vertical pivot, wherein, driven gear is through a set of axle position sleeve, a set of bolt fixed mounting is in vertical pivot, the transmission silk groove and the driven gear contact of lead screw.
Compared with the prior art, the utility model relates to a novel pneumatic actuator frame construction's beneficial effect lies in: the pneumatic actuator assembling device is reasonable in design structure, rapid and accurate assembling operation of components of the pneumatic actuator can be achieved, the problem that a traditional frame structure is easy to deform and break is solved, safety of driving control action after the pneumatic actuator is assembled is guaranteed, disassembly and maintenance are convenient, use cost is reduced, and practicability is high.
Drawings
Fig. 1 is a schematic front view of a novel pneumatic actuator frame structure of the present invention;
fig. 2 is the utility model discloses a novel pneumatic actuator frame construction's bar valve locating plate, a plurality of bar valve locating plate through-hole, the overhead structure sketch map of lead screw through-hole.
Detailed Description
The invention will be further elucidated with reference to the drawings and the specific embodiments.
A novel pneumatic actuator frame structure as shown in fig. 1 and 2 comprises a bar-shaped valve positioning plate 1, an inverted U-shaped supporting plate 2 arranged on the bar-shaped valve positioning plate 1, a plurality of bar-shaped valve positioning plate through holes 29 and screw rod through holes 9 arranged in the bar-shaped valve positioning plate 1, an auxiliary connecting ring 30 arranged on one side of the inverted U-shaped supporting plate 2, a box body 3 arranged on one side of the auxiliary connecting ring 30, a vertical U-shaped cylinder mounting seat 4 arranged on the outer wall of the box body 3, a cylinder positioning hole 5 arranged in the vertical U-shaped cylinder mounting seat 4, a U-shaped supporting plate 6 arranged on the box body 3, a bar-shaped pneumatic motor connecting plate 7 arranged on the U-shaped supporting plate 6, a threaded hole 8 arranged in the bar-shaped pneumatic motor connecting plate 7, and a first bearing mounting hole 10, a first bearing mounting hole arranged in the inverted U-shaped supporting plate 2, the U-shaped supporting plate 6 and the bar-shaped pneumatic motor connecting plate 7 respectively, A second bearing mounting hole 17, a third bearing mounting hole 12, and a first bearing 11, a second bearing 18, and a third bearing 13 which are respectively arranged in the first bearing mounting hole 10, the second bearing mounting hole 17, and the third bearing mounting hole 12 and are matched with the screw rod for use.
Preferably, the novel pneumatic actuator frame structure further comprises a group of strip-shaped connecting plates 14 arranged in the U-shaped supporting plate 6, auxiliary limiting columns 15 connected with the group of strip-shaped connecting plates 14, and flexible limiting sleeves 16 arranged in the auxiliary limiting columns 15, and the flexible limiting sleeves are used for performing auxiliary limiting on screw rods connected with a pneumatic motor, so that the accuracy and the stability of power transmission are ensured; the novel pneumatic actuator frame structure also comprises a group of first bearing installation seats 19 and a group of second bearing installation seats 22 which are symmetrically arranged on the inner wall at the top and the inner wall at the bottom of the box body 3, a first auxiliary bearing installation groove 20 and a second auxiliary bearing installation groove 23 which are respectively arranged in the group of first bearing installation seats 19 and the group of second bearing installation seats 22, a first auxiliary bearing 21 and a second auxiliary bearing 24 which are respectively arranged in the first auxiliary bearing installation groove 20 and the second auxiliary bearing installation groove 23, a vertical rotating shaft 25 with two ends respectively connected with the first auxiliary bearing 21 and the second auxiliary bearing 24, and a driven gear 26 arranged on the vertical rotating shaft 25, wherein the driven gear 26 is fixedly arranged on the vertical rotating shaft 25 through a group of shaft positioning sleeves 27 and a group of bolts 28, a transmission wire groove of the screw rod is contacted with the driven gear 26, and the group of driven gear 26 is used for auxiliary positioning of the screw rod, the stability, the precision, the high efficiency and the safety of the lifting/lowering action of the screw rod are ensured.
The novel pneumatic actuator frame structure of this structure, its project organization is reasonable, can realize quick, the accurate equipment operation of pneumatic actuator component part, has solved traditional frame structure yielding, cracked problem, guarantees the security of pneumatic actuator equipment back drive control action, is convenient for dismantle and maintain, reduces use cost, and the practicality is strong.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of modifications can be made without departing from the principle of the present invention, and these modifications should also be regarded as the protection scope of the present invention.
Claims (3)
1. The utility model provides a novel pneumatic actuator frame construction which characterized in that: including bar valve locating plate (1), and set up the shape of falling U backup pad (2) on bar valve locating plate (1), and set up a plurality of bar valve locating plate through-hole (29) in bar valve locating plate (1), lead screw through-hole (9), and set up at auxiliary connection circle (30) of the shape of falling U backup pad (2) one side, and set up box (3) in auxiliary connection circle (30) one side, and set up vertical U-shaped cylinder mount pad (4) at box (3) outer wall, and set up cylinder locating hole (5) in vertical U-shaped cylinder mount pad (4), and set up U-shaped backup pad (6) on box (3), and set up bar pneumatic motor even board (7) on U-shaped backup pad (6), and set up screw hole (8) in bar pneumatic motor even board (7), and set up respectively in the shape of falling U backup pad (2), The screw rod connecting plate comprises a U-shaped supporting plate (6), a first bearing mounting hole (10), a second bearing mounting hole (17) and a third bearing mounting hole (12) in a strip-shaped pneumatic motor connecting plate (7), and a first bearing (11), a second bearing (18) and a third bearing (13) which are respectively arranged in the first bearing mounting hole (10), the second bearing mounting hole (17) and the third bearing mounting hole (12) and are matched with the screw rod for use.
2. The novel pneumatic actuator frame structure of claim 1, wherein: the novel pneumatic actuator frame structure further comprises a group of strip-shaped connecting plates (14) arranged in the U-shaped supporting plate (6), auxiliary limiting columns (15) connected with the group of strip-shaped connecting plates (14), and flexible limiting sleeves (16) arranged in the auxiliary limiting columns (15).
3. The novel pneumatic actuator frame structure of claim 1 or 2, wherein: the novel pneumatic actuator frame structure also comprises a group of first bearing installation seats (19) and a group of second bearing installation seats (22) which are symmetrically arranged on the inner wall at the top and the inner wall at the bottom of the box body (3), a first auxiliary bearing installation groove (20) and a second auxiliary bearing installation groove (23) which are respectively arranged in the group of first bearing installation seats (19) and the group of second bearing installation seats (22), a first auxiliary bearing (21) and a second auxiliary bearing (24) which are respectively arranged in the first auxiliary bearing installation groove (20) and the second auxiliary bearing installation groove (23), a vertical rotating shaft (25) with two ends respectively connected with the first auxiliary bearing (21) and the second auxiliary bearing (24), and a driven gear (26) arranged on the vertical rotating shaft (25), wherein the driven gear (26) is fixedly arranged on the vertical rotating shaft (25) through a group of shaft positioning sleeves (27) and a group of bolts (28), the transmission wire groove of the screw rod is contacted with the driven gear (26).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920807673.6U CN210179038U (en) | 2019-05-31 | 2019-05-31 | Novel pneumatic actuator frame structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920807673.6U CN210179038U (en) | 2019-05-31 | 2019-05-31 | Novel pneumatic actuator frame structure |
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CN210179038U true CN210179038U (en) | 2020-03-24 |
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CN201920807673.6U Active CN210179038U (en) | 2019-05-31 | 2019-05-31 | Novel pneumatic actuator frame structure |
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CN (1) | CN210179038U (en) |
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2019
- 2019-05-31 CN CN201920807673.6U patent/CN210179038U/en active Active
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