CN211821505U - Two-shaft two-frame mechanism - Google Patents

Two-shaft two-frame mechanism Download PDF

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Publication number
CN211821505U
CN211821505U CN201922225124.0U CN201922225124U CN211821505U CN 211821505 U CN211821505 U CN 211821505U CN 201922225124 U CN201922225124 U CN 201922225124U CN 211821505 U CN211821505 U CN 211821505U
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China
Prior art keywords
ball head
connecting rod
azimuth
support
pitching
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CN201922225124.0U
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Chinese (zh)
Inventor
郭营锋
徐炜
张�浩
昝宝亮
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Luoyang Institute of Electro Optical Equipment AVIC
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Luoyang Institute of Electro Optical Equipment AVIC
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Priority to CN201922225124.0U priority Critical patent/CN211821505U/en
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Abstract

The utility model provides a two frame mechanism on two axles stagger position and every single move shafting, move down the position shafting, and traditional position shafting position simplifies to a position bearing part, because the position bearing part after simplifying does not contain the motor, and the size reduces to can realize the wide-angle rotation of platform. The position shafting after the lapse passes through the bulb connecting rod with position bearing part and is connected, the utility model provides a bulb connecting rod transmission has utilized the easy yielding characteristics of planiform four sides, simple structure, and light in weight, in transmission process, a connecting rod provides thrust, and another connecting rod provides the pulling force, can guarantee to rotate steadily. In order to ensure the transmission precision of the ball head connecting rod, the ball head is ground in the ball head gland and the ball head support, and the ball head is installed on a two-shaft two-frame structure after the ball head is ensured to rotate smoothly without a clamping shell or a dead point.

Description

Two-shaft two-frame mechanism
Technical Field
The utility model relates to a bulb connecting rod drive mechanism is applicable to the rotation transmission between the part, belongs to opto-electronic equipment mechanical design technical field.
Background
The transmission between parts is one of the most common designs in a two-axis two-frame product, and the azimuth axis and the pitch axis are distributed on one plane in the traditional two-axis two-frame product. Under the condition that the size of the platform is determined, the rotation range of the frame angle can be limited when the azimuth and the pitching axis are distributed on the same plane, so that the performance index of the photoelectric equipment is objectively influenced.
Disclosure of Invention
For solving the problem that prior art exists, the utility model provides a two frame construction of biax with bulb connecting rod drive mechanism staggers position and every single move shafting, moves down the position shafting, and traditional position shafting position simplifies to a position bearing part, because the position bearing part after simplifying does not contain the motor, and the size reduces to can realize the wide-angle rotation of platform. The position shafting after the lapse passes through the bulb connecting rod with position bearing part and is connected, the utility model provides a bulb connecting rod transmission has utilized the easy yielding characteristics of planiform four sides, simple structure, and light in weight, in transmission process, a connecting rod provides thrust, and another connecting rod provides the pulling force, can guarantee to rotate steadily. In order to ensure the transmission precision of the ball head connecting rod, the ball head is ground in the ball head gland and the ball head support, and the ball head is installed on a two-shaft two-frame structure after the ball head is ensured to rotate smoothly without a clamping shell or a dead point.
The technical scheme of the utility model is that:
the two-axis and two-frame mechanism comprises a platform (4), a pitching motor (5), a pitching axis system (6), a pitching support (7), an azimuth motor (11) and an azimuth axis system (12), wherein the platform (4) is arranged on the pitching axis system (6), and the pitching axis system is arranged on the pitching support (7); the pitching motor (5) can drive the platform (4) to rotate in the pitching direction through the pitching shaft system (6);
the method is characterized in that:
the device also comprises an azimuth bearing part (8), an azimuth bracket (10), an azimuth shafting connecting rod (13) and a ball head connecting rod transmission mechanism;
the pitching support (7) is arranged on the azimuth bearing part (8), and the axis of the azimuth bearing part (8) is vertically intersected with the axis of the pitching shafting (6); the azimuth bearing component (8) is arranged on the upper part of the azimuth support (10), and the azimuth axis (12) is connected to the lower part of the azimuth support (10) through an azimuth axis connecting rod (13); the axis of the azimuth shaft system (12) is parallel to the axis of the azimuth bearing component (8);
the ball head connecting rod transmission mechanism comprises two groups of ball head connecting rod structures, and each group of ball head connecting rod structures consists of a connecting rod (9) and ball head components fixedly connected to two ends of the connecting rod; the ball head assembly comprises a ball head (1), a ball head gland (2) and a ball head support (3), wherein the ball head gland (2) is fixedly connected with the ball head support (3), the ball head (1) is arranged in an inner cavity formed by the ball head gland (2) and the ball head support (3), the ball head (1) is fixedly connected with one end of a connecting rod (9), and the connecting rod (9) can drive the ball head (1) to rotate smoothly and deflect at a large angle in the inner cavity formed by the ball head gland (2) and the ball head support (3);
the ball head supports (3) at two ends of each group of ball head connecting rod structures are respectively fixed on the pitching support (7) and the azimuth axis connecting rod (13), the two groups of ball head connecting rod structures are arranged at two sides of the azimuth support (10), and the two groups of ball head connecting rod structures, the pitching support (7) and the azimuth axis connecting rod (13) form a parallelogram transmission mechanism; when the azimuth motor (11) drives the azimuth shafting connecting rod (13) to rotate, one group of ball head connecting rod structures are thrust, and the other group of ball head connecting rod structures are tension, so that the pitching support (7) can be driven to rotate around the azimuth bearing part (8).
Further preferred scheme, two frame mechanism of a two-axis, its characterized in that: a small rod extending out in the radial direction is arranged on the ball head (1), and an external thread is arranged on the small rod; and the two ends of the connecting rod (9) are provided with internal threads which can be matched with the external threads on the small rod to fixedly connect the ball head (1) with the connecting rod (9).
Further preferred scheme, two frame mechanism of a two-axis, its characterized in that: the ball head support (3) is provided with a ball socket, one surface of the ball head gland (2) facing the ball head support (3) is also provided with the ball socket, and one surface of the ball head gland (2) back to the ball head support (3) is provided with a tapered hole communicated with the ball socket; the ball head gland (2) is fixedly connected with the ball head support (3) through a standard screw, and the two ball sockets are combined to form an inner cavity.
Advantageous effects
Compare two frames of two axles on a horizontal plane of traditional position and every single move axis, the utility model discloses move down the position shafting such as motor and support, original position simple to use's position bearing replaces, and the every single move support on the position shafting that moves down passes through the double-ball head connecting rod with upper portion and is connected, has following advantage:
(1) because the azimuth bearing is much smaller than the azimuth shaft system, under the two-shaft two-frame with the same size, the space envelope enclosed by the azimuth bearing, the pitching support and the pitching shaft system is increased, and the installation of a large-size platform is facilitated.
(2) The azimuth bearing is smaller than the azimuth shaft system, and the platform can be guaranteed to rotate around the pitching shaft system in a large angle.
(3) In terms of weight, the azimuth axis system is heavier than the azimuth bearing, and after the azimuth axis system is moved downwards, the weight of the upper part can be reduced, the weight of the lower part can be increased, the gravity center of the whole two-axis two-frame is moved downwards to be closer to the centroid, and the counterweight of the lower part is reduced.
(4) The azimuth axis that moves down is connected through two bulb connecting rods with the every single move support on upper portion, and under the drive of azimuth motor, a connecting rod provides thrust, and one provides the pulling force, guarantees that the azimuth angle rotates steadily.
(5) The ball head connecting rod mechanism is in rigid connection transmission, and can ensure that the two-shaft two-frame normally works under complex working conditions of vibration, high and low temperature and the like.
Additional aspects and advantages of the invention will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the invention.
Drawings
The above and/or additional aspects and advantages of the present invention will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
FIG. 1 is a cross-sectional view of a ball end cap of the present invention;
FIG. 2 is a cross-sectional view of the utility model with the ball head rotated by a certain angle;
FIG. 3 is a schematic diagram of the transmission operation of the present invention;
fig. 4 is a schematic view of the azimuth axis system frame of the present invention rotating a certain angle;
fig. 5 is a schematic diagram of the angle rotation of the frame of the azimuth and pitch shafting of the present invention.
Wherein: 1. the device comprises a ball head, 2, a ball head gland, 3, a ball head support, 4, a platform, 5, a pitching motor, 6, a pitching shaft system, 7, a pitching support, 8, an orientation bearing component, 9, a connecting rod, 10, an orientation support, 11, an orientation motor, 12, an orientation shaft system, 13 and an orientation shaft system connecting rod.
Detailed Description
The invention will be described in further detail with reference to the following drawings and specific embodiments:
please refer to fig. 1, fig. 2, fig. 3 and fig. 4.
The biaxial two-frame mechanism with the ball head connecting rod transmission mechanism in the embodiment comprises a platform 4, a pitching motor 5, a pitching shaft system 6, a pitching support 7, an azimuth motor 11, an azimuth shaft system 12, an azimuth bearing part 8, an azimuth support 10, an azimuth shaft system connecting rod 13 and the ball head connecting rod transmission mechanism.
The platform 4 is arranged on a pitching axis system 6, and the pitching axis system is arranged on a pitching support 7; the pitching motor 5 can drive the platform (4) to rotate in the pitching direction through the pitching shaft system 6.
The pitching support 7 is arranged on the azimuth bearing part 8, and the axis of the azimuth bearing part 8 is vertically intersected with the axis of the pitching shafting 6; the azimuth bearing component 8 is arranged on the upper part of the azimuth support 10, and the azimuth axis 12 is connected to the lower part of the azimuth support 10 through an azimuth axis connecting rod 13; the axis of the azimuth shafting 12 is parallel to the axis of the azimuth bearing component 8. Since the azimuth bearing member 8 does not include a motor and is reduced in size, the platform 4 can be rotated by a large angle in the pitch direction.
The ball head connecting rod transmission mechanism comprises two groups of ball head connecting rod structures, and each group of ball head connecting rod structures consists of a connecting rod 9 and ball head assemblies fixedly connected to two ends of the connecting rod.
The ball head assembly consists of a ball head 1, a ball head gland 2 and a ball head support 3, wherein the ball head support 3 is provided with a ball socket, one surface of the ball head gland 2 facing the ball head support 3 is also provided with the ball socket, and one surface of the ball head gland 2 back to the ball head support 3 is provided with a taper hole communicated with the ball socket; the ball head gland 2 and the ball head support 3 are fixedly connected through a standard screw, the two ball sockets are combined to form an inner cavity, and the ball head 1 is arranged in the inner cavity formed by the ball head gland 2 and the ball head support 3. A small rod which extends out in the radial direction is arranged on the ball head 1, and an external thread is arranged on the small rod; and the two ends of the connecting rod 9 are provided with internal threads which can be matched with the external threads on the small rod to fixedly connect the ball head 1 with the connecting rod 9. The connecting rod 9 can drive the ball head 1 to rotate smoothly and deflect at a large angle in an inner cavity formed by the ball head gland 2 and the ball head support 3.
The ball supports 3 at two ends of each ball connecting rod structure are respectively fixed on the pitching support 7 and the azimuth axis connecting rod 13, the two ball connecting rod structures are arranged at two sides of the azimuth support 10, and the two ball connecting rod structures, the pitching support 7 and the azimuth axis connecting rod 13 form a parallelogram transmission mechanism. When the azimuth motor 11 drives the azimuth shafting connecting rod 13 to rotate, for the pitching support 7, one group of ball head connecting rod structures are represented by thrust, and the other group of ball head connecting rod structures are represented by tension, so that the pitching support 7 can be driven to rotate around the azimuth bearing part 8, and the transmission of azimuth large-angle rotation is realized. During reverse rotation, the original ball head connecting rod structure of thrust is represented as pulling force, the original ball head connecting rod structure of pulling force is represented as thrust, and the two groups of ball head connecting rod structures guarantee stable rotation.
Although embodiments of the present invention have been shown and described, it is to be understood that the above embodiments are exemplary and should not be construed as limiting the present invention, and that changes, modifications, substitutions and alterations can be made to the above embodiments by those of ordinary skill in the art without departing from the principles and spirit of the present invention.

Claims (3)

1. A two-axis and two-frame mechanism comprises a platform (4), a pitching motor (5), a pitching axis system (6), a pitching support (7), an azimuth motor (11) and an azimuth axis system (12), wherein the platform (4) is arranged on the pitching axis system (6), and the pitching axis system is arranged on the pitching support (7); the pitching motor (5) can drive the platform (4) to rotate in the pitching direction through the pitching shaft system (6);
the method is characterized in that:
the device also comprises an azimuth bearing part (8), an azimuth bracket (10), an azimuth shafting connecting rod (13) and a ball head connecting rod transmission mechanism;
the pitching support (7) is arranged on the azimuth bearing part (8), and the axis of the azimuth bearing part (8) is vertically intersected with the axis of the pitching shafting (6); the azimuth bearing component (8) is arranged on the upper part of the azimuth support (10), and the azimuth axis (12) is connected to the lower part of the azimuth support (10) through an azimuth axis connecting rod (13); the axis of the azimuth shaft system (12) is parallel to the axis of the azimuth bearing component (8);
the ball head connecting rod transmission mechanism comprises two groups of ball head connecting rod structures, and each group of ball head connecting rod structures consists of a connecting rod (9) and ball head components fixedly connected to two ends of the connecting rod; the ball head assembly comprises a ball head (1), a ball head gland (2) and a ball head support (3), wherein the ball head gland (2) is fixedly connected with the ball head support (3), the ball head (1) is arranged in an inner cavity formed by the ball head gland (2) and the ball head support (3), the ball head (1) is fixedly connected with one end of a connecting rod (9), and the connecting rod (9) can drive the ball head (1) to rotate smoothly and deflect at a large angle in the inner cavity formed by the ball head gland (2) and the ball head support (3);
the ball head supports (3) at two ends of each group of ball head connecting rod structures are respectively fixed on the pitching support (7) and the azimuth axis connecting rod (13), the two groups of ball head connecting rod structures are arranged at two sides of the azimuth support (10), and the two groups of ball head connecting rod structures, the pitching support (7) and the azimuth axis connecting rod (13) form a parallelogram transmission mechanism; when the azimuth motor (11) drives the azimuth shafting connecting rod (13) to rotate, one group of ball head connecting rod structures are thrust, and the other group of ball head connecting rod structures are tension, so that the pitching support (7) can be driven to rotate around the azimuth bearing part (8).
2. A two-axis two-frame mechanism according to claim 1, wherein: a small rod extending out in the radial direction is arranged on the ball head (1), and an external thread is arranged on the small rod; and the two ends of the connecting rod (9) are provided with internal threads which can be matched with the external threads on the small rod to fixedly connect the ball head (1) with the connecting rod (9).
3. A two-axis two-frame mechanism according to claim 2, wherein: the ball head support (3) is provided with a ball socket, one surface of the ball head gland (2) facing the ball head support (3) is also provided with the ball socket, and one surface of the ball head gland (2) back to the ball head support (3) is provided with a tapered hole communicated with the ball socket; the ball head gland (2) is fixedly connected with the ball head support (3) through a standard screw, and the two ball sockets are combined to form an inner cavity.
CN201922225124.0U 2019-12-12 2019-12-12 Two-shaft two-frame mechanism Active CN211821505U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922225124.0U CN211821505U (en) 2019-12-12 2019-12-12 Two-shaft two-frame mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922225124.0U CN211821505U (en) 2019-12-12 2019-12-12 Two-shaft two-frame mechanism

Publications (1)

Publication Number Publication Date
CN211821505U true CN211821505U (en) 2020-10-30

Family

ID=73139809

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922225124.0U Active CN211821505U (en) 2019-12-12 2019-12-12 Two-shaft two-frame mechanism

Country Status (1)

Country Link
CN (1) CN211821505U (en)

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