CN210051342U - Pointer type vertical instrument used in greenhouse construction - Google Patents

Pointer type vertical instrument used in greenhouse construction Download PDF

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Publication number
CN210051342U
CN210051342U CN201921160280.7U CN201921160280U CN210051342U CN 210051342 U CN210051342 U CN 210051342U CN 201921160280 U CN201921160280 U CN 201921160280U CN 210051342 U CN210051342 U CN 210051342U
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axis
axis direction
pointer
transmission shaft
type vertical
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何贵荣
张天柱
王贵平
朱海东
李旭
房志超
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Beijing Zhongnong Futong Gardening Co Ltd
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Beijing Zhongnong Futong Gardening Co Ltd
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Abstract

The utility model provides a pointer type vertical instrument that uses in greenhouse construction, it includes by temperature measurement room stand, vertical instrument benchmark backup plate, pointer type vertical instrument, the permanent magnet observes the gauge outfit, the inclination pointer, pointer type vertical instrument shell, pointer type vertical instrument inner chamber, shaft support backup pad, the transmission axle, the weight, second conical gear, first conical gear, XY axle angle connecting axle, YZ axle transmission connection converter and shaft support axle bush. The XY-axis inclination pointer is connected with the XY-axis direction transmission shaft, the XY-axis second bevel gear is meshed with the XY-axis first bevel gear, and the XY-axis direction heavy hammer is fixed at one end of the XY-axis rotation connecting shaft; the YZ axis inclination pointer is connected with a YZ axis direction transmission shaft, the YZ axis direction transmission shaft is connected with a shaft support supporting plate, the YZ axis direction transmission shaft is connected with a YZ axis transmission connection converter, and the YZ axis direction heavy hammer is fixed at one end of the YZ axis direction transmission shaft. The utility model discloses small portable, easy operation uses manpower sparingly, economical and practical.

Description

Pointer type vertical instrument used in greenhouse construction
Technical Field
The utility model relates to an equipment engineering construction field especially relates to a pointer type vertical instrument who uses in greenhouse construction.
Background
With the rapid development of facility agriculture, various types of greenhouse facilities are widely constructed and applied. In order to effectively improve the working efficiency, at the initial stage of greenhouse infrastructure installation, an installer urgently needs a set of special tool which is accurate, efficient, quick and easy to carry.
The traditional upright post positioning installation mode is that after the upright post is placed on an embedded part, two sets of relatively long common leveling rulers are used, one common leveling ruler is attached to the XY end face of the rectangular upright post, the other common leveling ruler is attached to the YZ end face of the rectangular upright post, a worker holds the upright post and observes the drift state of bubbles of the leveling ruler, the upright post is correspondingly adjusted to a standard position, and the whole process is completed by welding after the space coordinate is determined.
The traditional upright post is positioned in the construction process, the working procedure is complex, the time of the installation process is long, and high installation precision is needed, so that the time is wasted, professional workers are needed, the construction progress is delayed, and the positioning precision is not high; the traditional upright posts are large in positioning volume, inconvenient to carry about, resource-wasting and not beneficial to being used in large-scale construction of the greenhouse.
SUMMERY OF THE UTILITY MODEL
A great deal of inconvenience to above traditional stand location process, the utility model provides a pointer type vertical instrument who uses in greenhouse construction mainly improves work efficiency in order to reduce workman's the construction degree of difficulty, reduces worker people's installation procedure to and the automation level in the improve equipment construction.
A pointer type vertical instrument used in greenhouse construction comprises a vertical column of a temperature-measured room, a vertical instrument reference backup plate, a pointer type vertical instrument and a permanent magnet. The utility model discloses a vertical temperature measuring room stand, including temperature measuring room stand, be fixed with the permanent magnet on the vertical temperature measuring room stand, be the rectangle by the terminal surface shape of temperature measuring room stand, vertical instrument benchmark backup plate is made with non-deformable's alloy, including sample face and benchmark sample platform, two sampling plates of vertical instrument benchmark backup plate are L shape, two sampling plates respectively with closely laminate by XY face and YZ face of temperature measuring room stand, be fixed with on the vertical instrument benchmark backup plate the permanent magnet, the laminating state keeps relying on pointer type vertical instrument to go up interior the inlaying permanent magnet, pointer type vertical instrument is fixed in the benchmark sample platform of vertical instrument benchmark backup plate. The pointer type vertical instrument comprises an observation gauge head, XY axis inclination pointers, YZ axis inclination pointers, a pointer type vertical instrument shell, a first pointer type vertical instrument inner cavity, a second pointer type vertical instrument inner cavity, an axle support supporting plate, a YZ axis direction transmission shaft, an XY axis direction heavy hammer, a YZ axis direction heavy hammer, an XY axis second bevel gear, an XY axis first bevel gear, an XY axis angle connecting shaft, a YZ axis transmission connecting converter and an axle support bearing bush, and internal spare parts are made of materials which are difficult to be magnetized, such as plastics or stainless steel, so that the measurement precision is not influenced after the parts are magnetized. The pointer type vertical instrument shell is connected with the observation meter head, the pointer type vertical instrument shell is connected with the first pointer type vertical instrument inner cavity, and the second pointer type vertical instrument inner cavity is connected. The XY-axis inclination pointer is connected with the XY-axis direction transmission shaft, one end of the XY-axis direction transmission shaft is fixedly provided with the XY-axis second bevel gear, the XY-axis second bevel gear is meshed with the XY-axis first bevel gear, the XY-axis first bevel gear is fixedly connected with the XY-axis angle connecting shaft, and the XY-axis direction heavy hammer is fixed at one end of the XY-axis angle connecting shaft. The YZ axis inclination pointer is connected with the YZ axis direction transmission shaft, the YZ axis direction transmission shaft is connected with the shaft support supporting plate, the YZ axis direction transmission shaft is connected with the shaft support bearing bush, the shaft support supporting plate is fixedly connected with the shaft support bearing bush, the YZ axis direction transmission shaft is connected with the YZ axis transmission connection converter, the YZ axis direction heavy hammer is fixed at one end of the YZ axis direction transmission shaft, and the XY axis inclination pointer is precisely matched with the XY axis direction transmission shaft and the YZ axis inclination pointer is precisely matched with the YZ axis direction transmission shaft, so that the phenomenon of jamming is avoided.
Preferably, the pointer type vertical instrument is provided with two groups of observation meter heads, the two groups of observation meter heads comprise XY axis inclination angle pointers and YZ axis inclination angle pointers, the XY axis inclination angle pointers and the YZ axis inclination angle pointers are on the same axial center, the principle is the same as the arrangement mode of an hour hand/minute hand of a clock, and the XY axis inclination angle pointers and the YZ axis inclination angle pointers on the two groups of observation meter heads synchronously indicate, so that operators at different angles can observe readings conveniently.
Preferably, the axial diameter of the XY axis direction transmission shaft is smaller than the axial diameter of the YZ axis direction transmission shaft, the YZ axis direction transmission shaft is a hollow shaft, and the XY axis direction transmission shaft is located in the YZ axis direction transmission shaft.
Preferably, the YZ axis direction transmission shaft is composed of two sections of shafts, the first section of YZ axis direction transmission shaft and the second section of YZ axis direction transmission shaft are connected through the YZ axis transmission connection converter, and the first section of YZ axis direction transmission shaft is fixed with the YZ axis direction weight.
Preferably, the first pointer type verticality instrument inner cavity, the second pointer type verticality instrument inner cavity, the XY axis direction transmission shaft, the YZ axis direction transmission shaft, the XY axis inclination pointer and the YZ axis inclination pointer are coaxial.
Preferably, the length of the shaft support plate is smaller than the inner diameter of the first pointer type verticality inner cavity and the second pointer type verticality inner cavity.
Preferably, the XY axis direction weight and the YZ axis direction weight are respectively at the same distance from the two groups of observation headers, and two shaft support plates are respectively arranged on two sides of the XY axis direction weight and the YZ axis direction weight.
The utility model has the advantages of as follows:
(1) the volume is small, the carrying is convenient, the precision is high, the operation is simple, and the visual effect is obvious.
(2) The method is used for the column engineering of construction, is high in efficiency and saves manpower.
(3) The energy consumption support is not needed, and the energy-saving environment-friendly, economic and practical effects are achieved.
Drawings
FIG. 1 is a pointer type vertical instrument used in the greenhouse construction of the utility model;
FIG. 2 is a perspective view of the inside of a pointer type vertical instrument used in the greenhouse construction of the present invention;
FIG. 3 is a perspective view of another angle inside the pointer type verticality apparatus used in the greenhouse construction of the present invention;
FIG. 4 is a structure of the pointer type vertical meter used in the greenhouse construction of the present invention for detecting the horizontal XY axial plane; and
fig. 5 is the structure of the pointer type vertical meter used in the greenhouse construction for detecting the horizontal YZ axial plane.
The main reference numbers:
the temperature measuring room comprises a measured room upright post 1, a vertical instrument reference backup plate 2, an observation gauge head 3, an XY axis inclination pointer 4, a YZ axis inclination pointer 5, a pointer type vertical instrument shell 6, a first pointer type vertical instrument inner cavity 7, a second pointer type vertical instrument inner cavity 8, a pointer type vertical instrument 9, an axle support supporting plate 10, a YZ axis direction transmission shaft 11, an XY axis direction transmission shaft 12, an XY axis direction weight 13, a YZ axis direction weight 14, an XY axis second bevel gear 15, an XY axis first bevel gear 16, an XY axis angle connecting shaft 17, a YZ axis transmission connecting converter 18, an axle support bearing bush 19 and a permanent magnet 20.
Detailed Description
The technical contents, structural features, and achieved objects and effects of the present invention will be described in detail with reference to the accompanying drawings.
As shown in figure 1, the pointer type vertical instrument used in greenhouse construction comprises a vertical column 1 of a temperature-measured chamber, a vertical instrument reference backup plate 2, a pointer type vertical instrument 9 and a permanent magnet 20, the principle is that according to the characteristic that a heavy hammer droops to a constant degree under the action of gravity, a transmission mechanism drives a pointer to perform corner turning action, and finally parameters are displayed on a dial scale of the instrument for an operator to correspondingly adjust the vertical column.
The pointer type vertical instrument 9, as shown in fig. 2 and fig. 3, includes an observation gauge head 3, an XY axis tilt pointer 4, a YZ axis tilt pointer 5, a pointer type vertical instrument housing 6, a first pointer type vertical instrument inner cavity 7, a second pointer type vertical instrument inner cavity 8, a shaft support plate 10, a YZ axis direction transmission shaft 11, an XY axis direction transmission shaft 12, an XY axis direction weight 13, a YZ axis direction weight 14, an XY axis second bevel gear 15, an XY axis first bevel gear 16, an XY axis angle connection shaft 17, a YZ axis transmission connection converter 18 and a shaft support bearing 19, and internal parts are made of materials which are difficult to be magnetized, such as plastics or stainless steel, so as to avoid influence on measurement accuracy after the parts are magnetized.
As shown in figure 1, the end face shape of the measured temperature room column 1 is rectangular, the vertical instrument reference backup plate 2 is made of non-deformable alloy and comprises a sampling surface and a reference sampling platform, the two sampling plates of the vertical instrument reference backup plate 2 are L-shaped, the two sampling plates are respectively tightly attached to the XY surface and the YZ surface of the measured temperature room column 1, a permanent magnet 20 is fixed on the vertical instrument reference backup plate 2, the attachment state is kept by the permanent magnet 20 embedded in the pointer type vertical instrument 9, and the pointer type vertical instrument 9 is fixed on the reference sampling platform of the vertical instrument reference backup plate 2.
The pointer type vertical instrument shell 6 is connected with the observation meter head 3, the pointer type vertical instrument shell 6 is connected with the first pointer type vertical instrument inner cavity 7, and the second pointer type vertical instrument inner cavity 8.
As shown in fig. 4, the XY-axis tilt pointer 4 is connected to the XY-axis direction transmission shaft 12, an XY-axis second bevel gear 15 is fixed to one end of the XY-axis direction transmission shaft 12, the XY-axis second bevel gear 15 is engaged with the XY-axis first bevel gear 16, the XY-axis first bevel gear 16 is fixedly connected to the XY-axis rotation connecting shaft 17, and the XY-axis direction weight 13 is fixed to one end of the XY-axis rotation connecting shaft 17.
As shown in fig. 5, the YZ-axis tilt pointer 5 is connected to a YZ-axis direction transmission shaft 11, the YZ-axis direction transmission shaft 11 is connected to a shaft support plate 10, the YZ-axis direction transmission shaft 11 is connected to a shaft support bush 19, the shaft support plate 10 is fixedly connected to the shaft support bush 19, the YZ-axis direction transmission shaft 11 is connected to a YZ-axis transmission connection converter 18, and the YZ-axis direction weight 14 is fixed to one end of the YZ-axis direction transmission shaft 11.
The XY axis inclination pointer 4 and the XY axis direction transmission shaft 12 and the YZ axis inclination pointer 5 and the YZ axis direction transmission shaft 11 need to be precisely matched, and the phenomenon of jamming is avoided.
The pointer type vertical instrument 9 is provided with two groups of observation meter heads 3, the two groups of observation meter heads 3 comprise XY axis inclination angle pointers 4 and YZ axis inclination angle pointers 5, the XY axis inclination angle pointers 4 and the YZ axis inclination angle pointers 5 are on the same axial center, the principle is the same as the arrangement mode of an hour hand/minute hand of a clock, and the XY axis inclination angle pointers 4 and the YZ axis inclination angle pointers 5 on the two groups of observation meter heads 3 synchronously indicate, so that operators at different angles can observe readings conveniently.
The shaft diameter of the XY axis direction transmission shaft 12 is smaller than that of the YZ axis direction transmission shaft 11, the YZ axis direction transmission shaft 11 is a hollow shaft, and the XY axis direction transmission shaft 12 is located in the YZ axis direction transmission shaft 11.
The YZ axis direction transmission shaft 11 is composed of two sections of shafts, the first section of the YZ axis direction transmission shaft 11 and the second section of the YZ axis direction transmission shaft 11 are connected through a YZ axis transmission connection converter 18, a YZ axis direction counter weight 14 is fixed on the first section of the YZ axis direction transmission shaft 11, and the YZ axis transmission connection converter 18 plays a role of connecting the XY axis direction transmission shaft 11.
The device comprises a first pointer type vertical instrument inner cavity 7, a second pointer type vertical instrument inner cavity 8, an XY axis direction transmission shaft 12, a YZ axis direction transmission shaft 11, an XY axis inclination pointer 4 and a YZ axis inclination pointer 5 which are coaxial.
The length of the shaft support plate 10 is smaller than the inner diameters of the first pointer type verticality cavity 7 and the second pointer type verticality cavity 8.
The XY-axis direction weight 13 and the YZ-axis direction weight 14 are respectively at the same distance from the two observation heads 3, and two shaft support plates 10 are respectively provided on both sides of the XY-axis direction weight 13 and the YZ-axis direction weight 14.
The following embodiments are combined to further describe the pointer type vertical instrument used in the greenhouse construction of the present invention:
the utility model discloses a pointer type vertical instrument is a measuring tool who is exclusively used in greenhouse construction center pillar. When the greenhouse is used in construction, the pointer type vertical instrument 9 is fixed on a reference sampling platform of a vertical instrument reference backup plate 2, two sampling plates of the vertical instrument reference backup plate 2 are adsorbed and fixed on any two groups of adjacent side surfaces of a temperature-measured chamber upright post 1 by virtue of an internally-inlaid permanent magnet 20, as shown in figure 1, an internal heavy hammer naturally drops under the action of the gravity of the earth, a changed numerical value is formed by the reference angle and the offset angle of the temperature-measured chamber upright post 1, and the verticality of the temperature-measured chamber upright post 1 is correspondingly adjusted by correcting the difference numerical value to a specific reading.
Two sets of vertical instruments with the same principle are arranged in the pointer type vertical instrument 9, one set of vertical instruments is used for detecting a transverse XY axial plane, and the other set of vertical instruments is used for detecting a longitudinal YZ axial plane; meanwhile, the pointer type vertical instrument 9 is provided with two groups of observation meter heads 3, and XY axis inclination pointers 4 and YZ axis inclination pointers 5 on the two groups of observation meter heads 3 synchronously indicate, so that operators at different angles can observe readings conveniently and correct the readings before construction.
The XY-axis inclination pointer 4 is an XY-axis inclination display pointer, under the action of natural gravity, the weight 13 in the XY-axis direction can drive the XY-axis angular connecting shaft 17 to rotate, the XY-axis angular connecting shaft 17 drives the XY-axis first conical gear 16 connected with the XY-axis angular connecting shaft, the XY-axis first conical gear 16 can also drive the XY-axis second conical gear 15 vertically meshed with the XY-axis first conical gear to rotate, the XY-axis direction transmission shaft 12 rotates along with the XY-axis direction transmission shaft 12 due to the fact that the XY-axis second conical gear 15 and the XY-axis direction transmission shaft 12 are concentric and fixedly connected, and finally the XY-axis inclination pointer 4 which is coaxial and fixedly connected with the XY-axis direction transmission shaft 12 rotates, and the real-time state of the temperature measuring room upright 1 on an XY surface is displayed on the observation gauge heads 3 on two.
The YZ axis inclination pointer 5 is a YZ axis inclination display pointer, and because the YZ axis direction transmission shaft 11 is too long and is supported by the shaft support supporting plate 10 and the shaft support bearing bush 19, the YZ axis direction transmission shaft 11 is ensured not to bend, so that the axis rotation is kept, and the measurement precision is improved. Under the action of natural gravity, the YZ-axis direction heavy hammer 14 drives the first section of YZ-axis direction transmission shaft 11 to rotate, the first section of YZ-axis direction transmission shaft 11 is connected with the converter 18 through YZ-axis transmission to drive the second section of YZ-axis direction transmission shaft 11 to rotate, and because the YZ-axis inclination pointer 5 and the YZ-axis direction transmission shaft 11 are coaxially and fixedly connected, the YZ-axis inclination pointer 5 can change along with the transmission shaft, and the real-time state of the temperature-measuring chamber upright post 1 on a YZ plane is displayed.
According to the real-time change values of the XY axis inclination pointer 4 and the YZ axis inclination pointer 5 on the observation gauge head 3 on the pointer type vertical instrument 9, the corresponding difference value is corrected, and the accuracy and the safety in construction are improved.
The pointer type vertical instrument used in the greenhouse construction has the advantages of simple and stable structure, low manufacturing cost, accurate measurement precision, more convenient operation and use, large practical application value, high popularization value, universality and universality.
The above-mentioned embodiments are only intended to describe the preferred embodiments of the present invention, but not to limit the scope of the present invention, and various modifications and improvements made by those skilled in the art without departing from the design spirit of the present invention should fall into the protection scope defined by the claims of the present invention.

Claims (7)

1. A pointer type vertical instrument used in greenhouse construction comprises a vertical column of a room to be measured, a vertical instrument reference backup plate, a pointer type vertical instrument and a permanent magnet, and is characterized in that,
the end surface of the vertical column of the chamber to be measured is rectangular, the vertical instrument reference backup plate comprises a sampling surface and a reference sampling platform, two sampling plates of the vertical instrument reference backup plate are L-shaped, the two sampling plates are respectively and tightly attached to the XY surface and the YZ surface of the vertical column of the chamber to be measured, the permanent magnet is fixed on the vertical instrument reference backup plate, and the pointer type vertical instrument is fixed on the reference sampling platform of the vertical instrument reference backup plate;
the pointer type vertical instrument comprises an observation gauge head, an XY axis inclination pointer, a YZ axis inclination pointer, a pointer type vertical instrument shell, a first pointer type vertical instrument inner cavity, a second pointer type vertical instrument inner cavity, an axle support supporting plate, a YZ axis direction transmission shaft, an XY axis direction heavy hammer, a YZ axis direction heavy hammer, an XY axis second bevel gear, an XY axis first bevel gear, an XY axis angle connecting shaft, a YZ axis transmission connecting converter and an axle support bearing bush; the pointer type vertical instrument shell is connected with the observation meter head, the pointer type vertical instrument shell is connected with the inner cavity of the first pointer type vertical instrument, and the inner cavity of the second pointer type vertical instrument is connected;
the XY-axis inclination pointer is connected with the XY-axis direction transmission shaft, one end of the XY-axis direction transmission shaft is fixedly provided with the XY-axis second bevel gear, the XY-axis second bevel gear is meshed with the XY-axis first bevel gear, the XY-axis first bevel gear is fixedly connected with the XY-axis angle connecting shaft, and the XY-axis direction heavy hammer is fixed at one end of the XY-axis angle connecting shaft; and
the YZ axis inclination pointer is connected with the YZ axis direction transmission shaft, the YZ axis direction transmission shaft is connected with the shaft support supporting plate, the YZ axis direction transmission shaft is connected with the shaft support bearing bush, the shaft support supporting plate is fixedly connected with the shaft support bearing bush, the YZ axis direction transmission shaft is connected with the YZ axis transmission connection converter, and the YZ axis direction heavy hammer is fixed at one end of the YZ axis direction transmission shaft.
2. The pointer type vertical instrument used in greenhouse construction according to claim 1, wherein the pointer type vertical instrument is designed with two groups of observation meter heads, the two groups of observation meter heads comprise the XY axis inclination pointer and the YZ axis inclination pointer, and the XY axis inclination pointer and the YZ axis inclination pointer on the two groups of observation meter heads synchronously indicate, so that operators at different angles can observe readings conveniently.
3. The pointer type vertical instrument used in greenhouse construction according to claim 1 or 2, wherein the axis diameter of the XY axis direction transmission shaft is smaller than the axis diameter of the YZ axis direction transmission shaft, the YZ axis direction transmission shaft is a hollow shaft, and the XY axis direction transmission shaft is located inside the YZ axis direction transmission shaft.
4. The pointer type vertical instrument for greenhouse construction according to claim 3, wherein the YZ axis direction transmission shaft is composed of two sections of shafts, the first section of YZ axis direction transmission shaft and the second section of YZ axis direction transmission shaft are connected through the YZ axis transmission connection converter, and the first section of YZ axis direction transmission shaft is fixed with the YZ axis direction weight.
5. The pointer-type vertical instrument used in greenhouse construction according to claim 3, wherein the first pointer-type vertical instrument cavity, the second pointer-type vertical instrument cavity, the XY-axis direction transmission shaft, the YZ-axis direction transmission shaft, the XY-axis tilt pointer and the YZ-axis tilt pointer are coaxial.
6. The pointer type verticality instrument for greenhouse construction according to claim 3, wherein the length of the shaft support plate is smaller than the inner diameters of the first pointer type verticality instrument inner cavity and the second pointer type verticality instrument inner cavity.
7. The pointer type vertical gauge for greenhouse construction according to claim 2, wherein the XY-axis direction weight and the YZ-axis direction weight are respectively spaced apart from the two observation headers by the same distance, and two of the axis support plates are provided on both sides of the XY-axis direction weight and the YZ-axis direction weight, respectively.
CN201921160280.7U 2019-07-23 2019-07-23 Pointer type vertical instrument used in greenhouse construction Active CN210051342U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921160280.7U CN210051342U (en) 2019-07-23 2019-07-23 Pointer type vertical instrument used in greenhouse construction

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921160280.7U CN210051342U (en) 2019-07-23 2019-07-23 Pointer type vertical instrument used in greenhouse construction

Publications (1)

Publication Number Publication Date
CN210051342U true CN210051342U (en) 2020-02-11

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Application Number Title Priority Date Filing Date
CN201921160280.7U Active CN210051342U (en) 2019-07-23 2019-07-23 Pointer type vertical instrument used in greenhouse construction

Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113124832A (en) * 2021-05-02 2021-07-16 曹志鹏 Pointer type vertical instrument for greenhouse construction engineering

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113124832A (en) * 2021-05-02 2021-07-16 曹志鹏 Pointer type vertical instrument for greenhouse construction engineering

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