Supporting device for indoor and outdoor scanning modeling equipment
By designing a supporting device that combines telescopic vertical rods and sliding structures for scanning modeling equipment, the problem of insufficient portability and stability of the equipment in the prior art is solved, and the flexible and stable installation and movement of the equipment at different heights and angles is realized, and scanning quality and working efficiency are improved.
Patent Information
- Application Number
- CN202422414027.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-09-30
AI Technical Summary
The existing tripods lack portability in indoor and outdoor scanning modeling equipment, and the movement method is inconvenient, making it difficult to meet the stable support needs of the equipment at different heights and angles.
A support device including a telescopic vertical rod, a sliding structure, a supporting structure and a supporting pedestal is designed, allowing the scanning equipment to be installed and moved stably at different heights and angles, and the height and angle adjustment is achieved through the telescopic vertical rod and a sliding structure.
The device improves the portability and flexibility of the scanning device, can quickly switch modes in different environments, realize stable and efficient scanning data acquisition, and improve work efficiency and scanning quality.
Smart Images

Figure CN223036076U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of auxiliary devices for scanning and modeling equipment, in particular to a support device for indoor and outdoor scanning and modeling equipment. Background Art
[0002] Support devices such as gimbals or tripods are commonly used and useful auxiliary devices in indoor scanning and modeling. They can help stabilize the scanning device and ensure clear and accurate data is obtained during scanning. It is beneficial for improving scanning accuracy, increasing work efficiency, expanding the application scope, and improving the user experience, and can significantly enhance the scanning quality and work efficiency.
[0003] Scanning and modeling equipment needs to be frequently moved to obtain three-dimensional data of various angles of the model; existing tripods are all fixedly installed, and their moving methods are either handheld, or additional parts are installed, or they need to be carried separately and deployed on a dedicated tripod trolley, without good portability. Summary of the Utility Model
[0004] The purpose of the utility model is to overcome the deficiencies of the above-mentioned prior art and provide a support device for indoor and outdoor scanning and modeling equipment.
[0005] The utility model is realized by the following technical solutions: A support device for indoor and outdoor scanning and modeling equipment includes a telescopic vertical rod, a sliding structure, a support structure, and support feet; the indoor and outdoor scanning and modeling equipment is detachably installed on the upper part of the telescopic vertical rod, and the lower end of the telescopic vertical rod is installed on the support structure; the support structure is movably arranged on the support feet, the upper end of the support feet is hinged to the sliding structure, and the sliding structure is sleeved on the telescopic vertical rod and can slide up and down along it.
[0006] The indoor and outdoor scanning and modeling equipment is detachably fixed to the upper part of the telescopic vertical rod, and the telescopic vertical rod can provide different scanning heights for the equipment; the support structure can stably support the telescopic vertical rod; the support feet cooperate with the sliding structure to adjust the angle for stable placement; the support structure is movably arranged on the support feet, and the height of the support structure can be adjusted.
[0007] The sliding structure is a movable platform. A through hole is formed in the middle of the movable platform. The telescopic vertical rod is slidably inserted into the through hole. The movable platform is equipped with a hand-tightening screw that locks or loosens the telescopic vertical rod by rotation. Three positioning grooves are formed in the movable platform. The support leg frame includes three support legs. The upper ends of the support legs are hinged in the positioning grooves by pins, and the support legs can freely rotate around the pins to be folded or unfolded. The arrangement of the hand-tightening screw and the through hole can adjust the telescopic movement of the telescopic vertical rod, enabling the telescopic vertical rod to slide and adjust its length along the through hole, so that the movable platform is fastened at a preset position on the telescopic vertical rod. The cooperation between the positioning grooves and the support legs enables the support legs to freely rotate around the pins.
[0008] The support structure includes a support rod and a fixed platform. A jack is formed in the support leg. There are three support rods. The inner ends of the support rods are hinged to the fixed platform, and the outer ends of the support rods are fixed to the support leg by pins with spring reset functions inserted into the jacks. The lower end of the telescopic vertical rod is installed on the fixed platform.
[0009] The support rod includes two parallel support plates. The two support plates are connected together by a connecting member. The inner ends of the two support plates are hinged to the fixed platform by pins passing through them, and the outer ends of the two support plates are fixed to the support leg by pins with spring reset functions. The support leg is clamped in the space between the two support plates.
[0010] A number of jacks are formed in the support leg along its length direction.
[0011] Each support leg is provided with two jacks, one at the middle of the support leg and one at the lower part of the support leg.
[0012] The support plate has a gradually expanding diameter structure from its inner end to its outer end.
[0013] A ball is installed at the lower end of the support rod, and a ball is installed on the lower side surface of the fixed platform.
[0014] The three positioning grooves are located in the same plane, and the angle between adjacent positioning grooves is 120 degrees.
[0015] The fixed platform is provided with three positioning members. The positioning members are provided with mounting holes. The inner ends of the support rods are hinged to the fixed platform by pins passing through the mounting holes. The angle between adjacent positioning members is 120 degrees.
[0016] Compared with the prior art, the advantages of the present utility model are as follows: When in need of use, this device can simply and quickly switch modes to achieve the function of being movable; this device does not require additional accessories. Only by adjusting the position of the pin and cooperating with the movement of the rollers can the height adjustment and movement be completed. It has portability and can improve the scanning quality and work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic structural view of an embodiment of the present utility model in a fixed state;
[0018] Figure 2 It is a schematic structural view of an embodiment of the present utility model in a sliding state;
[0019] Figure 3 It is a bottom view of an embodiment of the present utility model in a sliding state.
[0020] The meanings of the reference numerals in the drawings: 1, telescopic vertical rod; 2, movable platform; 21, positioning groove; 3, fixed platform; 31, positioning member; 4, support rod; 5, support leg; 51, jack; 6, ball. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0021] The following further elaborates in detail on the content of the present utility model in conjunction with the drawings and specific embodiments.
[0022] Embodiment
[0023] Refer to Figures 1 to 3 , which is a support device for indoor and outdoor scanning and modeling equipment, including a telescopic vertical rod 1, a sliding structure, a support structure, and a support tripod; the indoor and outdoor scanning and modeling equipment is detachably installed on the upper part of the telescopic vertical rod 1, and the lower end of the telescopic vertical rod 1 is installed on the support structure; the support structure is movably arranged on the support tripod, the upper end of the support tripod is hinged to the sliding structure, and the sliding structure is sleeved on the telescopic vertical rod 1 and can slide up and down along it.
[0024] The indoor and outdoor scanning and modeling equipment is detachably fixed on the upper part of the telescopic vertical rod 1, and the telescopic vertical rod 1 can provide different scanning heights for the equipment; the support structure can stably support the telescopic vertical rod 1; the support tripod cooperates with the sliding structure to adjust the angle for stable placement; the support structure is movably arranged on the support tripod, and the height of the support structure can be adjusted.
[0025] The sliding structure is the movable platform 2. A through hole is provided in the middle of the movable platform 2. The telescopic vertical rod 1 is slidably inserted into the through hole. The movable platform 2 is equipped with a hand-tightening screw for locking or loosening the telescopic vertical rod 1 by rotation. Three positioning grooves 21 are provided on the movable platform 2. The support leg frame includes three support legs 5. The upper ends of the support legs 5 are hinged in the positioning grooves 21 by pins, and the support legs 5 can freely rotate around the pins to fold or unfold. The arrangement of the hand-tightening screw and the through hole can adjust the telescopic movement of the telescopic vertical rod 1, enabling the telescopic vertical rod 1 to slide and adjust its length along the through hole, so that the movable platform 2 is fastened at a preset position on the telescopic vertical rod 1. The cooperation between the positioning grooves 21 and the support legs 5 allows the support legs 5 to freely rotate around the pins.
[0026] The support structure includes a support rod 4 and a fixed platform 3. The support leg 5 is provided with a jack 51. There are three support rods 4. The inner ends of the support rods 4 are hinged to the fixed platform 3, and the outer ends of the support rods 4 are fixed to the support leg 5 by pins with spring return function inserted into the jacks 51. The lower end of the telescopic vertical rod 1 is installed on the fixed platform 3.
[0027] The support rod 4 includes two parallel support plates. The two support plates are connected together by a connecting member. The inner ends of the two support plates are hinged to the fixed platform 3 by pins passing through, and the outer ends of the two support plates are fixed to the support leg 5 by pins with spring return function. The support leg 5 is clamped in the space between the two support plates.
[0028] A plurality of jacks 51 are provided along the length direction of the support leg 5.
[0029] Each support leg 5 is provided with two jacks 51, one at the middle of the support leg 5 and one at the lower part of the support leg 5.
[0030] The support plate has a gradually expanding diameter structure from its inner end to its outer end.
[0031] The lower end of the support rod 4 is installed with a ball 6, and the lower side of the fixed platform 3 is installed with a ball 6.
[0032] The three positioning grooves 21 are located in the same plane, and the angle between adjacent positioning grooves 21 is 120 degrees.
[0033] The fixed platform 3 is provided with three positioning members 31. The positioning members 31 are provided with mounting holes. The inner ends of the support rods 4 are hinged to the fixed platform 3 by pins passing through the mounting holes; the angle between adjacent positioning members 31 is 120 degrees.
[0034] In this embodiment, the bolt with a spring reset function has a knob at its outer end, which is an existing device, so there is no need to expand the specific structural analysis. The adjacent positioning grooves 21 form an angle of 120 degrees with each other, so that the support legs 5 are evenly hinged on the movable platform 2 and the force is evenly distributed. The adjacent positioning members 31 form an angle of 120 degrees with each other, so that the support rods 4 are evenly hinged on the fixed platform 3 and the force is evenly distributed. Ball bearings 6 are installed on the lower side of the fixed platform 3 and the lower ends of the support rods 4 to assist in movement. In the embodiment of this application, a case where the support leg 5 is provided with two jacks 51 is exemplified. One jack 51 is provided in the middle of the support leg 5 and the other is located at the lower part of the support leg 5. When the support rod 4 is fixed to the jack 51 in the middle of the support leg 5 through a bolt, the device is in a fixed state at this time, and both the support rod 4 and the fixed platform 3 are off the ground. When the support rod 4 is fixed to the jack 51 at the lower part of the support leg 5 through a bolt, the ball bearings 6 on the lower side of the fixed platform 3 and the ball bearings 6 at the lower ends of the support rods 4 both contact the ground, thereby implementing the sliding form.
[0035] The above detailed description is a specific description of the feasible embodiments of the present invention, and this embodiment is not intended to limit the patent scope of the present invention. Any equivalent implementation or change made without departing from the present invention shall be included in the patent scope of this case.
Claims
1. A support device for indoor and outdoor scanning modeling equipment, characterized in that: It includes a telescopic vertical rod, a sliding structure, a supporting structure and a supporting tripod; the indoor and outdoor scanning modeling equipment is detachably mounted on the upper part of the telescopic vertical rod, and the lower end of the telescopic vertical rod is mounted on the supporting structure; The supporting structure is movably arranged on the supporting tripod, the upper end of the supporting tripod is hinged on the sliding structure, and the sliding structure is sleeved on the telescopic vertical rod and can slide up and down along the telescopic vertical rod.
2. The supporting device for indoor and outdoor scanning modeling equipment according to claim 1, characterized in that: The sliding structure is a movable platform, a through hole is provided in the middle of the movable platform, the telescopic vertical rod is slidably inserted into the through hole, and the movable platform is equipped with a hand screw for locking or loosening the telescopic vertical rod by rotation; the movable platform is provided with three positioning grooves; the supporting tripod includes three supporting legs, the upper ends of the supporting legs are hinged in the positioning grooves by pins, and the supporting legs can be freely rotated around the pins to be folded or unfolded.
3. The supporting device for indoor and outdoor scanning modeling equipment according to claim 2, characterized in that: The supporting structure includes a supporting rod and a fixed platform; the supporting leg is provided with a socket, the supporting rod is provided with three sockets, the inner end of the supporting rod is hinged on the fixed platform, and the outer end of the supporting rod is fixed to the supporting leg by a pin with a spring reset function passing through the socket; the lower end of the telescopic vertical rod is installed on the fixed platform.
4. The supporting device for indoor and outdoor scanning modeling equipment according to claim 3, characterized in that: The support rod includes two support plates arranged in parallel, the two support plates are connected together by a connecting piece, the inner ends of the two support plates are hinged to the fixed platform by pins, the outer ends of the two support plates are fixed to the support legs by pins with spring reset function, and the support legs are clamped in the space between the two support plates.
5. The supporting device for indoor and outdoor scanning modeling equipment according to claim 3, characterized in that: A plurality of the insertion holes are provided along the length direction of the supporting leg.
6. The supporting device for indoor and outdoor scanning modeling equipment according to claim 3, characterized in that: Each of the supporting legs is provided with two insertion holes, one located in the middle of the supporting leg and the other located in the lower part of the supporting leg.
7. The supporting device for indoor and outdoor scanning modeling equipment according to claim 4, characterized in that: The support plate has a gradually expanding diameter structure from its inner end to its outer end.
8. The supporting device for indoor and outdoor scanning modeling equipment according to claim 3, characterized in that: A ball bearing is installed at the lower end of the support rod, and a ball bearing is installed on the lower side of the fixed platform.
9. The supporting device for indoor and outdoor scanning modeling equipment according to claim 2, characterized in that: The three positioning grooves are located in the same plane, and adjacent positioning grooves form an angle of 120 degrees.
10. The supporting device for indoor and outdoor scanning modeling equipment according to claim 3, characterized in that: The fixed platform is provided with three positioning members, each of which is provided with a mounting hole, and the inner end of the support rod is hinged to the fixed platform through a pin inserted into the mounting hole; an angle of 120 degrees is formed between adjacent positioning members.