Steel skeleton mounting method for giant sitting posture doll prop in theme park
By using a segmented installation method for steel structure units, the problems of installation space and economic cost for giant mascot props were solved, enabling the installation of complex-shaped steel frames and reducing the difficulty of transportation and hoisting.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-30
- Publication Date
- 2026-03-31
AI Technical Summary
In existing technologies, the installation methods for giant themed doll props require a huge amount of assembly space and hoisting equipment, resulting in economic waste and great transportation difficulties, and making it difficult to install steel frames with complex shapes.
The steel structure units are installed in sections, from bottom to top and from inside to outside, including the welding and hoisting of embedded parts, legs, torso, head, arms and other structures, to form an overall steel frame.
It reduces the assembly space requirements for giant puppet props, lowers the need for hoisting equipment, reduces economic costs, and enables the installation of complex-shaped steel frames.
Smart Images

Figure CN121756460A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of construction technology of contoured steel structures, and more particularly to the construction technology of seated mascots in theme parks, specifically the method for installing the steel frame of giant seated mascot props in theme parks. Background Technology
[0002] In the construction of theme parks, the forms of iconic buildings are becoming increasingly diverse, with buildings themselves or figures being the primary forms of representation. With the development of theme parks, giant mascot props have become iconic photo spots and landmark structures. Consequently, the installation of themed mascot props has taken many forms, and the installation method for giant mascot props, in particular, is a problem that urgently needs to be solved.
[0003] Currently, most puppet props are relatively small, and are mostly assembled in factories before being transported to the site and connected to the base. Slightly more complex ones have their body parts assembled in factories and then transported to the site for assembly. However, for giant puppet props exceeding a certain size, using the above methods requires a huge amount of assembly space and huge hoisting equipment, and the transportation process is also extremely difficult, resulting in a great deal of economic waste. Summary of the Invention
[0004] The purpose of this invention is to overcome the above-mentioned defects and propose a method for installing a steel frame for a giant themed doll, thus filling the gap in the technology for installing giant themed dolls.
[0005] To achieve the above objectives, the present invention is implemented as follows: A method for installing the steel frame of a giant seated mascot prop in a theme park includes an installation sequence from bottom to top and from inside to outside, as well as installation steps for steel structure embedded parts, leg steel structure, torso steel structure, head steel structure, and arm steel structure.
[0006] The steel frame installation method for the giant seated mascot props in the aforementioned theme park involves installing the leg steel structure, torso steel structure, head steel structure, and arm steel structure in the factory according to the design drawings. The steel structures are then assembled into steel structure units using economical transportation equipment and transported.
[0007] The method for installing the steel frame of the giant seated mascot prop in the theme park specifically includes: Step 1, Installation of Embedded Parts: Before the formal installation of the steel structure frame, embed the steel structure embedded parts into the concrete foundation according to the elevation and positioning in the drawings; Step 2, Installation of the main steel structure of the leg: The main steel structure of the leg is divided into the left foot frame unit, the right foot frame unit, the left lower leg frame unit, the right lower leg frame unit, the left side frame unit of the leg, the right side frame unit of the leg, and the center frame unit of the leg. Step 2.1: The main steel structure of the leg is a steel structure unit welded from steel structural components. The columns of the main steel structure of the leg are welded to the embedded steel components. Stiffening plates are welded to each side of the embedded steel components and the columns of the main steel structure of the leg. Thus, the installation of the main steel structure of the leg is completed. Step 3, Installation of Leg Connecting Beams: Weld the various steel frame units of the legs together to form a whole through the leg connecting beams. After completing this step, the entire leg steel structure of the doll is installed. Step 4, Installation of waist support diagonal braces: Diagonal braces are welded diagonally to both sides of the vertical steel components of the left leg frame unit, the right leg frame unit, and the center leg frame unit. Step 5, Torso Platform Installation: The torso platform unit is a steel structure unit welded from steel structural components. The torso platform unit is welded to the top of the vertical steel components of the waist support diagonal brace, the left leg skeleton unit, the right leg skeleton unit, and the center leg skeleton unit. Step 6, Right torso installation: The right torso unit is a steel structure unit welded from steel structural components, with a bolt connection plate for the right arm reserved on the right shoulder; Step 7, Left torso installation: The left torso unit is a steel structure unit welded from steel structural components. A bolt connection plate for the left arm is reserved on the left shoulder. The installation is completed by hoisting the left torso unit and welding it to the left side of the torso platform. Step 8: Installation of the torso connecting beam; The left and right torso units are welded together using the torso connecting beam to form a single unit; Step 9, Shoulder Platform Installation: The shoulder platform unit is a steel structure unit welded from steel structural components. The platform has a pre-reserved bolt connection plate for the upper structure. The shoulder platform unit is hoisted and welded to the top of the right torso unit and the left torso unit respectively, thus completing the installation of the torso steel structure. Step 10: Head main frame installation; The head main frame unit is a steel structure unit welded from steel structural components. All vertical rigid components of the head main frame unit have reserved bolt connection plates; The installation is completed by hoisting the head main frame unit and bolting it to the reserved bolt connection plates of the shoulder platform unit. Step 11, Hat Main Frame Installation: The hat main frame unit is a steel structure unit welded from steel structural components, with bolt connection plates reserved for the lower connecting components; the installation is completed by hoisting the hat main frame unit and bolting it to the reserved bolt connection plates on the upper part of the head main frame unit. Step 12 Head circumference frame installation: The head circumference is expanded by welding horizontal steel members perpendicular to the vertical members of the main head frame unit around the main head frame unit. Then, horizontal and vertical steel members are added around the horizontal members to complete the head circumference frame. Step 13 Hat circumference frame installation: Expand the hat circumference by welding horizontal steel members perpendicular to the vertical members of the main hat frame unit around the main hat frame unit. Then add horizontal and vertical steel members around the horizontal members to complete the hat circumference frame. Step 14: Left Hand Frame Installation: The left hand frame unit is a steel structure unit welded from steel structural components. The left hand frame has a pre-reserved bolt connection plate at the shoulder. The left hand frame unit is hoisted and bolted to the pre-reserved bolt connection plate at the left shoulder of the left torso unit to complete the installation of the left hand frame unit. Step 15: Right-hand skeleton installation: The right-hand skeleton unit is a steel structure unit welded from steel structural components. The right-hand skeleton has a pre-reserved bolt connection plate on the shoulder. The right-hand skeleton unit is hoisted and bolted to the right-hand torso unit with the pre-reserved bolt connection plate on the right shoulder of the right arm, thus completing the installation of the right-hand skeleton unit; at this point, the steel skeleton installation of the giant seated doll is complete.
[0008] Furthermore, the above construction steps specifically also include... Step 5 also includes adding a second-layer platform walkway to the torso platform unit; In step 6, after the torso platform unit is installed, the upper part of the first-floor maintenance ladder is welded to the torso platform unit, and the lower part is anchored to the concrete foundation, thus completing the installation of the steel structure below the waist; the second-floor maintenance ladder is pre-welded to the right torso unit to form a whole, and the installation is completed by hoisting the right torso unit and welding it to the right side of the torso platform. Between steps 8 and 9, there is also the step of installing the three-layer platform walkway slab. The walkway slab is laid from right to left starting from the top of the second-floor maintenance ladder, and the walkway slab is welded to the steel structure. In step 10, the three-layer maintenance ladder and the four-layer platform walkway are pre-welded into the head main frame unit to form a whole. The installation is completed by hoisting the head main frame unit and bolting the bolt connection plate reserved in the shoulder platform unit.
[0009] The steel frame construction method for the giant seated mascot in theme parks proposed in this invention has the following advantages: 1. Existing puppet props are generally small, and most are assembled in the factory and then transported to the site to be connected to the foundation. Slightly more complex ones are assembled in the factory with body parts and then transported to the site for assembly. This method is more applicable and suitable for the installation of puppet props of various shapes and sizes.
[0010] 2. The doll's design differs from that of a conventional steel truss structure, which increases the difficulty of assembly in the following ways: 1) Under the condition that the steel structure is reasonably stressed, it is also necessary to make it into the outline shape of the doll to ensure the subsequent installation of the doll's outer skin.
[0011] 2) The main load-bearing steel structure is difficult to shape in one go. The difficult-to-shape shape is shaped by adding secondary steel components to meet the requirements for the doll's outer skin installation. To overcome the aforementioned problems, this method proposes a segmented installation approach, which is particularly economical for the installation of giant puppet props. The installation method can be simplified to a general steel structure installation, but it can still showcase the complex skeleton of the giant puppet prop. At the same time, it reduces the assembly space of the giant puppet prop and the amount of hoisting equipment, thereby reducing the economic cost of the giant puppet in terms of installation and transportation. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the installation method for the steel frame of the giant seated mascot prop shown in this invention. Figure 1 .
[0013] Figure 2 This is a schematic diagram of the installation method for the steel frame of the giant seated mascot prop shown in this invention. Figure 2 .
[0014] Figure 3 This is a schematic diagram of the installation method for the steel frame of the giant seated mascot prop shown in this invention. Figure 3 .
[0015] Figure 4 This is a schematic diagram of the installation method for the steel frame of the giant seated mascot prop shown in this invention. Figure 4 .
[0016] Figure 5 This is a schematic diagram of the installation method for the steel frame of the giant seated mascot prop shown in this invention. Figure 5 .
[0017] Figure 6 This is a schematic diagram of the installation method for the steel frame of the giant seated mascot prop shown in this invention. Figure 6 .
[0018] Figure 7 This is a schematic diagram of the installation method for the steel frame of the giant seated mascot prop shown in this invention. Figure 7 .
[0019] Figure 8 This is a schematic diagram of the installation method for the steel frame of the giant seated mascot prop shown in this invention. Figure 8 .
[0020] Figure 9 This is a schematic diagram of the installation method for the steel frame of the giant seated mascot prop shown in this invention. Figure 9 .
[0021] Figure 10 This is a schematic diagram of the installation method for the steel frame of the giant seated mascot prop shown in this invention. Figure 10 .
[0022] Figure 11 This is a schematic diagram of the installation method for the steel frame of the giant seated mascot prop shown in this invention. Figure 10 one.
[0023] Figure 12 This is a schematic diagram of the installation method for the steel frame of the giant seated mascot prop shown in this invention. Figure 10 two.
[0024] Figure 13 This is a schematic diagram of the installation method for the steel frame of the giant seated mascot prop shown in this invention. Figure 10 three.
[0025] Figure 14 This is a schematic diagram of the steel frame of the giant seated doll prop shown in this invention. Detailed Implementation
[0026] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this application. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection claimed in this application.
[0027] like Figures 1 to 14 A method for installing the steel frame of a giant seated mascot prop in a theme park, comprising: Step 1, Installation of Embedded Parts: Before the formal installation of the steel structure frame, embed the steel structure embedded parts-1 into the concrete foundation according to the elevation and positioning in the drawings.
[0028] Step 2: Installation of the main steel structure of the legs: The main steel structure of the legs is divided into the left leg frame - Unit 2.1, the right leg frame - Unit 2.2, the left lower leg frame - Unit 2.3, the right lower leg frame - Unit 2.4, the left leg frame - Unit 2.5, the right leg frame - Unit 2.6, and the central leg frame - Unit 2.7. All main steel structures of the legs are welded steel structural units composed of steel structural components. The columns of the main steel structure of the legs are welded to the steel structural embedded parts -1. Stiffening plates are welded to each side of the steel structural embedded parts -1 and the columns of the main steel structure of the legs, thus completing the installation of the main steel structure of the legs.
[0029] Step 3, Leg Connecting Beam-2.8 Installation: Weld the various steel structure skeleton units of the legs together to form a whole through the leg connecting beam-2.8. After completing this step, the entire leg steel structure of the doll is installed. Step 4, Installation of waist support diagonal brace-3.1: Weld waist support diagonal brace-3.1 diagonally to both sides of the vertical steel components of the left leg frame-2.5 unit, the right leg frame-2.6 unit, and the center leg frame-2.7 unit; Step 5, Torso Platform-3.2 Installation: Torso Platform-3.2 is a steel structure unit welded from steel structural components. To facilitate later maintenance, a second-layer platform walkway-3.3 is added to Torso Platform-3.2 unit; Torso Platform-3.2 unit is welded to the top of the vertical steel components of the waist support diagonal rod-3.1, the left leg frame-2.5 unit, the right leg frame-2.6 unit, and the central leg frame-2.7 unit respectively; Step 6, Installation of the first-floor maintenance ladder-3.4: After the torso platform-3.2 unit is installed, weld the upper part of the first-floor maintenance ladder-3.4 to the torso platform-3.2 unit and anchor the lower part to the concrete foundation. This completes the installation of the steel structure below the waist.
[0030] Step 7, Right Torso-4.1 Installation: The right torso-4.1 unit is a steel structure unit welded from steel structural components. A bolt connection plate for the right arm is reserved on the right shoulder. The second-floor maintenance ladder-4.3 can be welded to the right torso-4.1 unit in advance to form a whole. The installation is completed by hoisting the right torso-4.1 unit and welding it to the right side of the torso platform-3.2. Step 8, Left Torso-4.2 Installation: The left torso-4.2 unit is a steel structure unit welded from steel structural components. A bolt connection plate for the left arm is reserved on the left shoulder. The installation is completed by hoisting the left torso-4.2 unit and welding it to the left side of the torso platform-3.2. Step 9: Installation of torso connecting beam-4.4; Weld the left torso-4.2 unit and the right torso-4.1 unit together using the torso connecting beam-4.4 to form a single unit; Step 10, Installation of the third-floor platform walkway slab - 4.5: Starting from the top of the second-floor maintenance ladder - 4.3, the walkway slab is laid from right to left, and the walkway slab is welded to the steel structure. Step 11, Shoulder Platform-5 Installation: The shoulder platform-5 unit is a steel structure unit welded from steel structural components. The platform has a pre-reserved bolt connection plate for the upper structure. The shoulder platform-5 unit is hoisted and welded to the top of the right torso-4.1 unit and the left torso-4.2 unit respectively, thus completing the installation of the torso steel structure. Step 12, Head Main Frame-6.1 Installation; The head main frame-6.1 unit is a steel structure unit welded from steel structural components. All vertical rigid components of the head main frame-6.1 unit have reserved bolt connection plates; The three-layer maintenance ladder-6.2 and the four-layer platform walkway plate-6.3 are pre-welded into the head main frame-6.1 unit to form a whole. The installation is completed by hoisting the head main frame-6.1 unit and bolting it to the reserved bolt connection plates of the shoulder platform-5 unit. Step 13, Hat Main Frame-7 Installation: The hat main frame-7 unit is a steel structure unit welded from steel structural components, and bolt connection plates are reserved for the lower connecting components; the installation is completed by hoisting the hat main frame-7 unit and bolting it to the upper reserved bolt connection plates of the head main frame-6.1 unit; Step 14, Head circumference frame-8 installation: The head circumference is expanded by welding horizontal steel members perpendicular to the vertical members of the head main frame-6.1 unit around the head main frame-6.1 unit. Then, horizontal and vertical steel members are added around the horizontal members to complete the head circumference frame-8. Step 15, Hat Circumference Frame-9 Installation: Expand the hat circumference by welding horizontal steel members perpendicular to the vertical members of the main hat frame-7 unit around the main hat frame-7 unit. Then, add horizontal and vertical steel members around the horizontal members to complete the hat circumference frame-9. Step 16, Left Hand Frame-10 Installation: The left hand frame-10 unit is a steel structure unit welded from steel structural components. The left hand frame-10 has a reserved bolt connection plate on its shoulder. The left hand frame-10 unit is hoisted and bolted to the left torso-4.2 unit, which has a reserved bolt connection plate on the left shoulder for the left arm, to complete the installation of the left hand frame-10 unit. Step 17, Right Hand Frame-11 Installation: The right hand frame-11 unit is a steel structure unit welded from steel structural components. The right hand frame-11 has a reserved bolt connection plate on its shoulder. The right hand frame-11 unit is hoisted and bolted to the right torso-4.1 unit, which has a reserved bolt connection plate on the right shoulder for the right arm, thus completing the installation of the right hand frame-11 unit. At this point, the steel frame installation of the giant themed doll is complete.
[0031] The above are merely embodiments provided in this application and are not intended to limit this application. Although this application has been described in detail with reference to the embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. However, any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A method for installing the steel frame of a giant seated mascot prop in a theme park, characterized by: The installation steps include installation sequence from bottom to top and from inside to outside, and installation of steel structure embedded parts, leg steel structure, trunk steel structure, head steel structure and arm steel structure.
2. The method of installing a steel skeleton of a giant sitting dummy prop in a theme park according to claim 1, wherein: The leg steel structure, trunk steel structure, head steel structure and arm steel structure are produced in the factory according to design drawings, and part of the steel structures are assembled into steel structure units and transported by economic transportation equipment.
3. The method of claim 1 or 2, wherein the method further comprises: Specifically, the method comprises the following steps Step 1, embedded part installation: before the formal installation of the steel structure framework, the steel structure embedded parts are embedded in place with the concrete foundation according to the drawing elevation and positioning; Step 2, installation of leg main steel structure: the leg main steel structure is divided into left foot framework unit, right foot framework unit, left lower leg framework unit, right lower leg framework unit, leg left side framework unit, leg right side framework unit and leg center framework unit; Step 2.1, the main steel structure of the leg is a steel structure unit welded by steel structure members, the vertical columns of the main steel structure of the leg are welded and connected with the steel structure embedded parts, and a reinforcing plate is welded at each face of the steel structure embedded parts and the vertical columns of the main steel structure of the leg, that is, the installation of the leg main steel structure is completed; Step 3, installation of leg connecting beam: the leg steel structure framework units are welded into a whole through the leg connecting beam, and after this step is completed, the leg steel structure of the whole doll is installed; Step 4, installation of waist support inclined rod: the waist support inclined rod is welded on both sides of the vertical steel members of the leg left side framework unit, leg right side framework unit and leg center framework unit; Step 5, installation of trunk platform: the trunk platform unit is a steel structure unit welded by steel structure members, and the trunk platform unit is welded with the waist support inclined rod and the top of the vertical steel members of the leg left side framework unit, leg right side framework unit and leg center framework unit respectively; Step 6, installation of right side trunk: the right side trunk unit is a steel structure unit welded by steel structure members, and the right side shoulder part is provided with a bolt connecting plate for the left arm; Step 7, installation of left side trunk: the left side trunk unit is a steel structure unit welded by steel structure members, the left side shoulder part is provided with a bolt connecting plate for the right arm, and the left side trunk unit is welded with the left side of the trunk platform by hoisting to complete the installation; Step 8, installation of trunk connecting beam: the left side trunk unit and the right side trunk unit are welded into a whole through the trunk connecting beam; Step 9, installation of shoulder platform: the shoulder platform unit is a steel structure unit welded by steel structure members, and the platform is provided with a bolt connecting plate for the upper structure, and the shoulder platform unit is welded with the top of the right side trunk unit and the left side trunk unit by hoisting, that is, the installation of the trunk steel structure is completed; Step 10, installation of head main framework: the head main framework unit is a steel structure unit welded by steel structure members, and the vertical steel members of the head main framework unit are provided with bolt connecting plates; the head main framework unit is bolted and connected with the bolt connecting plates reserved in the shoulder platform unit by hoisting, and the installation is completed. Step 11, hat main skeleton installation: the hat main skeleton unit is a steel structure unit welded by steel structural members, and the lower connecting members are provided with bolt connecting plates; the installation is completed by hoisting the hat main skeleton unit and bolt connecting the bolt connecting plates reserved on the upper part of the head main skeleton unit. Step 12, head circumference skeleton installation: the head circumference is expanded by welding horizontal steel members perpendicular to the vertical members of the head main skeleton unit around the head main skeleton unit, and then the horizontal and vertical steel members are added around the horizontal members to complete the head circumference skeleton. Step 13, hat circumference skeleton installation: the hat circumference is expanded by welding horizontal steel members perpendicular to the vertical members of the hat main skeleton unit around the hat main skeleton unit, and then the horizontal and vertical steel members are added around the horizontal members to complete the hat circumference skeleton. Step 14, left hand skeleton installation: the left hand skeleton unit is a steel structure unit welded by steel structural members, and the left hand skeleton shoulder is provided with a bolt connecting plate; the installation of the left hand skeleton unit is completed by hoisting the left hand skeleton unit and bolt connecting the bolt connecting plate reserved on the left side of the shoulder of the left side trunk unit. Step 15, right hand skeleton installation: the right hand skeleton unit is a steel structure unit welded by steel structural members, and the right hand skeleton shoulder is provided with a bolt connecting plate; the installation of the right hand skeleton unit is completed by hoisting the right hand skeleton unit and bolt connecting the bolt connecting plate reserved on the right side of the shoulder of the right side trunk unit; thus the steel skeleton installation of the giant sitting posture doll is completed.
4. The method of claim 1 or 2, wherein the method further comprises: In step 6, after the installation of the trunk platform unit is completed, the upper part of a layer of maintenance ladder is welded with the trunk platform unit, and the lower part is anchored with the concrete foundation, that is, the installation of the steel structure below the waist is completed.
5. The method of claim 1 or 2, wherein the method further comprises: Step 5 further comprises adding a two-layer platform walkway plate on the trunk platform unit.
6. The method of claim 1 or 2, wherein the method further comprises: In step 6, the two-layer maintenance ladder is welded with the right side trunk unit in advance to form a whole, and the installation is completed by hoisting the right side trunk unit and welding with the right side of the trunk platform.
7. The method of claim 1 or 2, wherein the method further comprises: Between step 8 and step 9, a step of installing a three-layer platform walkway plate is further included, and the walkway plate is laid from right to left on the top of the two-layer maintenance ladder, and the walkway plate and the steel member are welded.
8. The method of claim 1 or 2, wherein the method further comprises: In step 10, the three-layer maintenance ladder and the four-layer platform walkway plate are welded with the head main skeleton unit in advance to form a whole, and the installation is completed by hoisting the head main skeleton unit and bolt connecting the bolt connecting plate reserved on the shoulder platform unit.