Modularly assembled combat vehicle
The modular combat vehicle design addresses the lack of scalability and modularity in existing combat vehicles by allowing rapid assembly and disassembly of armor and modules, improving playability and educational value while reducing costs and promoting safe competition.
Patent Information
- Application Number
- DE202025106205
- Authority / Receiving Office
- DE · DE
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2025-10-11
- Publication Date
- 2025-12-24
- Estimated Expiration
- 2035-10-31
AI Technical Summary
Existing combat vehicles and confrontation robots lack scalability and modularity, with fixed structures that are difficult to disassemble and reassemble, limiting educational and creative customization, and traditional competition rules focus on destruction rather than educational value.
A modularly assembled combat vehicle with interchangeable armor and expansion modules, featuring DC motors, universal wheels, magnetic suction holes, and a triangular attack module, allowing rapid assembly and disassembly, and competition rules based on removing armor rather than destroying the main body.
Enhances playability, teaching efficiency, and creativity by enabling quick customization of armor and modules, reduces maintenance costs, and promotes educational and safe competition.
Smart Images

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Abstract
Description
TECHNICAL AREA
[0001] The utility model relates to the technical field of toys, in particular to a modularly assembled combat vehicle. TECHNICAL BACKGROUND
[0002] Both combat vehicles and confrontation robots represent a type of robot toy. Existing confrontation robots or combat vehicles are typically constructed with fixed structures that lack scalability and modularity. Participants can only modify them to a limited extent. It is difficult to incorporate educational, fun, and competitive elements. Furthermore, the outer armor of existing combat vehicles is usually attached by bolting or welding, which is complicated to disassemble and reassemble, hindering students and enthusiasts from quickly swapping armor or performing creative transformations.
[0003] On the other hand, the competition of war cars usually emphasizes confrontation, but traditional cars have a single function, adopt competition rules that destroy the bodywork, and lack educational, scientific, and technological practical value.
[0004] Therefore, we propose a modularly mountable combat vehicle to solve the problems mentioned above. CONTENTS OF THIS APPLICATION (1) Technical problems resolved
[0005] In view of the shortcomings of the prior art, the utility model provides a modularly assembled combat vehicle that solves the problem that the existing counter-scale robot or combat vehicle proposed in the above background of the art is normally a fixed structural design and lacks the problem of expandability and modular features. (2) Technical solution
[0006] To achieve the aforementioned purposes, the utility model specifically incorporates the following technical solutions: A modularly assembled combat vehicle comprises a combat vehicle which includes a combat vehicle, wherein the top and bottom of the main combat vehicle body are provided with a top plate and a bottom plate respectively, wherein two DC motors are arranged on the bottom plate, wherein the output end of the DC motors is provided with a drive wheel, and several modular armored reinforcement edges are arranged around the main combat vehicle body.
[0007] In addition, two mounting seats are arranged symmetrically and firmly on the underside of the base plate, and the two DC motors are each installed within the two mounting seats.
[0008] Furthermore, the underside of the base plate is also firmly mounted to a mounting plate by a first bolt, and the underside of the mounting plate is fitted with a universal wheel.
[0009] Furthermore, the number of mounting plates is at least two, and the two universal wheels are each in a cross-shaped combination with the two drive wheels.
[0010] In addition, one side of the main body of the carriage is fixed with an indicator light mounting plate, and one side of the indicator light mounting plate is equipped with a bearing indicator lamp.
[0011] In addition, a large number of magnetic suction holes for magnetic suction armor are provided on the fixed edge of the modular armor.
[0012] Furthermore, the attack module mounting plate is triangular in shape overall.
[0013] Furthermore, the underside of one end of the mounting plate of the attack module is provided with a splice groove, and the splice groove is connected to one end of the upper plate.
[0014] In addition, several second bolts are provided inside the car body to connect the base plate and the top plate.
[0015] Furthermore, the top of the upper plate is provided with a through-hole, and one side of the car body is provided with an electrical connection hole located above the indicator light mounting plate. (3) Beneficial effects
[0016] In comparison to the prior art, the utility model provides a modularly assembled combat vehicle that has the following advantageous effects: The utility model enables the rapid loading and unloading of external equipment, improves playability and teaching efficiency, assists participants in customizing the armor and expansion module, stimulates creativity and personalized participation, adopts the competitive rules of firing armor, considers safety and educational significance, reduces risks and damage to combat vehicles, significantly reduces usage and maintenance costs, and is suitable as an innovative competitive platform for education and entertainment. BRIEF DESCRIPTION OF THE DRAWINGS Fig. Figure 1 is a schematic assembly diagram of the utility model's combat vehicle; Fig. Figure 2 is a side view of the structure of the utility model's combat vehicle; Fig. Figure 3 is a schematic structural representation of the indicator light mounting plate of the utility model; Fig. Figure 4 is a schematic representation of the structure of the splice groove of the utility model; Fig. Figure 5 is a schematic representation of the internal structure of the utility model's combat vehicle.
[0017] In the picture: 1. Combat vehicle; 11. Main body of the vehicle; 111. Electrical connection hole; 12. Top plate; 121. Through hole; 13. Bottom plate; 131. First bolt; 132. Mounting plate; 14. Attack module mounting plate; 141. Splice slot; 15. Modular armor-piercing edge; 151. Magnetic suction hole for magnetic armor; 16. Mounting seat; 161. DC motor; 162. Drive wheels; 17. Indicator light mounting plate; 171. Bearing indicator light; 18. Universal wheel; 19. Second pin. DETAILED DESCRIPTION
[0018] The technical solution in the embodiment of the utility model is described clearly and completely below, in conjunction with the drawings of that embodiment. It is evident that the described embodiments represent only a subset of the embodiments of the utility model, not all of them. Based on the embodiments in the utility model, all other embodiments that a person skilled in the art could obtain without creative work fall within the scope of protection of the utility model. Examples of implementation
[0019] As in the Fig. Figures 1-5 show an embodiment of the utility model, a modularly assembled fighting vehicle, including fighting vehicle 1, the fighting vehicle 1 comprising a vehicle body 11, the top and bottom of the vehicle body 11 with an upper plate 12 and a lower plate 13 respectively with two DC motors 161, the output end of the DC motor 161 is equipped with a drive wheel 162, and the vehicle body 11 is provided with several modular armored fixed edges 15 around the upper end of the upper plate 12.
[0020] The base plate 13 is made of metal, the car body 11, the upper plate 12 and the attack module mounting plate 14 are made of lightweight and high-strength materials (such as ABS, carbon fiber or composite material), and the upper plate 12 and the base plate 13 are fastened by second bolts 19 to form the body frame, which provides a protective space for internal circuits and mechanical structures.
[0021] As in Fig. As shown in Figure 3, in some embodiments the base of the base plate 13 is symmetrically and firmly provided with two mounting seats 16, and two of the DC motors 161 are each installed within the two mounting seats 16.
[0022] The fixed seat 16 is used to install the DC motor 161. The DC motor 161 is embedded in the fixed seat 16 and drives the wheel 162 directly through the output shaft. The fixed seat 16 and the base plate 13 are integrated by welding to ensure the stability of the power transmission and to improve driving stability.
[0023] As in Fig. As shown in Figure 3, in some embodiments the base of the base plate 13 is also firmly attached to the underside of the cardan wheel 18 via a first bolt 131 with a mounting plate 132.
[0024] The mounting plate 132 is fastened to the first bolt 131 by screws, and the operating mode is simple and quick, which is convenient for later assembly and maintenance.
[0025] As in the Fig. As shown in Figures 3-5, in some embodiments the number of fixed plates 132 is at least two, and the two universal wheels 18 are each in a cross-shaped combination with the two drive wheels 162.
[0026] The two universal wheels 18 and the two drive wheels 162 form a cross arrangement to achieve omnidirectional mobility, and the coordinated steering of several wheels improves steering flexibility and is particularly suitable for confrontation scenarios in complex terrain.
[0027] As in Fig. As shown in Figure 3, in some embodiments one side of the carriage body 11 is fixedly provided with a control light mounting plate 17, and one side of the control light mounting plate 17 is provided with a bearing control light 171.
[0028] The warehouse indicator light 171 is installed on the indicator light mounting plate 17. The warehouse indicator light 171 is in the form of a long strip and has a large illumination area. Once illuminated, it is easier for users to see intuitively.
[0029] As in the Fig. As shown in Figures 1-5, in some embodiments several magnetic suction holes 151 are provided on the mounting edge 15 of the modular armor.
[0030] The magnetic suction hole 151 of the magnetic armor is embedded with a strong magnet, which forms a multi-point absorption with the magnetic suction sheet of the outer armor and works together with the fixed side boundary to prevent displacement of the armor. The magnetic design takes into account the requirements for strength and quick disassembly and meets the requirements of the game rules.
[0031] In combat, two combat vehicles fight against each other, and the winner is determined by the number of enemy armor parts shot off, rather than destroying the enemy's main body, thus ensuring education and safety.
[0032] By reserving the standardized magnetic armor hole 151, participants can design their own armor and expansion modules to enhance the sense of participation and innovative experience.
[0033] As in the Fig. As shown in Figures 1-5, the attack module mounting plate 14 has a triangular shape as a whole in some embodiments, and the underside of one end of the attack module mounting plate 14 is provided with a splice groove 141 which is connected to one end of the upper plate 12, and the interior of the carriage body 11 is provided with several second bolts 19 for connecting the bottom plate 13 and the upper plate 12.
[0034] The triangular attack module mounting plate 14 is connected to the upper plate 12 via the splice groove 141 and finally locked in place by the second bolt 19 using screws. The shape reduces wind resistance, and players can install accessories with different functions, such as rotating clubs, putters, shovels, and defensive shields, on the top or bottom of the attack module mounting plate 14 as needed to enhance their game strategy.
[0035] As in the Fig.As shown in Figures 1-5, in some embodiments the top of the upper plate 12 is provided with a through-hole 121, and one side of the carriage body 11 is provided with an electrical connection hole 111 located above the indicator light mounting plate 17.
[0036] The through-hole 121 of the upper plate 12 is a reserved position for the antenna, and the electrical connection hole 111 is connected to the electrical line and powered by a rechargeable lithium battery. The lithium battery is installed inside the main body 11 of the vehicle and has a battery life of approximately 15-20 minutes. The vehicle is controlled by a remote control or a mobile app. The combat vehicle 1 uses a wireless remote control (e.g., 2.4 GHz or Wi-Fi module) and supports forward, reverse, steering, and attack movement control.
[0037] In summary, the design of the modular armor edge 15 and the standardized magnetic armor magnetic hole 151 allows for quick loading and unloading of outer armor, improves playability and teaching efficiency, and helps participants customize armor and expansion modules, stimulating creativity.
[0038] Finally, it should be noted that the above is only a preferred embodiment of the utility model and is not intended to restrict the utility model. Although the utility model is described in detail with reference to the embodiments mentioned above, it may still modify the technical solutions described in those embodiments or replace some of the technical features with equivalent modifications. All changes, equivalent replacements, improvements, etc., made in the spirit and principles of the utility model are to be included within the scope of protection of the utility model. SUMMARY
[0039] The utility model belongs to the technical field of toys, specifically a modularly assembled combat vehicle. It comprises a combat vehicle consisting of a chassis. The chassis's top and bottom are each equipped with a top plate and a bottom plate, respectively. The bottom plate is equipped with two DC motors, the output end of which is fitted with a drive wheel. The chassis's exterior features multiple modular armor reinforcement edges, and the upper end of the top plate is equipped with an assault module mounting plate. The utility model enables the rapid loading and unloading of external armor, improves playability and teaching efficiency, assists participants in customizing the armor and expansion modules, and encourages creativity and personalized participation.The competition rules for firing weapons take into account safety and educational significance, reduce risks and damage to the combat vehicle, significantly reduce usage and maintenance costs, and are suitable as an innovative competition platform for education and entertainment.
Claims
[1] Modularly assembled combat vehicle with a combat vehicle (1), characterized by , that the combat vehicle (1) has a combat vehicle (11) on the top and bottom of which a top plate (12) and a bottom plate (13) are arranged, on the bottom plate (13) two DC motors (161) are arranged, the output end of the DC motors (161) being arranged with drive wheels (162), and several modular armor protection edges (15) are arranged around the combat vehicle (11). [2] Modularly assembled combat vehicle according to claim 1, characterized by , that the base of the base plate (13) is symmetrically and firmly provided with two fixed seats (16) and two of the DC motors (161) are each installed inside the two fixed seats (16). [3] Modularly assembled combat vehicle according to claim 1, characterized by, that the base of the base plate (13) is furthermore firmly fastened to a mounting plate (132) by means of a first bolt (131), to which the base of the mounting plate (132) is attached a universal wheel (18). [4] Modularly assembled combat vehicle according to claim 3, characterized by , that: the number of fixed plates (132) is at least two and two of the universal wheels (18) are each arranged in a cross-shaped combination with two drive wheels (162). [5] Modularly assembled combat vehicle according to claim 1, characterized by , that: one side of the car body (11) is permanently fitted with an indicator light mounting plate (17), and one side of the indicator light mounting plate (17) is fitted with a bearing mounting light (171). [6] Modularly assembled combat vehicle according to claim 1, characterized by, that the fixed edge (15) of the modular armor is provided with several magnetic suction holes (151) for magnetic armor. [7] Modularly assembled combat vehicle according to claim 1, characterized by , that the mounting plate (14) of the attack module has an overall triangular shape. [8] Modularly assembled combat vehicle according to claim 1, characterized by , that the underside of one end of the attack module mounting plate (14) is provided with a splice slot (141) and the splice slot (141) is connected to one end of the upper plate (12). [9] Modularly assembled combat vehicle according to claim 1, characterized by , that: the interior of the carriage body (11) is provided with several second bolts (19) for connecting the base plate (13) and the top plate (12). [10] Modularly assembled combat vehicle according to claim 1, characterized by, that: the top of the upper plate (12) is provided with a through hole (121), and one side of the carriage body (11) is provided with an electrical connection hole (111) which is located above the indicator light mounting plate (17).