Rotary lifting sightseeing ladder for mountain scenic area
By designing a rotating sightseeing elevator for mountain scenic areas, combining a main tower, a lifting and rotating frame, and a hydraulic drive system, horizontal rotation is achieved during the lifting process, solving the problem of the lack of flexibility in traditional sightseeing elevators and improving the fun and efficiency of sightseeing.
Patent Information
- Application Number
- CN202422984359.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-04
AI Technical Summary
Existing sightseeing elevators in mountain scenic areas lack flexibility, fail to integrate with natural landscape features, cannot provide diverse sightseeing experiences and entertainment, and cannot meet the growing market demand.
A rotating sightseeing elevator for mountain scenic areas was designed, which adopts a main tower, a lifting and rotating frame assembly, a ring cabin and a hydraulic drive system to enable tourists to rotate horizontally during the lifting process. Combined with the sightseeing window design of the ring cabin, the fun is enhanced.
By rotating horizontally during the ascent and descent, the efficiency and enjoyment of tourists going up and down the mountain are improved, the travel range of the equipment is extended, and the diversity and entertainment of the sightseeing experience are enhanced.
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Figure CN223632881U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of mountain scenic spot rotating lifting sightseeing ladder, belong to the special equipment technical field of manned sightseeing ladder. BACKGROUND
[0002] With the rapid development of tourism, mountain scenic spot as an important type of tourism resources, attracts more and more tourists. However, the traditional vertical elevator or ordinary sightseeing elevator operation mode is relatively fixed, lack of flexibility, difficult to fully combine the natural scenery characteristics of scenic spot in operation, provide better sightseeing experience for tourists. As described in patent CN201510108337.9, a kind of traction lifting device and entertainment rotating chair device, the invention includes base, lifting motor reducer, first transmission shaft, second transmission shaft, third transmission shaft and not less than two traction wheel, the outer wall of the first transmission shaft is fixedly installed with first traction wheel, the outer wall of the third transmission shaft is fixedly installed with second traction wheel. The traction lifting device and entertainment rotating chair device adopt the friction transmission of traction wheel and steel wire rope to realize the lifting movement of rotating platform;The traction lifting device structure is compact, motor, speed reducer, traction wheel are arranged at the bottom of rack, facilitate installation and maintenance, allow to enhance height. But the current market about mountain scenic spot sightseeing ladder is relatively less, the existing product category is limited, lack of entertainment and ornamental, can not fully meet the growing market demand and the diversification experience demand of tourists. SUMMARY
[0003] The technical problem to be solved by the utility model is to provide a kind of mountain scenic spot rotating lifting sightseeing ladder, can transport tourists between mountain foot and mountain top, and rotate in horizontal direction while sightseeing ladder is lifted, improve the efficiency of tourists up and down mountain, improve the interest of tourists sightseeing.
[0004] In order to solve the above technical problem, the technical scheme of the utility model of a kind of mountain scenic spot rotating lifting sightseeing ladder is realized, including: main tower, lifting and rotating frame assembly, annular cabin, top ring corridor, bottom ring corridor. Top ring corridor is equipped with top ring corridor door, bottom ring corridor is equipped with bottom ring corridor door, annular cabin is equipped with cabin door, annular cabin side is equipped with sightseeing window;Top ring corridor is fixedly installed at the top of main tower, can make passenger pass to high other connection area, bottom ring corridor is fixedly installed at the bottom of main tower, lifting and rotating frame assembly is installed on main tower and can move up and down relative to main tower, annular cabin is installed on lifting and rotating frame assembly and can rotate horizontally relative to lifting and rotating frame assembly.
[0005] The main tower comprises: a lifting trolley guide rail fixedly installed on the support column, a lifting trolley installed on the lifting trolley guide rail and capable of moving up and down along the lifting trolley guide rail, a counterweight guide rail fixedly installed on the support column, a counterweight installed on the counterweight guide rail and capable of moving up and down along the counterweight guide rail, a counterweight steel wire connecting the counterweight and the lifting trolley, a trolley frame installed inside the support column and capable of moving up and down relative to the support column, and a hydraulic drive system installed at the bottom of the support column and used for pushing the trolley frame to move up and down.
[0006] The lifting trolley assembly comprises: cabin support wheels circumferentially arranged on the lifting trolley, a ring-shaped cabin installed on the cabin support wheels, a motor installed on the lifting trolley, an external gear installed on the output shaft of the motor, an internal gear installed at the bottom of the ring-shaped cabin and engaged with the external gear, and lateral support wheels circumferentially arranged between the ring-shaped cabin and the lifting trolley.
[0007] The hydraulic drive system comprises: a hydraulic cylinder installed at the lower end of the trolley frame, a steel wire I connected to the upper end of the trolley frame, the steel wire I passing through a fixed pulley I, a fixed pulley IV, a fixed pulley V and being connected to a movable pulley VI, the movable pulley VI being connected to a movable pulley VII through a steel wire IV, the movable pulley VII being connected to the lower end of the lifting trolley through a steel wire V, a steel wire VI having its upper end connected to the trolley frame and its lower end connected to a movable pulley II, a steel wire II passing through the movable pulley II and being connected to a movable pulley III, the steel wire III passing through the movable pulley III and being connected to the upper end of the lifting trolley, the upper end of the lifting trolley being connected to a counterweight steel wire, and the counterweight steel wire passing through a fixed pulley VIII and being connected to the counterweight.
[0008] The mountainous scenic area rotating and lifting sightseeing ladder has the following beneficial effects:
[0009] (1) The device can transport tourists between the bottom ring corridor and the top ring corridor through the cooperation of the lifting trolley assembly, the ring-shaped cabin and the hydraulic drive system.
[0010] (2) The device improves the interest of tourist sightseeing by driving the ring-shaped cabin to rotate horizontally while lifting through the lifting trolley assembly.
[0011] (3) The device can expand the stroke of the lifting trolley assembly under the condition that the stroke of the hydraulic cylinder piston is small through the hydraulic drive system design. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 is a general structure schematic view of the mountainous scenic area rotating and lifting sightseeing ladder of the utility model;
[0013] Figure 2 is a schematic view of the ring-shaped cabin of the mountainous scenic area rotating and lifting sightseeing ladder of the utility model in the top ring corridor position;
[0014] Figure 3 is a bottom ring corridor position schematic view of the annular cabin of the mountain scenic spot rotating and lifting sightseeing ladder of the utility model;
[0015] Figure 4 is a main tower structure schematic view of the mountain scenic spot rotating and lifting sightseeing ladder of the utility model;
[0016] Figure 5 is a three-dimensional section view of the annular cabin and a lifting and rotating frame assembly structure schematic view of the mountain scenic spot rotating and lifting sightseeing ladder of the utility model;
[0017] Figure 6 is a hydraulic drive system working principle schematic view of the mountain scenic spot rotating and lifting sightseeing ladder of the utility model;
[0018] Reference signs:
[0019] 1 - cabin support wheel 2 - outer gear 3 - inner gear
[0020] 4 - motor 5 - lateral support wheel 6 - lifting and rotating frame
[0021] 7 - cabin door 8 - counterweight steel wire rope 9 - lifting and rotating frame guide rail
[0022] 10 - counterweight guide rail 11 - counterweight 12 - annular cabin
[0023] 13 - trolley frame 14 - hydraulic drive system 15 - support stand
[0024] 16 - top ring corridor door 17 - top ring corridor 18 - lifting and rotating frame assembly
[0025] 19 - main tower 20 - bottom ring corridor door 21 - bottom ring corridor
[0026] 22 - hydraulic cylinder 23 - fixed pulley I 24 - steel wire rope I
[0027] 25 - movable pulley II 26 - steel wire rope II 27 - movable pulley III
[0028] 28 - steel wire rope III 29 - fixed pulley IV 30 - fixed pulley V
[0029] 31 - movable pulley VI 32 - steel wire rope IV 33 - movable pulley VII
[0030] 34 - steel wire rope V 35 - fixed pulley VIII 36 - steel wire rope VI DETAILED DESCRIPTION
[0031] The mountain scenic spot rotating and lifting sightseeing ladder of the utility model is described in detail below in combination with the drawings and embodiments.
[0032] As shown in Figure 1 mounting in the main tower 19 top, can make passengers to the high other connected area, the bottom ring corridor 21 is fixedly installed in the main tower 19 bottom, the lifting rotary frame assembly 18 is installed on the main tower 19 and can move up and down relative to the main tower 19, the annular cabin 12 is installed on the lifting rotary frame assembly 18 and can rotate horizontally relative to the lifting rotary frame assembly 18.
[0033] As shown in Figure 4 the lifting rotary frame guide rail 9 fixedly installed to the support column 15, the lifting rotary frame 6 is installed on the lifting rotary frame guide rail 9, the lifting rotary frame 6 can move up and down along the lifting rotary frame guide rail 9, the counterweight block guide rail 10 fixedly installed to the support column 15, the counterweight block 11 installed on the counterweight block guide rail 10, the counterweight block 11 can move up and down along the counterweight block guide rail 10, the counterweight block steel wire rope 8 connecting the counterweight block 11 and the lifting rotary frame 6, the trolley frame 13 installed inside the support column 15 and can move up and down relative to the support column 15, the hydraulic drive system 14 installed at the bottom of the support column 15 for pushing the trolley frame 13 to move up and down.
[0034] As shown in Figure 5 the lifting rotary frame assembly 18 includes: the cabin support wheel 1 circumferentially arranged and installed on the lifting rotary frame 6, the annular cabin 12 is installed to the cabin support wheel 1, the motor 4 installed on the lifting rotary frame 6, the outer gear 2 installed on the output shaft of the motor 4, the inner gear 3 installed at the bottom of the annular cabin 12 and engaged with the outer gear 2, the lateral support wheel 5 annularly distributed and installed between the annular cabin 12 and the lifting rotary frame 6.
[0035] As shown in Figure 6 the hydraulic drive system 14 includes: the hydraulic cylinder 22 installed at the lower end of the trolley frame 13, the steel wire rope I 24 connected with the upper end of the trolley frame 13, the fixed pulley I 23, the fixed pulley IV 29, the fixed pulley V 30 and the movable pulley VI 31 are connected, the movable pulley VI 31 is connected with the movable pulley VII 33 through the steel wire rope IV 32, the movable pulley VII 33 is connected with the lower end of the lifting rotary frame 6 through the steel wire rope V 34; the upper end of the steel wire rope VI 36 is connected with the trolley frame 13, and the lower end is connected with the movable pulley II 25, the steel wire rope II 26 is connected with the movable pulley III 27 through the movable pulley II 25, the steel wire rope III 28 is connected with the upper end of the lifting rotary frame 6 through the movable pulley III 27; the upper end of the lifting rotary frame 6 is connected with the counterweight block steel wire rope 8, and the counterweight block steel wire rope 8 is connected with the counterweight block 11 through the fixed pulley VIII 35.
[0036] The action implementation process of the mountainous scenic spot rotating and lifting sightseeing ladder will be explained below
[0037] 1. The hydraulic drive system drives the annular cabin lifting process
[0038] As shown in Figure 1 , Figure 2 , Figure 3 , Figure 6 , the hydraulic cylinder 22 piston extends to push the trolley frame 13 to move upward, through the steel wire rope Ⅵ36, the movable pulley Ⅱ25, the steel wire rope Ⅱ26, the movable pulley Ⅲ27, the steel wire rope Ⅲ28, the counterweight block 11 connected with the lifting rotating frame 6 through the counterweight block steel wire rope 8 and the fixed pulley Ⅷ35 along the counterweight block guide rail 10 synchronously downward movement; the hydraulic cylinder 22 piston retracts to drive the trolley frame 13 to move downward, through the steel wire rope Ⅰ24, the fixed pulley Ⅰ23, the fixed pulley Ⅳ29, the fixed pulley Ⅴ30, the movable pulley Ⅵ31, the steel wire rope Ⅳ32, the movable pulley Ⅶ33, the steel wire rope Ⅴ34 drive the lifting rotating frame 6 to move downward, and the counterweight block 11 connected with the lifting rotating frame 6 through the counterweight block steel wire rope 8 and the fixed pulley Ⅷ35 along the counterweight block guide rail 10 synchronously upward movement, so that the annular cabin 12 moves up and down along the main tower 19 between the top ring corridor 17 and the bottom ring corridor 21.
[0039] 2. The annular cabin rotating process
[0040] As shown in Figure 5 , the motor 4 output shaft drives the outer gear 2 to rotate, the outer gear 2 drives the inner gear 3 to rotate, the inner gear 3 drives the annular cabin 12 installed on the inner gear 3 to rotate, and the horizontal direction rotating movement of the annular cabin 12 in the lifting process is completed.
[0041] 3. The overall working process of the mountainous scenic spot rotating sightseeing ladder
[0042] As shown in Figure 1 , Figure 2 , Figure 3As shown, when the annular cabin 12 is located at the bottom ring corridor 21, the cabin door 7 is aligned with the bottom ring corridor door 20, the cabin door 7 and the bottom ring corridor door 20 are opened synchronously, and the tourists enter the annular cabin 12; after the tourists enter the annular cabin 12, the cabin door 7 and the bottom ring corridor door 20 are closed synchronously, the hydraulic drive system 14 drives the lifting rotating frame assembly 18 and the annular cabin 12 to ascend along the main tower 19 to the top ring corridor 17; during the ascending process, the lifting rotating frame assembly 18 drives the annular cabin 12 to rotate horizontally, and the tourists can sight outward through the sightseeing windows arranged on the side of the annular cabin 12; when the annular cabin 12 ascends to the top ring corridor 17 and the cabin door 7 is aligned with the top ring corridor door 16, the cabin door 7 and the top ring corridor door 16 are opened synchronously, and the tourists can enter the top ring corridor 17 and other connected areas. The descending process of the annular cabin 12 from the top ring corridor 17 to the bottom ring corridor 21 is the same as the above-mentioned ascending process.
Claims
1. A rotating lift sightseeing ladder in a mountain scenic area, comprising: The main tower (19), the lifting rotating frame assembly (18), the annular cabin (12), the top ring corridor (17), the bottom ring corridor (21); characterized in that the top ring corridor (17) is provided with a top ring corridor door (16), the bottom ring corridor (21) is provided with a bottom ring corridor door (20), the annular cabin (12) is provided with a cabin door (7), and the annular cabin (12) is provided with a sightseeing window on the side; the top ring corridor (17) is fixedly installed at the top of the main tower (19) and can enable passengers to pass to other connected areas at a high place, the bottom ring corridor (21) is fixedly installed at the bottom of the main tower (19), the lifting rotating frame assembly (18) is installed on the main tower (19) and can move up and down relative to the main tower (19), and the annular cabin (12) is installed on the lifting rotating frame assembly (18) and can rotate horizontally relative to the lifting rotating frame assembly (18).
2. The rotating lift sightseeing ladder for mountainous areas as claimed in claim 1, wherein The main tower (19) comprises: a lifting rotating frame guide rail (9) fixedly installed on the support column (15), a lifting rotating frame (6) installed on the lifting rotating frame guide rail (9) and capable of moving up and down along the lifting rotating frame guide rail (9), a counterweight guide rail (10) fixedly installed on the support column (15), a counterweight (11) installed on the counterweight guide rail (10) and capable of moving up and down along the counterweight guide rail (10), a counterweight steel wire rope (8) connecting the counterweight (11) and the lifting rotating frame (6), a trolley frame (13) installed inside the support column (15) and capable of moving up and down relative to the support column (15), and a hydraulic drive system (14) installed at the bottom of the support column (15) and used to push the trolley frame (13) to move up and down.
3. The rotating lift tourist trail in mountain landscape zone as claimed in claim 1 is characterized in that, The lifting rotating frame assembly (18) comprises: cabin support wheels (1) circumferentially arranged and installed on the lifting rotating frame (6), the annular cabin (12) installed on the cabin support wheels (1), a motor (4) installed on the lifting rotating frame (6), an external gear (2) installed on the output shaft of the motor (4), an internal gear (3) installed at the bottom of the annular cabin (12) and engaged with the external gear (2), and lateral support wheels (5) annularly arranged and installed between the annular cabin (12) and the lifting rotating frame (6).
4. The rotating lift tourist trail in mountain landscape zone as claimed in claim 2 is characterized in that, The hydraulic drive system (14) comprises a hydraulic cylinder (22) installed at the lower end of the trolley frame (13), a steel wire rope I (24) connected to the upper end of the trolley frame (13) and passing through a fixed pulley I (23), a fixed pulley IV (29), a fixed pulley V (30) and a movable pulley VI (31), the movable pulley VI (31) being connected to a movable pulley VII (33) through a steel wire rope IV (32), the movable pulley VII (33) being connected to the lower end of the lifting rotating frame (6) through a steel wire rope V (34); a steel wire rope VI (36) is connected to the upper end of the trolley frame (13) and to a movable pulley II (25) at the lower end, a steel wire rope II (26) is connected to a movable pulley III (27) by passing through the movable pulley II (25), and a steel wire rope III (28) is connected to the upper end of the lifting rotating frame (6) by passing through the movable pulley III (27); the upper end of the lifting rotating frame (6) is connected to a counterweight steel wire rope (8), and the counterweight steel wire rope (8) is connected to a counterweight (11) by passing through a fixed pulley VIII (35).
Citation Information
Patent Citations
Traction lifting device and entertainment rotary glider device
CN104740877A