CN105781168A - High-strength automatic protective cover for automobile - Google Patents

High-strength automatic protective cover for automobile Download PDF

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Publication number
CN105781168A
CN105781168A CN201610206477.4A CN201610206477A CN105781168A CN 105781168 A CN105781168 A CN 105781168A CN 201610206477 A CN201610206477 A CN 201610206477A CN 105781168 A CN105781168 A CN 105781168A
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CN
China
Prior art keywords
aluminum alloy
alloy framework
spring
span structure
crane span
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Application number
CN201610206477.4A
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Chinese (zh)
Inventor
徐�明
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Individual
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Individual
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Publication date
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Priority to CN201610206477.4A priority Critical patent/CN105781168A/en
Publication of CN105781168A publication Critical patent/CN105781168A/en
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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H6/00Buildings for parking cars, rolling-stock, aircraft, vessels or like vehicles, e.g. garages
    • E04H6/02Small garages, e.g. for one or two cars
    • E04H6/04Small garages, e.g. for one or two cars wheeled, hinged, foldable, telescopic, swinging or otherwise movable

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Vehicle Body Suspensions (AREA)
  • Body Structure For Vehicles (AREA)

Abstract

A high-strength automatic protective cover for an automobile is characterized by comprising a buckled aluminum alloy framework storage bin, an elastic unfolded aluminum alloy framework protective cover and a clamping type swing mechanism. The buckled aluminum alloy framework storage bin can perform buckling and unfolding motions under the driving of a motor, the internal aluminum alloy framework storage bin stores an aluminum alloy framework and a bridge frame which are connected with each other through a pin and a spring; and 90-degree unfolding and folding can be performed under the joint effect of a swing motor and the clamping mechanism. Compared with a conventional automobile protective cover, the high-strength automatic protective cover is completely automatic in the working process, and manpower intervention is not needed. The metal aluminum alloy framework can protect parked vehicles from rubbing and damage, and the automobile can be better protected from rain and snow erosion after a waterproof outer cover is additionally installed.

Description

A kind of high-strength vehicle automatic protecting cover
Technical field
The present invention relates to Vehicle protector field, specifically a kind of high-strength vehicle automatic protecting cover.
Background technology
At present, increasing along with family-sized car, the protection that docks at of vehicle has caused the attention of people gradually, because the improper scraping caused of vehicle protection and the artificial news such as sabotage are of common occurrence.The automobile protection instruments such as traditional automobile protective clothing, sunshading board can only protect automobile from the sun, the injury of sleet, and for scratching, the accident such as the artificial destruction of malice does not have any protective capacities.
Summary of the invention
The technical assignment of the present invention is to solve the deficiencies in the prior art, it is provided that a kind of high-strength vehicle automatic protecting cover.
The technical solution adopted for the present invention to solve the technical problems is:
A kind of high-strength vehicle automatic protecting cover, elastic expansion aluminum alloy framework guard shield is arranged in buckle-type aluminum alloy framework storage silo, cambered surface car body offer protection can be expanded under the drive of clamp-close type swing mechanism, described elastic expansion aluminum alloy framework guard shield is by aluminum alloy framework, crane span structure and spring composition, aluminum alloy framework includes being stored in the first aluminum alloy framework (1a) in the first aluminum alloy framework holding tank (4a) described in claim 2 and the second aluminum alloy framework (1b), it is stored in the 3 Al alloy skeleton (1c) in the second aluminum alloy framework storage silo (3b) and the 4th aluminum alloy framework (1d);Crane span structure includes the first crane span structure (2a), the second crane span structure (2b), the 3rd crane span structure (2c), the 4th crane span structure (2d);Spring includes the first spring (5a), second spring (5b), 3rd spring (5c), 4th spring (5d), described aluminum alloy framework has camber line profile, middle hollow out, described crane span structure designs for camber line, the thickness of crane span structure is identical with the thickness at aluminum alloy framework position, described crane span structure is connected by pin (6) with aluminum alloy framework, described spring is tension type spring, two adjacent aluminum alloy frameworks are linked together, when all of aluminum alloy framework retracts described aluminum alloy framework storehouse, described spring is in off working state, without pulling force, after described aluminum alloy framework launches, described spring is in running order, there is pulling force;Described buckle-type aluminum alloy framework storage silo includes the first aluminum alloy framework storage silo (3a) and the second aluminum alloy framework storage silo (3b), one end processing of aluminum alloy framework storage silo simultaneously has the hole with keyway, cooperated by key-keyway with one end of the first rotating shaft (7a) and the second rotating shaft (7b) respectively, the other end of described two rotating shafts is separately mounted on the first driven wheel of differential (8a) and the second driven wheel of differential (8b), said two driven wheel of differential and drive bevel gear (9) cooperate and are provided power by folding motor (10), a whole set of bevel gear tooth system is arranged in transmission case body (16);Described transmission cavity includes the transmission cavity (16) fixed on the ground, and it is welded on two transmission cavitys of described transmission cavity (16) both sides, said two driven wheel of differential is separately mounted on two sides of described transmission cavity (16), and described folding motor (10) is arranged on described transmission cavity (16) bottom surface;Described clamp-close type swing mechanism includes: be provided with oscillating motor mounting seat (17) in described transmission case body (16) both sides, internally installed have the first oscillating motor (11) and the second oscillating motor (18), described oscillating motor is connected with the first swing arm (14a) and the second swing arm (14b) by the first swing arm rotating shaft (15a) and the second swing arm rotating shaft (15b), one end processing limited location draw-in groove (19) of described swing arm, matches with described first screens block (13a) and the second screens block (13b).
Further, described aluminum alloy framework storage silo is bending strip, its cross section is square, described first aluminum alloy framework storage silo (3a) left side processing has the first aluminum alloy framework holding tank (4a), described second aluminum alloy framework storage silo (3a) right side the second aluminum alloy framework holding tank (4b);Described first aluminum alloy framework (1a) one end is welded with the first screens block (13a), and described 4th aluminum alloy framework (1d) one end is welded with the second screens block (13b).
Further, described spacing draw-in groove (19) is cubic shaped, has groove in the processing of cube end face, and the degree of depth of groove is identical with the height of described first screens block (13a) and the second screens block (13b).
A kind of high-strength vehicle automatic protecting cover of the present invention compared with prior art produced by provide the benefit that: buckle-type aluminum alloy framework storage silo is opened by (1) when vehicle needs to drive away, when vehicle sails into, buckle-type aluminum alloy framework storage silo fastens, it is possible to save parking space.(2) elastic expansion aluminum alloy framework guard shield has certain rigidity compared to common automobile protective clothing; collide between automobile adjacent when can avoid parking of automobile, between the aluminum alloy framework of protective cover, install protective clothing additional significantly more efficient can prevent automobile from suffering the destruction of sleet.(3) automation degree of equipment is high, whole work process does not need manual intervention, and the expansion of protective cover is quick and precisely, it is to avoid traditional trouble manually installing automobile protecting cover additional.
Accompanying drawing explanation
Fig. 1 is that present configuration opens front view;
Fig. 2 is that present configuration opens oblique view;
Fig. 3 is that present configuration opens left view;
Fig. 4 is present configuration Guan Bi oblique view;
Fig. 5 is present configuration Guan Bi left view;
Fig. 6 is present configuration partial view;
nullIn figure,1a、First aluminum alloy framework,1b、Second aluminum alloy framework,1c、3 Al alloy skeleton,1d、4th aluminum alloy framework,2a、First crane span structure,2b、Second crane span structure,2c、3rd crane span structure,2d、4th crane span structure,3a、First aluminum alloy framework storage silo,3b、Second aluminum alloy framework storage silo,4a、First aluminum alloy framework holding tank,4b、Second aluminum alloy framework holding tank,5a、First spring,5b、Second spring,5c、3rd spring,5d、4th spring,6、Pin,7a、First rotating shaft,7b、Second rotating shaft,8a、First driven wheel of differential,8b、Second driven wheel of differential,9、Drive bevel gear,10、Folding motor,11、First oscillating motor,12、Automobile,13a、First screens block,13b、Second screens block,14a、First swing arm,14b、Second swing arm,15a、First swing arm rotating shaft,15b、Second swing arm rotating shaft,16、Transmission case body,17、Oscillating motor mounting seat,18、Second oscillating motor,19、Spacing draw-in groove.
Detailed description of the invention
Below in conjunction with accompanying drawing, being described in detail below the present invention.
As shown in drawings, a kind of high-strength vehicle automatic protecting cover, it is characterised in that include buckle-type aluminum alloy framework storage silo, elastic expansion aluminum alloy framework guard shield and clamp-close type swing mechanism;Buckle-type aluminum alloy framework storage silo includes the aluminum alloy framework i.e. first aluminum alloy framework storage silo 3a and the second aluminum alloy framework storage silo 3b of two bendings, aluminum alloy framework hollow, processing has the first aluminum alloy framework holding tank 4a and the second aluminum alloy framework holding tank 4b, one end processing of aluminum alloy framework simultaneously has the hole with keyway to be cooperated by key-keyway with the first rotating shaft 7a and the second rotating shaft 7b respectively, two rotating shaft one end are separately installed with the first driven wheel of differential 8a and the second driven wheel of differential 8b, driven wheel of differential and drive bevel gear 9 cooperate and are provided power by folding motor 10, bevel gear tooth system is arranged in transmission case body 16.Elastic expansion aluminum alloy framework guard shield is made up of aluminum alloy framework, crane span structure and spring, aluminum alloy framework includes storing the first aluminum alloy framework 1a in the first aluminum alloy framework holding tank 4a in claim 2 and the second aluminum alloy framework 1b, is stored in 3 Al alloy skeleton 1c and the four aluminum alloy framework 1d in the second aluminum alloy framework storage silo 3b;Crane span structure includes the first crane span structure 2a, the second crane span structure 2b, the 3rd crane span structure 2c, the 4th crane span structure 2d;Spring includes the first spring 5a, the second spring 5b, the 3rd spring 5c, 4th spring 5d, crane span structure and aluminum alloy framework support are connected by pin 6, simultaneously, first aluminum alloy framework 1a one end is welded with the first screens block 13a, and described 4th aluminum alloy framework 1d one end is welded with the second screens block 13b;Transmission case body 16 both sides are provided with oscillating motor mounting seat 17, internally installed have the first oscillating motor 11 and the second oscillating motor 18, oscillating motor is connected by the first swing arm rotating shaft 15a and the second swing arm rotating shaft 15b and the first swing arm 14a and the second swing arm 14b, one end processing limited location draw-in groove 19 of swing arm, it is possible to match with the first screens block 13a and the second screens block 13b.
In the process of work, first being stopped by automobile as shown in Figure 5 into the region specified, after driver gets off, remote control shield starts.Folding motor 10 rotates through the commutation transmission of bevel gear and is finally driven the first aluminum alloy framework storage silo 3a and the second aluminum alloy framework storage silo 3b to rotate by rotating shaft, automobile being fastened on aluminum alloy framework storage silo and completes first step action, now the first screens block 13a of first aluminum alloy framework 1a one end welding and the second screens block 13b of the 4th aluminum alloy framework 1d one end welding snaps onto in the spacing draw-in groove 19 of one end processing of swing arm.Then the first oscillating motor 11 and the second oscillating motor 18 rotate, being connected by the first swing arm rotating shaft 15a and the second swing arm rotating shaft 15b and the first swing arm 14a and the second swing arm 14b drives the first aluminum alloy framework 1a and the 4th aluminum alloy framework 1d to think that ground, both sides is close, owing to being provided with crane span structure and spring between aluminum alloy framework and aluminum alloy framework, it is thus stored in other aluminum alloy frameworks in aluminum alloy framework storage silo and can follow shifting outside the first aluminum alloy framework 1a and the four aluminum alloy framework 1d under the effect of crane span structure and spring tension, position is limited until arriving, by whole automobile envelope under the protective cover launched, all motor stopping actions.
In sum, present disclosure is not limited in the above embodiments, and those skilled in the art can propose other embodiment within the guiding theory of the present invention, but these embodiments are all included within the scope of the present invention.

Claims (3)

1. a high-strength vehicle automatic protecting cover, elastic expansion aluminum alloy framework guard shield is arranged in buckle-type aluminum alloy framework storage silo, cambered surface car body offer protection can be expanded under the drive of clamp-close type swing mechanism, it is characterized in that, described elastic expansion aluminum alloy framework guard shield is by aluminum alloy framework, crane span structure and spring composition, aluminum alloy framework includes being stored in the first aluminum alloy framework (1a) in the first aluminum alloy framework holding tank (4a) described in claim 2 and the second aluminum alloy framework (1b), it is stored in the 3 Al alloy skeleton (1c) in the second aluminum alloy framework storage silo (3b) and the 4th aluminum alloy framework (1d);Crane span structure includes the first crane span structure (2a), the second crane span structure (2b), the 3rd crane span structure (2c), the 4th crane span structure (2d);Spring includes the first spring (5a), second spring (5b), 3rd spring (5c), 4th spring (5d), described aluminum alloy framework has camber line profile, middle hollow out, described crane span structure designs for camber line, the thickness of crane span structure is identical with the thickness at aluminum alloy framework position, described crane span structure is connected by pin (6) with aluminum alloy framework, described spring is tension type spring, two adjacent aluminum alloy frameworks are linked together, when all of aluminum alloy framework retracts described aluminum alloy framework storehouse, described spring is in off working state, without pulling force, after described aluminum alloy framework launches, described spring is in running order, there is pulling force;Described buckle-type aluminum alloy framework storage silo includes the first aluminum alloy framework storage silo (3a) and the second aluminum alloy framework storage silo (3b), one end processing of aluminum alloy framework storage silo simultaneously has the hole with keyway, cooperated by key-keyway with one end of the first rotating shaft (7a) and the second rotating shaft (7b) respectively, the other end of described two rotating shafts is separately mounted on the first driven wheel of differential (8a) and the second driven wheel of differential (8b), said two driven wheel of differential and drive bevel gear (9) cooperate and are provided power by folding motor (10), a whole set of bevel gear tooth system is arranged in transmission case body (16);Described transmission cavity includes the transmission cavity (16) fixed on the ground, and it is welded on two transmission cavitys of described transmission cavity (16) both sides, said two driven wheel of differential is separately mounted on two sides of described transmission cavity (16), and described folding motor (10) is arranged on described transmission cavity (16) bottom surface;Described clamp-close type swing mechanism includes: be provided with oscillating motor mounting seat (17) in described transmission case body (16) both sides, internally installed have the first oscillating motor (11) and the second oscillating motor (18), described oscillating motor is connected with the first swing arm (14a) and the second swing arm (14b) by the first swing arm rotating shaft (15a) and the second swing arm rotating shaft (15b), one end processing limited location draw-in groove (19) of described swing arm, matches with described first screens block (13a) and the second screens block (13b).
2. a kind of high-strength vehicle automatic protecting cover according to claim 1, it is characterized in that described aluminum alloy framework storage silo is for bending strip, its cross section is square, described first aluminum alloy framework storage silo (3a) left side processing has the first aluminum alloy framework holding tank (4a), described second aluminum alloy framework storage silo (3a) right side the second aluminum alloy framework holding tank (4b);Described first aluminum alloy framework (1a) one end is welded with the first screens block (13a), and described 4th aluminum alloy framework (1d) one end is welded with the second screens block (13b).
3. a kind of high-strength vehicle automatic protecting cover according to claim 2, it is characterized in that described spacing draw-in groove (19) is cubic shaped, having groove in the processing of cube end face, the degree of depth of groove is identical with the height of described first screens block (13a) and the second screens block (13b).
CN201610206477.4A 2016-04-05 2016-04-05 High-strength automatic protective cover for automobile Withdrawn CN105781168A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201610206477.4A CN105781168A (en) 2016-04-05 2016-04-05 High-strength automatic protective cover for automobile

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201610206477.4A CN105781168A (en) 2016-04-05 2016-04-05 High-strength automatic protective cover for automobile

Publications (1)

Publication Number Publication Date
CN105781168A true CN105781168A (en) 2016-07-20

Family

ID=56394710

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201610206477.4A Withdrawn CN105781168A (en) 2016-04-05 2016-04-05 High-strength automatic protective cover for automobile

Country Status (1)

Country Link
CN (1) CN105781168A (en)

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Application publication date: 20160720