Abstract:
The design consists of the features of shape and configuration of a bottle as shown in the accompany drawings.Drawings of the design are included, in which:Figure 1 is a perspective view showing our new bottle;Figure 2 is a left side elevational view thereof;Figure 3 is a right side elevational view thereof;Figure 4 is a front elevational view thereof;Figure 5 is a rear elevational view thereof;Figure 6 is a top plan view thereof;Figure 7 is a bottom plan view thereof;Figure 8 is a perspective view showing a variant of our new bottle;Figure 9 is a left side elevational view thereof;Figure 10 is a right side elevational view thereof;Figure 11 is a front elevational view thereof;Figure 12 is a rear elevational view thereof;Figure 13 is a top plan view thereof; andFigure 14 is a bottom plan view thereof.The portions shown in dotted lines are for illustrative purposes only and do not form part of the design.
Abstract:
The present invention is related with the application of an adsorbent material of microporous carbon (MCA), prepared from the direct pyrolysis of copolymers generically known as Saran, in adsorption processes to reduce the benzene content in naphtha boiling range hydrocarbon streams, between 27 and 191° C., in which is preferable to perform a first separation by distillation of the C6's fraction, and a further separation of Benzene by adsorption through an adsorbent material bed, obtaining the fraction of C6's free of Benzene and an adsorbent with Benzene, which is further regenerated by pressure or temperature swing desorption or by displacement using a desorbent such as an inert gas at high temperature or by passing a desorbent which after the process, the desorbent and Benzene are separated by distillation. The fraction of C6's free of Benzene is reintegrated to the hydrocarbon stream and providing a gasoline with a Benzene content less than 1 volume %. Besides, the application of the MCA in this type of process allows obtaining Benzene with a minimum purity of 99.8 weight % and a maximum toluene content of 0.1 weight %, satisfying the specifications of ASTM D-2359-02 for Refined Benzene-535.
Abstract:
This disclosure is generally directed toward bottles with improved top loading resistance and does so by, among other things, utilizing walls, shoulder, and/or other structural features of a particular size, taper, angle, and/or material. The bottle includes a mouth, a barrel connected to a base, and a shoulder extending between the mouth and barrel. The shoulder may include upper, intermediate, and lower sections, in which the intermediate section may be relatively thicker than the upper section. The barrel may also include upper, intermediate, and lower sections, in which the intermediate section may be relatively thicker than the lower section.
Abstract:
Bottles with improved top loading resistance are disclosed herein. The bottles may have generally “square” body profiles and may include structural features such as variable wall thickness, specific shoulder angles, and other structural reinforcement components. The bottle may have one or both of the following characteristics: a weight and barrel thickness specific top loading strength of no less than 2.30 lbf/g×mm and a weight and volume specific top loading strength of no less than 1.00 lbf×L/g.
Abstract translation:本文公开了具有改善的顶部负载阻力的瓶子。 瓶子可以具有通常的“正方形”的身体轮廓,并且可以包括结构特征,例如可变的壁厚,特定的肩部角度和其他结构增强部件。 瓶子可以具有以下特征中的一个或两个:重量和桶厚特定的顶部装载强度不小于2.30lbf / g×mm,重量和体积比顶部装载强度不低于1.00lbf×L / g 。
Abstract:
The invention relates to an automobile braking system with grip prediction and continuous control of braking pressure, including a hydraulic circuit which regulates braking pressure by controlling a proportional pressure value (8) which maintains the necessary pressure on the brake piston (6) in order to perform suitable braking. Braking control is permanently performed by a control system capable of recognizing actual grip conditions at all times and of establishing the ideal pressure conditions on the braking piston (6), said pressure being under optimal control at all times, ensuring that none of the wheels of the vehicle are subject to excessive skidding. Automobile braking can also be performed manually when the value (4) is in a standby position or in the event of a malfunction of the automatic braking control.
Abstract:
This disclosure is generally directed toward bottles with improved top loading resistance and does so by, among other things, utilizing walls, shoulder, and/or other structural features of a particular size, taper, angle, and/or material. The bottle includes a mouth, a barrel connected to a base, and a shoulder extending between the mouth and barrel. The shoulder may include upper, intermediate, and lower sections, in which the intermediate section may be relatively thicker than the upper section. The barrel may also include upper, intermediate, and lower sections, in which the intermediate section may be relatively thicker than the lower section.
Abstract:
A cleaning implement is disclosed which is of the all-in-one type. It has a substrate structure that delivers impregnated cleaning liquid to the window being cleaned, a squeegee to drive used cleaning liquid off the window, and an absorbent to collect the used liquid. A single block of substrate structure can provide the applicator, scrubbing, and collecting functions, as well as filter and reprocess used cleaning liquid for further use. The substrate may be replaced separately from the squeegee, or may be replaced as a unit with the squeegee.